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Showing posts with label spread. Show all posts
Showing posts with label spread. Show all posts

Wednesday, July 3, 2013

Woman allegedly gets herpes at Rihanna concert: Can virus be spread through lipstick?

A Harlem, N.Y. woman is suing MAC Cosmetics for allegedly giving her herpes through a contaminated makeup sample, CBS New York reports.

Starkeema Greenidge, 28, claimed in her lawsuit with the Manhattan Supreme Court that she sampled a RiRi Woo MAC lipstick that was being offered at a Rihanna concert on May 7 at the Barclays Center in Brooklyn. An employee applied the used lipstick to the woman's lips, and then told her to "press her lips together and spread the lipstick around," according to the report.

Greenidge's lips started to swell two days after. A doctor soon notified her that she had a cold sore, which was the result of contracting a version of the herpes simplex virus (HSV).

"I wasn't able to work for two weeks. It cost me a lot of money," Greenidge told the New York Daily News.

Oral herpes -- caused by herpes simplex virus-1 (HSV-1) -- is an infection of the lips, mouth or gums that can present as painful blisters called cold sores. The herpes simplex virus-2 (HSV-2) causes genital herpes.

Most people in the U.S. are infected with this virus by age 20, according to National Institutes of Health, and after the first infection, the virus goes to sleep in the nerve tissues in the face, but sometimes can reactivate to cause cold sores.

Whether or not Greenidge got herpes from a tainted sample has yet to be determined, but doctors have said it is possible to get the herpes simplex virus from something that an infected person's lips touched.

"If a woman has a cut on her lip and borrows lipstick from someone who has a cold sore, she'll get a cold sore. You can pass herpes [the cold sore virus], conjunctivitis [pink eye] and all sorts of things through sharing makeup," Dr. Zein Obagi, a dermatologist based in Beverly Hills, told the Los Angeles Times in an earlier article about germs spread through makeup samples.

Dr. Joy M. Jackson, a family medicine specialist in North Hills, Calif., said for a HealthTap response that herpes is easily spread through direct contact with the virus. This means coming in direct contact with a herpes lesion, engaging in sexual activity with an actively infected person or sharing a drinking glass, lipstick or cigarette with a person with an active herpes outbreak on their mouth could transmit the disease.

Dr. Elizabeth Brooks, a biological sciences professor at Jefferson Medical College in Philadelphia who conducted a study on germs in public makeup, told the Los Angeles Times that her team found staph, strep and even E. coli bacteria on makeup testers in department stores, specialty stores and drugstores. The bacteria was especially high on Saturdays, the day of the week where the stores had the most traffic.

Brooks added that lipstick samples should always be applied with a new disposable applicator, as should any other makeup products. Products you are testing should be cleaned with a tissue or one dipped in alcohol.

Greenidge hopes that the company will be more conscious about the sanitary conditions of their samples in the future.

"This is going to happen over and over again if nothing is done," she said.

MAC Cosmetics told The Daily Beast in a statement, "Consumer safety is a top priority at MAC Cosmetics, and we take these matters very seriously. We are closely reviewing these claims."


View the original article here

Tuesday, April 2, 2013

Oral Herpes Spread Through Kissing? polyDNA’s Monthly Survey Shows Segment of Public Believes Kissing with Fever ...

Survey Shows 45% of Respondents Believe Kissing with Oral Herpes Lesions “Ok”

Rochester, NY (PRWEB) March 28, 2013

polyDNA recently received answers to its monthly survey regarding the public's knowledge of the herpes virus.

One of the questions asked was, "If you have cold sores, do you think it is possible to infect others while kissing?" Amazingly, a significant percentage of the public said "No."

“If you have this sore on your lip or whatever, and it’s going away, well then it’s going away, right? Nobody wants to kiss you when you have a nasty, open cold sore where everyone can see it, but when it’s on the way out? Your body killed it, you know. It’s gone. You ain’t going to spread it to nobody.” –Shauna B., Charlotte, N.C.

The truth is exactly the opposite however. polyDNA’s survey found that the respondents did not realize that, “The virus is spread from person to person by kissing, by close contact with herpetic lesions, or even from contact with apparently normal skin that is shedding the virus. Infected saliva is a common means of virus transmission.” [1]

Additionally, the respondents had no clue that, “About 50 percent to 80 percent of US adults have oral herpes. According to the National Institutes of Health (NIH), by age 50, approximately 90 percent of adults have been exposed to the virus…The herpes lesions typically last a week to 10 days and most often occur around the lips, oral mucosa, and/or tongue.” [2]

Mike Evans, from the polyDNA said, "It's amazing. The very idea that so many people have no real clue as to how oral herpes is transmitted is incredible. The fact is though, the majority just doesn’t know."

polyDNA believes that because of the ignorance revealed in its survey, the public should be aware of the relationship between kissing and the spread of oral herpes (HSV-1). In addition, the biotechnology firm recommends boosting the immune system against a latent herpes infection through the use of a scientific, all natural remedy. That remedy is Gene-Eden-VIR.

A recent post marketing clinical study showed that Gene-Eden-VIR is effective against the latent herpes virus. By helping the body's immune system target the latent herpes virus, people also lower their risk of developing fever blisters, cold sores, or genital herpes symptoms. [3]

Gene-Eden-VIR is highly effective against the latent herpes virus, each ingredient was chosen through a scientific approach. Scientists scanned thousands of scientific and medical papers published in various medical and scientific journals around the world to identify the safest, most effective natural ingredients that target the latent forms of both HSV-1 and HSV-2. [4]

To learn more about Gene-Eden-VIR, visit http://www.gene-eden-kill-virus.com.

References:

[1] [2[3 [4 http://www.gene-eden-kill-virus.com/studies.php


polyDNA is a biotechnology company that develops dietary supplements using the unique scientific method developed by Dr. Hanan Polansky, which is based on Computer Intuition.

In addition to his unique scientific method, Dr. Polansky published the highly acclaimed scientific discovery, called Microcompetition with Foreign DNA. The discovery explains how foreign DNA fragments, and specifically, DNA of latent viruses, cause most major diseases.

polyDNA developed Gene-Eden-VIR , an antiviral natural remedy that helps the immune system kill latent viruses.

Mike Davis
PolyDNA
5852509999
Email Information


View the original article here

Monday, April 1, 2013

Can Genital Herpes Spread in the Body? polyDNA Surveys the Public Knowledge

polyDNA answers new questions on herpes, HSV, herpes virus, genital sores, etc. collected from the public in its March, 2013 survey.

Rochester, NY (PRWEB) March 13, 2013

Genital herpes can spread from one area in the body to another via touching active lesions, as well as through oral sex.

One survey respondent commented, “I mean I don’t know…can herpes really travel from one spot on your genitals to say, your legs or someplace else on your body? Sometimes I get sores and they’re not always in the same spot.” – Maria from Queens, NY

polyDNA would like to point out that several health authorities have shown that genital herpes can spread from the genital region elsewhere.

Dr. Thomas Nesbitt said, “Herpetic auto-inoculation from one part of the body to another is always possible but not always predictable. Herpetic infections can spread from one portion of the body to another, for example, from an active genital lesion to the eyes by one’s own hands.” (1) Dr. Nesbitt served as Clinical Microbiology Consultant to St. Joseph Mercy Hospital, Ann Arbor. He is currently self-employed as a Microbiologist Consultant.

This means that it is normal for herpes outbreaks to sometimes jump around the general area, even by several inches, and that a person can potentially spread herpes from their genitals to other body parts.

However, this is rare.

In a study using a central Kentucky medical center population over a six year period, “HSV-2 was isolated from only 9.4% of patients with nongenital HSV for the entire 6-year period.” (2)

Thus, while spreading HSV-2 to multiple body locations is rare, it can happen.

Mike Evans, from the Center for the Biology of Chronic Disease (CBCD) said, “Many people are completely horrified when they get a diagnosis of herpes infection. That’s despite the fact that the CDC says that most people with a herpes infection don’t even know they have an infection. Do outbreaks jump around on a person? Lots of people are ignorant of the facts and they need these facts to help them cope with their fears.”

After an initial period of activity where there can be up to five major outbreaks in a year, herpes establishes what scientists call a latent infection. When a virus is latent, it acts as if it is asleep or dormant. The moment the immune system is weakened, however, the herpes virus can “wake up” and become active again.

The best defense against a latent herpes infection is a healthy immune system.

polyDNA would like to point out a herpes remedy that boosts the immune system and helps target the dormant (latent) HSV virus.

“The key to your health is to reduce the level of the chronic viruses in your body to harmless levels.” – Dr. Hanan Polansky

The name of that herpes remedy is Gene-Eden-VIR. This all-natural product was scientifically designed to help the human body maintain low concentrations of the dormant or latent herpes virus.

By helping the body’s immune system target the latent herpes virus, people also lower their risk of developing fever blisters, cold sores, or genital herpes symptoms. This is just one reason polyDNA believes Gene-Eden-VIR is an important product.

Gene-Eden-VIR is highly effective against the latent herpes virus; each ingredient was chosen through a scientific approach. Scientists scanned thousands of scientific and medical papers published in various medical and scientific journals around the world to identify the safest, most effective natural ingredients that target the latent forms of both HSV-1 and HSV-2. (3)

Gene-Eden-VIR is extremely safe. It has been on the market for over three years, and in that time, no side effects were reported. Each capsule contains a patented formula of five all natural ingredients including selenium, camellia sinesis extract, quercetin, cinnamomum extract, and licorice extract. In addition, each bottle is GMP Certified.

Gene-Eden-VIR is sold online through the Gene-Eden website. Each bottle of Gene-Eden-VIR (a one month’s supply) costs just $37.99.

To learn more about Gene-Eden-VIR, the only product on the market today that helps the body target the latent herpes virus and that is scientifically backed by published material, visit http://www.gene-eden-kill-virus.com.

References:

(1) http://www.herpes.com/showAskTom3.shtml

(2) http://www.ncbi.nlm.nih.gov/pmc/articles/PMC88338/

(3) http://www.gene-eden-kill-virus.com/studies.php

###

polyDNA is a biotechnology company that develops dietary supplements using the unique scientific method developed by Dr. Hanan Polansky, which is based on Computer Intuition.

In addition to his unique scientific method, Dr. Polansky published the highly acclaimed scientific discovery, called Microcompetition with Foreign DNA.

The discovery explains how foreign DNA fragments, and specifically, DNA of latent viruses, cause most major diseases. polyDNA developed Gene-Eden-VIR (http://www.buy-gene-eden.com), an antiviral natural remedy that helps the immune system kill latent viruses.

Mike Davis
PolyDNA
5852509999
Email Information


View the original article here

Monday, March 18, 2013

I spread herpes to him

Guest author from our community: Katie S.

Life loves to give me surprises every year; and 2012 was no exception. I got a last minute ticket to a festival that I’d been wanting to go to for years; my mom paid me a surprise visit in Colorado; I was intimate with somebody and got herpes; I was intimate with somebody else and gave him herpes. Wait.. what? What did life just give me?! I thought this would never actually really happen? I thought I could never do this to anyone?! My ignorance was bliss for years, but then reality hit and I realized that life happens… even if you’re not prepared.

What I wish I knew before any of this happened, are the facts about herpes, and how it is spread. I certainly would have been more prepared, and more cautious. After learning about my herpes diagnosis is when I began looking up the herpes statistics. I learned that an estimated 80% of Americans have Oral Herpes (HSV-1). It can be transmitted through skin-to-skin contact; from mouth to genital, or genital to genital contact. There is a much larger risk of spreading the virus when a mouth sore is present, and a much smaller risk when there is no sore present.

It is estimated that 1 in 5 Americans have Genital Herpes (HSV-2) which is generally spread from genital to genital contact. Again, there is a much greater risk when a herpes sore is present, and much smaller risk when there is no sore present. When herpes is spread without a sore being present, this is called asymptomatic shedding. Asymptomatic shedding cannot be predicted but is known to occur on at least 5% of days during the year.

Knowing that I spread herpes to someone else is the hardest thing I’ve ever gone through. I used to beat myself up constantly, anguishing about him and what he was going through because of me. I was at my lowest low, and tried to find some self-forgiveness in the fact that I’d passed the herpes virus before I even know I had it. With time, support, and a lot of love, I have experienced self-forgiveness and love in way that I never thought possible for myself. I am so thankful for the support and realizations that have come along the way. I have realized that life is 10% what happens to you, and 90% how you respond to it. The best way to respond to life is to find compassion for yourself, be love for yourself and others, and learn from whatever life gives you.

herpes forum


View the original article here

Wednesday, December 12, 2012

Unexpected bottleneck identified in spread of herpes simplex virus

ScienceDaily (Nov. 5, 2012) — New research suggests that just one or two individual herpes virus particles attack a skin cell in the first stage of an outbreak, resulting in a bottleneck in which the infection may be vulnerable to medical treatment.

Unlike most viruses that spread to new cells by bombarding them with millions of particles, herpes simplex virus type 1 (HSV-1) -- a virus that causes cold sores and genital lesions -- requires just one or two viral particles to infect a skin cell in the first stage of cold sore formation, Princeton University researchers reported in the Proceedings of the National Academy of Sciences.

"The fact that just one or two virus particles are involved is surprising because these viruses can replicate themselves hundreds of times in a single cell," said Matthew Taylor, first author on the study and a postdoctoral researcher in the laboratory of Lynn Enquist, the Henry L. Hillman Professor in Molecular Biology and the Princeton Neuroscience Institute.

The bottleneck occurs when HSV-1 particles, which can lie dormant in the cells of the nervous system for decades after initial infection, awaken and invade a nearby skin cell, the first stage in sore formation. Once inside the skin cell, a single viral particle multiplies and spreads millions of copies to nearby skin cells, creating a visible lesion or "cold sore." The virus can then spread to new individuals through skin-to-skin contact.

This restriction to one or two particles limits the genetic diversity of the virus that spreads to the next individual, Enquist said. This puts the virus at a disadvantage, he said, because having a variety of distinct genomes enhances the overall chances of the virus surviving and spreading. A well-known example of a virus that relies on genetic diversity to thrive is HIV, which involves large numbers of viral particles with distinct genomes.

In the case of herpes viruses, Enquist said: "The number of different genomes that infect the cell is remarkably low, so any mutations that weaken the virus are unlikely to survive. Only the most fit viral particles will survive and replicate in the epithelial [skin] cells, and be available to transmit to the next individual."

Although bottlenecks can ensure that only the most fit viruses are transmitted to the next individual, they also can be points at which the infection is more susceptible to immune system responses and drug treatments, according to Taylor. He and Enquist worked with co-author Oren Kobiler, a former Princeton postdoctoral researcher now at Tel Aviv University.

The researchers' findings suggest that other viruses related to HSV-1 -- known as alpha-herpes viruses -- may have similar bottlenecks, Taylor said, including herpes simplex viruses type 2, which causes cold sores and genital lesions, and varicella zoster virus, which causes chicken pox and shingles. It remains to be determined if this bottleneck exists for other viruses that spread from infected neurons, such as poliovirus and the West Nile virus, Taylor said.

Julie Pfeiffer, an associate professor of microbiology at the University of Texas Southwestern Medical Center, said the Princeton research is the first to tally how many viral particles are involved in HSV-1 infection -- and reveal that as the virus' weak point.

"This work changes the way that we think about herpes virus spread," said Pfeiffer, who is familiar with the study but had no role in it. "This study demonstrated that these neuron-to-epithelial cell viral-transmission events are surprisingly efficient, but they are initiated by a very small number of viruses. This work has interesting implications for herpesvirus transmission and evolution."

To determine the number of virus particles that infect the skin cell, the researchers constructed three genetically unique viral genomes labeled with either red, green or blue fluorescent tags, and then infected cells with the particles and analyzed them for the presence of the three colors. They counted the number of cells containing one, two or all three colors and used statistical analysis to determine the number of unique viral genomes expressed in each cell. The method, which was originally developed by Kobiler, Enquist and colleagues in Princeton's mathematics department and initially published in 2010 in Nature Communications, revealed that most skin cells express less than two viral genomes on average.

Taylor then filmed individual virus particles of pseudorabies virus, a model alpha-herpes virus that infects animals, as the particles exited neurons and entered skin cells. He found that the bottleneck limiting infection to one or two particles exists for pseudorabies virus as well.

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Story Source:

The above story is reprinted from materials provided by Princeton University. The original article was written by Catherine Zandonella.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.

Journal Reference:

M. P. Taylor, O. Kobiler, L. W. Enquist. Alphaherpesvirus axon-to-cell spread involves limited virion transmission. Proceedings of the National Academy of Sciences, 2012; 109 (42): 17046 DOI: 10.1073/pnas.1212926109

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.


View the original article here

Friday, August 24, 2012

To spread, nervous system viruses sabotage cell, hijack transportation

ScienceDaily (May 30, 2012) — Herpes and other viruses that attack the nervous system may thrive by disrupting cell function in order to hijack a neuron's internal transportation network and spread to other cells.

Princeton University researchers made the first observation in neurons that common strains of the herpes virus indirectly take control of a cell's mitochondria, the mobile organelles that regulate a cell's energy supply, communication with other cells, and self-destruction response to infection. The team reports in the journal Cell Host and Microbe that viral infection elevates neuron activity, as well as the cell's level of calcium -- a key chemical in cell communication -- and brings mitochondrial motion to a halt in the cell's axon, which connects to and allows communication with other neurons.

The authors propose that the viruses then commandeer the proteins that mitochondria typically use to move about the cell. The pathogens can then freely travel and reproduce within the infected neuron and more easily spread to uninfected cells. When the researchers made the mitochondria less sensitive to calcium the viruses could not spread as quickly or easily.

These findings reveal a previously unknown and highly efficient mechanism that some of the most common strains of herpes viruses in humans may use to proliferate in the nervous system, said lead author Tal Kramer, a doctoral student in the lab of the paper's co-author Lynn Enquist, the Henry L. Hillman Professor of Molecular Biology and chair of Princeton's molecular biology department.

Kramer and Enquist used rat neurons to study two herpes viruses in the alpha-herpes virus subfamily: pseudorabies virus (PRV), a model alpha-herpes virus that infects animals, and herpes simplex virus 1 (HSV-1), an extremely common human virus that causes cold sores and other lesions. Other human alpha-herpes viruses are responsible for causing diseases such as chicken pox and shingles.

"No one before has looked carefully at mitochondrial motion during alpha-herpes virus infection in neurons. We provide new insight into how these viruses damage cells in the nervous system in ways that are important for the virus to propagate," Kramer said.

"If mitochondria are stopped in their tracks and can't go anywhere, that is potentially very bad," he said. "They are not only the power plants of the cell, but regulate important processes. The virus likely acts to interfere with many of those processes."

Beyond herpes, the Princeton findings present a possible explanation for how other neurotropic viruses such as rabies, West Nile and polio attack and disrupt the nervous system, Kramer said. Although these viruses are different from the herpes family, the fact that HSV-1 and PRV had a similar effect on mitochondrial motion and function suggests that other pathogens could corrupt mitochondria in the same way, he said.

In addition, the paper lays out the implications of distorted mitochondrial function on neuron health. Mitochondrial malfunction is a known factor in non-infectious neurodegenerative conditions such as Alzheimer's disease and Parkinson's disease, Kramer said, though the pathway to this disruption is not entirely known.

"Our model raises some new and exciting possibilities for future research on other important human viruses that can invade the nervous system and cause disease," Kramer said.

"And the fact that alpha-herpes infection damages the same key cellular function as neurodegenerative disorders also is striking," he said. "Understanding how viral infection damages neurons might give us insight into how diseases like Alzheimer's do the same. The viruses we study hijack well-studied cellular pathways that might make an effective target for future therapeutic strategies."

In a healthy neuron, mitochondria move throughout the cell's elongated, tree-like structure to provide energy for various processes that occur throughout the cell. For the strenuous task of long distance intercellular communication, mitochondria move along the axon and synapses, sites of cell-to-cell contact where signaling occurs.

Calcium plays a key role in this cell communication, Kramer explained. A neuron experiences a spike in calcium levels in the axon and synapses when it receives a signal from another neuron. Though a natural rover, mitochondria contain a protein called Miro that detects this rush of calcium and stops the organelles in the synapse. The mitochondria then provide energy as the cell passes a signal along to the next neuron.

Through live-cell imaging of neurons grown in the Enquist lab, Kramer and Enquist observed how this process becomes corrupted by HSV-1 and PRV -- and how the viruses need the process to spread.

The chaos begins when the virus ramps up the neuron's firing of electrical signals, as was first reported in a 2009 paper published in the journal PLoS Pathogens by Enquist; first author Kelly McCarthy, a past member of Enquist's lab who received her doctoral degree from Princeton in 2011; and David Tank, the Henry L. Hillman Professor of Molecular Biology and co-director of the Princeton Neuroscience Institute.

In the latest research, Kramer and Enquist found that this spike in electrical activity floods the axon and synapses with calcium. As a consequence, the Miro proteins detect the increase in calcium and stop mitochondrial motion. The virus' control over the cell immediately dropped off, however, when Kramer and Enquist interfered with Miro's ability to respond to the uptick in calcium levels. Though the viral infection was not completely disrupted, it could not spread within or to other cells with the same efficiency.

Based on these observations, Kramer and Enquist suggest that viruses such as HSV-1 and PRV may bring mitochondria to a standstill in order to hijack their transportation. Mitochondria move about the neuron on the backs of motor proteins dynein and kinesin-1. During viral infection, mitochondria shed these proteins to stop moving when Miro detects an upsurge in cellular calcium.

Previous research has shown that HSV-1 and PRV also use kinesin-1 specifically for transport within an infected cell. Thus, Kramer said, his and Enquist's work suggests that it is very likely that the viruses disrupt mitochondrial motility so that they can hitch themselves to the now available kinesin-1 proteins and move through the nervous system more efficiently.

James Alwine, a University of Pennsylvania professor of cancer biology, said that the Princeton research is a significant contribution to a growing body of research that describes how viruses seize cellular motor proteins such as kinesin-1.

While the findings have therapeutic potential -- particularly in helping show how balancing cellular calcium might subdue viral infection -- the demonstration that viruses can move through an infected cell with the ease of something as essential as mitochondria is notable in itself, said Alwine, who is familiar with the research but had no role in it.

"Determining the specific mechanism by which Miro function is abrogated may provide additional therapeutic avenues, but this also is marvelous basic research that does not have to be justified by its therapeutic potential," he said.

"To disrupt the loading of mitochondria to motor proteins so that virions [complete virus particles] can load instead is a clever way for a virus to be transported and is a great new idea provoked by this data," Alwine said. "While other neurotropic viruses would have to be tested specifically, movement in nerve cells is required by all of them. Thus, this observation provides a starting place and a model mechanism for research with those other pathogens."

This research was published May 17 in the journal Cell Host and Microbe, and supported by the National Institutes of Health and a National Science Foundation Graduate Research Grant.

Share this story on Facebook, Twitter, and Google:

Other social bookmarking and sharing tools:

Story Source:

The above story is reprinted from materials provided by Princeton University.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.

Journal Reference:

Tal Kramer, Lynn W. Enquist. Alphaherpesvirus Infection Disrupts Mitochondrial Transport in Neurons. Cell Host & Microbe, 2012; 11 (5): 504 DOI: 10.1016/j.chom.2012.03.005

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.


View the original article here

Saturday, June 9, 2012

To spread, nervous system viruses sabotage cell, hijack transportation

ScienceDaily (May 30, 2012) — Herpes and other viruses that attack the nervous system may thrive by disrupting cell function in order to hijack a neuron's internal transportation network and spread to other cells.

Princeton University researchers made the first observation in neurons that common strains of the herpes virus indirectly take control of a cell's mitochondria, the mobile organelles that regulate a cell's energy supply, communication with other cells, and self-destruction response to infection. The team reports in the journal Cell Host and Microbe that viral infection elevates neuron activity, as well as the cell's level of calcium -- a key chemical in cell communication -- and brings mitochondrial motion to a halt in the cell's axon, which connects to and allows communication with other neurons.

The authors propose that the viruses then commandeer the proteins that mitochondria typically use to move about the cell. The pathogens can then freely travel and reproduce within the infected neuron and more easily spread to uninfected cells. When the researchers made the mitochondria less sensitive to calcium the viruses could not spread as quickly or easily.

These findings reveal a previously unknown and highly efficient mechanism that some of the most common strains of herpes viruses in humans may use to proliferate in the nervous system, said lead author Tal Kramer, a doctoral student in the lab of the paper's co-author Lynn Enquist, the Henry L. Hillman Professor of Molecular Biology and chair of Princeton's molecular biology department.

Kramer and Enquist used rat neurons to study two herpes viruses in the alpha-herpes virus subfamily: pseudorabies virus (PRV), a model alpha-herpes virus that infects animals, and herpes simplex virus 1 (HSV-1), an extremely common human virus that causes cold sores and other lesions. Other human alpha-herpes viruses are responsible for causing diseases such as chicken pox and shingles.

"No one before has looked carefully at mitochondrial motion during alpha-herpes virus infection in neurons. We provide new insight into how these viruses damage cells in the nervous system in ways that are important for the virus to propagate," Kramer said.

"If mitochondria are stopped in their tracks and can't go anywhere, that is potentially very bad," he said. "They are not only the power plants of the cell, but regulate important processes. The virus likely acts to interfere with many of those processes."

Beyond herpes, the Princeton findings present a possible explanation for how other neurotropic viruses such as rabies, West Nile and polio attack and disrupt the nervous system, Kramer said. Although these viruses are different from the herpes family, the fact that HSV-1 and PRV had a similar effect on mitochondrial motion and function suggests that other pathogens could corrupt mitochondria in the same way, he said.

In addition, the paper lays out the implications of distorted mitochondrial function on neuron health. Mitochondrial malfunction is a known factor in non-infectious neurodegenerative conditions such as Alzheimer's disease and Parkinson's disease, Kramer said, though the pathway to this disruption is not entirely known.

"Our model raises some new and exciting possibilities for future research on other important human viruses that can invade the nervous system and cause disease," Kramer said.

"And the fact that alpha-herpes infection damages the same key cellular function as neurodegenerative disorders also is striking," he said. "Understanding how viral infection damages neurons might give us insight into how diseases like Alzheimer's do the same. The viruses we study hijack well-studied cellular pathways that might make an effective target for future therapeutic strategies."

In a healthy neuron, mitochondria move throughout the cell's elongated, tree-like structure to provide energy for various processes that occur throughout the cell. For the strenuous task of long distance intercellular communication, mitochondria move along the axon and synapses, sites of cell-to-cell contact where signaling occurs.

Calcium plays a key role in this cell communication, Kramer explained. A neuron experiences a spike in calcium levels in the axon and synapses when it receives a signal from another neuron. Though a natural rover, mitochondria contain a protein called Miro that detects this rush of calcium and stops the organelles in the synapse. The mitochondria then provide energy as the cell passes a signal along to the next neuron.

Through live-cell imaging of neurons grown in the Enquist lab, Kramer and Enquist observed how this process becomes corrupted by HSV-1 and PRV -- and how the viruses need the process to spread.

The chaos begins when the virus ramps up the neuron's firing of electrical signals, as was first reported in a 2009 paper published in the journal PLoS Pathogens by Enquist; first author Kelly McCarthy, a past member of Enquist's lab who received her doctoral degree from Princeton in 2011; and David Tank, the Henry L. Hillman Professor of Molecular Biology and co-director of the Princeton Neuroscience Institute.

In the latest research, Kramer and Enquist found that this spike in electrical activity floods the axon and synapses with calcium. As a consequence, the Miro proteins detect the increase in calcium and stop mitochondrial motion. The virus' control over the cell immediately dropped off, however, when Kramer and Enquist interfered with Miro's ability to respond to the uptick in calcium levels. Though the viral infection was not completely disrupted, it could not spread within or to other cells with the same efficiency.

Based on these observations, Kramer and Enquist suggest that viruses such as HSV-1 and PRV may bring mitochondria to a standstill in order to hijack their transportation. Mitochondria move about the neuron on the backs of motor proteins dynein and kinesin-1. During viral infection, mitochondria shed these proteins to stop moving when Miro detects an upsurge in cellular calcium.

Previous research has shown that HSV-1 and PRV also use kinesin-1 specifically for transport within an infected cell. Thus, Kramer said, his and Enquist's work suggests that it is very likely that the viruses disrupt mitochondrial motility so that they can hitch themselves to the now available kinesin-1 proteins and move through the nervous system more efficiently.

James Alwine, a University of Pennsylvania professor of cancer biology, said that the Princeton research is a significant contribution to a growing body of research that describes how viruses seize cellular motor proteins such as kinesin-1.

While the findings have therapeutic potential -- particularly in helping show how balancing cellular calcium might subdue viral infection -- the demonstration that viruses can move through an infected cell with the ease of something as essential as mitochondria is notable in itself, said Alwine, who is familiar with the research but had no role in it.

"Determining the specific mechanism by which Miro function is abrogated may provide additional therapeutic avenues, but this also is marvelous basic research that does not have to be justified by its therapeutic potential," he said.

"To disrupt the loading of mitochondria to motor proteins so that virions [complete virus particles] can load instead is a clever way for a virus to be transported and is a great new idea provoked by this data," Alwine said. "While other neurotropic viruses would have to be tested specifically, movement in nerve cells is required by all of them. Thus, this observation provides a starting place and a model mechanism for research with those other pathogens."

This research was published May 17 in the journal Cell Host and Microbe, and supported by the National Institutes of Health and a National Science Foundation Graduate Research Grant.

Share this story on Facebook, Twitter, and Google:

Other social bookmarking and sharing tools:

Story Source:

The above story is reprinted from materials provided by Princeton University.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.

Journal Reference:

Tal Kramer, Lynn W. Enquist. Alphaherpesvirus Infection Disrupts Mitochondrial Transport in Neurons. Cell Host & Microbe, 2012; 11 (5): 504 DOI: 10.1016/j.chom.2012.03.005

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.


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Wednesday, March 21, 2012

How to Treat Cold Sores So They Don't Spread - Or Wreck Your Social Life


The chances are that unless you have a very effective cold sore treatment plan in place, you, like so many others are going to suffer from many more outbreaks of these painful and embarrassing sores. Although everyone who has suffered from the Herpes Simplex 1 Virus has come to dread the pain and embarrassment that comes with these outbreaks, what most people worry about most is the unfortunate impact that these outbreaks can have on their social life.

It is difficult to date and find the companionship that we all need if you cannot kiss or allow the other person to touch your face. It is also very difficult to meet new friends and truly enjoy yourself at social functions if you have to worry about preventing others from coming in contact with your face.

Of course, it can be quite difficult when others shy away from you or talk behind your back because of the sores on your mouth as well. All of these things come together to explain why those who suffer with this form of Herpes often suffer a lower self-esteem and higher amounts of anxiety.

The good news is you can treat cold sores and even eliminate future outbreaks entirely, enabling you to enjoy an active social life! There are two different aspects that come into play here: preventing the spread of Herpes and implementing a personalized cold sore treatment plan.

Preventing Virus Spread

It's true that trying to prevent others from getting the virus is what causes much of the social discomfort when you have the sores on your lips. While most people will recognize the cold sores and actively avoid making contact with your face, many may not know that they can get the virus by eating or drinking after you. Literally anything that your sores come in contact with could spread the virus!

The best way to prevent the spread of Herpes is to pay very close attention to the initial signs that you are getting them. In many cases the virus is spread during the very first stage of an outbreak before the sores are visibly showing. The virus can still be present on the skin even if it is not seen, so you should be extra alert to notice what your initial signs are so you can identify them right away.

For many people the initial signs are tingling or itching, red skin, or a rough patch of skin.

Implementing a Cold Sore Treatment Plan

The absolute best way to prevent spreading Herpes would be to force the virus to remain inactive inside your body and never make a public appearance on your face, right? This can actually be done by implementing a cold sore treatment plan that allows you to treat cold sores effectively and essentially inactivate the virus.

Here are some ideas of what should be included in a treatment plan:

* Working around outbreak triggers to avoid outbreaks.
* Correcting any deficiencies inside the body.
* Supplying the body with a well balanced, nourishing diet.
* Protecting the skin from sun and other potential damage.

If you just continue to live your life day to day and treat cold sores only after an outbreak develops, you will be living the social consequences the rest of your life. Take charge now and have the active social life you deserve!







Thursday, January 26, 2012

Herpes Drugs Don't Stop Herpes Spread

Got Genital Herpes? You're Still Infectious, Even if Drugs Cut Symptoms

By Daniel J. DeNoon
WebMD Health News

Reviewed by Laura J. Martin, MD

Jan. 5, 2012 -- People with genital herpes can still infect their sex partners -- even if they are taking anti-herpes drugs that prevent herpes outbreaks.

Even when they don't have an active herpes outbreak, people who carry genital herpes viruses are at risk of infecting their sex partners. With the discovery of drugs that prevent herpes outbreaks, there was hope that the drugs would also prevent herpes transmission. But there's been troubling evidence that this may not be true.

Now University of Washington researcher Christine Johnston, MD, and colleagues show that people with no herpes symptoms often shed infectious genital herpes virus -- even while taking very high doses of anti-herpes drugs.

"Short episodes of genital [herpes virus] shedding occur frequently with antiviral therapy, even for high-dose regimens," Johnston and colleagues report. "These breakthrough episodes are typically [without symptoms], last several hours, and occur at much the same rate irrespective of antiviral dose."

One in 5 Americans and Europeans carries HSV-2, the virus that causes most cases of genital herpes; HSV-1 causes some cases. Most people have few, if any, of genital herpes' painful symptoms: blisters on or around the genitals or rectum.

There's no cure for herpes infections. That's because herpes viruses travel up nerves to take up latent form in the nerve root. Powerful anti-herpes drugs -- acyclovir (Zovirax), famciclovir (Famvir), and valacyclovir (Valtrex) -- prevent most outbreaks in most people. But they don't eliminate virus hiding in nerve cells.

Recent clinical trials failed to show that herpes drugs could prevent herpes transmission. This led Johnston's team to conduct three intensive new studies.

In each study, adult volunteers already infected with HSV-2 swabbed their genital and rectal areas four times each day for eight to 14 weeks. The swabs were tested for HSV-2.

In the first study, the volunteers were randomly given a standard 400 mg, twice-daily dose of acyclovir or an inactive placebo pill for four weeks. After a one-week washout period, they switched to the active or placebo treatment for another four weeks.

The result: Swabs were 95% less likely to test positive for HSV-2 when a person was taking acyclovir. But even during treatment, people tested positive 3% of the time.

In the second and third studies, the researchers selected volunteers who suffered frequent genital herpes outbreaks. In study two, they took either 800 mg three-a-day, high-dose acyclovir or standard 500 mg daily doses of valacyclovir. Study three compared standard-dose valacyclovir against high-dose valacyclovir (1,000 mg three times daily). As in the first study, volunteers switched treatments after a one-week washout period.

The result: None of these very high doses of active anti-herpes drugs completely prevented genital shedding of infectious herpes virus. Even with high-dose valacyclovir, 3% of swabs carried herpes virus -- and patients tested positive 7% of the time.

The findings show that herpes hiding in nerve roots doesn't sleep between outbreaks. Instead, it's frequently seeping out.

"The finding that treatment cannot fully prevent transmission should encourage patients to use condoms and adopt safe-sex practices," Philippe Van de Perre and Nicolas Nagot of the University Hospital of Montpellier, France, suggest in an editorial accompanying the Johnston report in the Jan. 5 online issue of The Lancet.

SOURCES: Johnston, C. The Lancet, published online, Jan. 5, 2012.Van de Perre, P. and Nagot, N. The Lancet, published online, Jan. 5, 2012.CDC web site.

©2012 WebMD, LLC. All Rights Reserved.



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Friday, September 30, 2011

Treat Cold Sores & Prevent the Spread of Herpes Simplex 1


How would you feel if having looked in the mirror and seen that you have cold sores, and at that point you realize that you can't even give your children a kiss on the cheek? Or it's the same when you go on a romantic vacation with your lover, knowing you can't touch them with your lips in any intimate way because those sores aren't completely healed just yet. These feelings are truly heartbreaking. The Herpes virus brings with it a lot of irritation and heart break, but the risk of passing on this annoying problem to others around them, is the biggest concern for most sufferers.

The spread of Herpes is a very serious concern, especially when you are talking about cold sores which many sufferers do not completely understand. If you are unfortunate to find yourself infected with this virus, it is important that you play your part in the prevention of the spread of the virus by learning about the stages of an outbreak, when you are, and when you are not contagious, and of course most importantly, how you can treat cold sores in the long term to prevent future outbreaks

Stages of an Outbreak

This is the first thing you have to completely explore after being diagnosed with Herpes Simplex Virus 1. There are very clear phases of each and every outbreak, starting with the tingling sensation that tells you they are on their way and ending with the scabbed over crusty sores that eventually trail off and disappear.

As you learn about the different stages of an outbreak you will also learn about different cold sore treatment options that could potentially shorten the duration of the outbreak. You will also learn very critical information about how to prevent the spread of the virus by avoiding contact with others during critical phases of the outbreak.

To be entirely safe, it is advised that you keep your mouth away from others during the entire outbreak, starting with those tingling sensations that tell you an outbreak is on the way.

Preventing Cold Sores

Once you have educated yourself on how cold sore outbreaks occur and are up to date on how to prevent any outbreaks you may have right now and in the near future from spreading to those you love, it's time to start learning about potential cold sore treatment options that could prevent future outbreaks.

It's very true that you can never entirely get rid of the virus. It will always be there, under the skin, presenting an ever-present risk of outbreak. Yet, you can control the way you live your life and prevent cold sores from overtaking your life.

How to Treat Cold Sores

Finally, learning how to treat cold sores is absolutely vital to controlling its spread. If you can prevent your own outbreaks from surfacing on your face, then you have much less to worry about when it comes to spreading it to others. If you don't have the blisters, you can kiss your loved ones and have an active sex life without worry!

Ultimately, reducing the spread of Herpes comes down to preventing and controlling active outbreaks for people who already have the virus. If you have the virus it is your absolute duty to learn how to treat cold sores effectively and reduce their appearance. That is our only hope to stop the spread of the virus.




After thorough research, a Los Angeles based dermatologist, has come up with a Cold Sore Treatment to get a permanent remedy for them. After following his unique treatment approach, you will shorten the virus cycle to 3 days and then permanently cure it forever. Check it out at http://www.treatcoldsores.net




Monday, September 26, 2011

Discovery could lead ways to prevent herpes spread

Discovery could lead ways to prevent herpes spread

Enlarge

Recently enveloped herpes simplex virion in the perinuclear space of an infected cell.

(Medical Xpress) -- Herpesviruses are thrifty reproducers -- they only send off their most infectious progeny to invade new cells. Two Cornell virologists recently have discovered how these viruses determine which progeny to release.

The College of Veterinary Medicine researchers report in the Aug. 23 (108:34) issue I of the Proceedings of the National Academy of Sciences on the mechanisms of this quality-control system, which helps streamline viral reproduction to optimize its spreading.

The virologists identified proteins in the nuclear membranes of infected cells that control which viral products exit. This map could be used to identify new targets for future drugs that would hamper viral reproduction by clogging inspection pathways to trap viruses in the cells they first infect.

"When a herpesvirus hijacks a cell, it turns the nucleus into a viral production factory," said Joel Baines, the James Law Professor of Virology, who co-authored the study with postdoctoral research associate Kui Yang. "It makes protein shells called capsids, stuffs them with viral DNA and ships them out of the nuclear membrane to infect new cells. But errors in the assembly line leave some capsids empty, without DNA, and shipping these is a waste of resources."

When capsids bud from the nuclear membrane, they take pieces of it with them, forming protective lipid envelopes that let them move to new cells. Empty capsids can't reproduce, so the virus only allows capsids with DNA through. How the membrane could determine whether the capsid had DNA or not was a mystery until Yang and Baines mapped its method.

"We found clamplike proteins on the surface of herpesvirus capsids that hold them together and keep them from bursting when they're stuffed full of DNA," said Baines. "Those with DNA have far more of these than empty capsids. We also found a protein complex living in the host cell's nuclear membrane that binds to these structural support proteins, selecting DNA-filled capsids to pull through the membrane. Thus the virus releases only its most infectious particles."

Discovery could lead ways to prevent herpes spread Various species of herpesvirus.

This streamlining process has helped herpesvirus species spread prevalently and permanently across all animal species. Eight of the 25 known viruses in the herpes family regularly infect humans, posing a leading cause of human viral infection.

Once in a body, herpesvirus stays for life. It can flare up at any time, causing symptoms and diseases, ranging from infected sores to brain inflammation, birth defects and cancers of the nose, throat and lymphatic system. Though usually not fatal, herpes can prove dangerous to patients with weak immune systems, such as those with HIV/AIDS or infants who contract HIV/AIDS from their mothers.

There is no cure for herpes, but Baines' map illustrates a viral reproduction system that can be subverted.

"Take away either component, the capsid's clamplike proteins or the membrane's inspector proteins, and nothing escapes the host cell," said Baines. "This opens the door to developing drugs that could block the interactions between these protein complexes, covering the binding sites to clog the system so that no viral particles get through. This would significantly slow or even stop the virus's spread between cells. Our lab is now working on even more detailed maps of these proteins' exact interaction sites that will help drug developers pinpoint precise targets to thwart viral reproduction."

The research was supported, in part, by the National Institutes of Health.

Provided by Cornell University (news : web)


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Friday, August 26, 2011

What is a Cold Herpes Sore And How Does the HSV spread?


So you would like to know what a cold herpes sore is? In this article we will try to explain exactly what it is and it's causes.

Firstly a cold herpes sore is caused by the herpes simplex virus (HSV) which will manifest itself in 2 types of viral infection It is marked by painful watery blisers to the skin or the mucous membrane (such as those found on the mouth or lips) as well as those found on a person's genitals. What you should remember is that this disease is contagious especially during an outbreak and can not be cured using current technology.

The infection that appears on a person's lip is the one that is commonly referred to as a cold sore and it may sometimes be confused with aphthous ulcers or those which are more commonly referred to as canker sores. These are similar in appearance but appear inside the mouth they are not caused by HSV. For those people who do not present signs of HSV ,then it lies dormant in the bodies of the nerve cells and will replicate and travel along the axons towards the skin during an outbreak. Once the outbreak has passed, the virus lies dormant within the nerve bodies and it is very difficult to treat it.

Generally HSV is transmitted by direct contact of the lips where cold herpes sores are present or just before they appear. Unfortunately if you happen to be suffering from genital cold sores then you may well increase the chance of infection to your unborn child at the time of birth. The virus will be transmitted to them as they travel down the birth canal, but this risk can be minimised if there are no symptoms or exposed blisters during the delivery. Normally a person who suffers an outbreak of cold sores for the first time after being exposed to HSV is usually having more severe symptoms than those outbreaks that they have at later dates . This is because the body will not have had a chance to produce antibodies the first time round to help attack the virus.

Most outbreaks of cold herpes sores are preceded by a sensation of burning, itching or tingling in the area prior to the blistering becoming visible.

In the US over recent years there has been a decline in infections with the HSV-1 and 2 strains of genital herpes though infections rates are still around 58% for HSV-1 and 17% for HSV-2.

Hopefully the information that has been provided above will give you a better understanding of what cold herpes sores are.




Dee Cohen is a social worker and yoga teacher. Visit http://www.elegantbank.com/blister-fever-home-remedy.html for Cold Herpes Sore information and answers.




Sunday, June 12, 2011

Stressed show horses may spread equine herpes

Equine herpes, a highly contagious infection among horses that can be fatal, may spread when stressed out show horses come together for competitions, according to animal health experts.

That appears to have helped fuel the current equine herpes outbreak, which has killed at least 12 horses and sickened 72 others in 10 states so far. These states include Arizona, California, Colorado, Idaho, New Mexico, Nevada, Oklahoma, Oregon, Utah and Washington.

"Most adult horses are infected with the virus," Philip Johnson, a professor of equine internal medicine at the University of Missouri's College of Veterinary Medicine, told Discovery News. "Like most herpes viruses — human and animal — infection leads to a life-long association between the virus and the host. In most healthy horses most of the time, the host's immune system prevents the virus from going active and being especially contagious."

Given "the right circumstances," however, he said "the virus can defeat the constraints of the host's immune system and go active."

NEWS: Domestication Led to Horse Coat Color

Such circumstances likely were in place at the National Cutting Horse Association's Western National Championships held at the Golden Spike Event Center in Ogden, Utah, from April 29 to May 8. According to the U.S. Department of Agriculture, this event resulted in 32 confirmed cases of equine herpes, with these horses later spreading the disease to other victims.

Johnson explained that while the virus can "go active in any horse at any time, it's very likely that the immune system has something to do with it. Congregated horses coming together to compete are stressed, adversely affecting the immune system's function."

Another factor is that the virus comes in two strains, with one strain more likely to cause neurological problems than the other. Symptoms can include a fever of 102 degrees Fahrenheit or higher, nasal discharge from the nostrils, unusual tiredness, weakness, leaning, urine dribbling, reduced tail tone, and a difficulty or inability to stand.

Direct horse-to-horse contact, breathing in the virus, contaminated hands of horse workers, and equipment, tack and food harboring the virus can all lead to transmission of the disease.

Bruce King, state veterinarian of Utah, shared that "EHV-1 (equine herpes) is not transmissible to people." But due to the "highly infectious" nature of this particular outbreak, numerous secondary cases in horses have occurred, leading to the "quarantine of the veterinary teaching hospitals in Fort Collins, Colorado, and Pullman, Washington."

King said "voluntary isolation" of infected horses is encouraged, "with a minimum of two temperatures taken and recorded per day on each horse."

Acting Arizona State Veterinarian John Hunt further recommends that "isolation and monitoring continue for 28 days after any clinical signs of disease are observed."

NEWS: Horses Never Forget Human Friends

Hunt agrees that the illness "poses no threat to humans," but Johnson said it could affect other animals, such as mules, donkeys, alpacas, llamas, giraffes and gazelles. So far, the latest outbreak seems to have only impacted horses.

Veterinarians may treat victims with anti-inflammatory drugs, anti-viral drugs and antibiotics for secondary infections. Slings and body padding could be required to help the horses stand up, while intravenous feeding and use of a urinary catheter may also provide additional medical support.

The disease has been documented for at least six decades, but it has resulted in a number of headline-generating outbreaks in recent years.

"It has been conjectured that horse owners subject their competitive horses to more intense confinement, more transport between shows, and stress and transport than they used to, making it easier for the activated virus to pass quickly between horses," Johnson said, adding that grouping "the horses more closely together in temporary housing at horse shows" could also facilitate spread of the disease.

Some vaccines provide protection against the less debilitating form of the virus, but they do not appear to protect against the neurological syndrome. Several virologists are now working on a vaccine that they hope will target this particularly virulent form of herpes.

© 2011 Discovery Channel


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Saturday, June 11, 2011

Spruce Meadows deemed low risk for spread of new horse herpes virus

The equine herpes virus that forced the cancellation of some rodeos will not stop international equestrian events from going on at Spruce Meadows this week, although bio-security measures have been heightened.

The $800,000 National tournament starts Wednesday and includes horses worth millions of dollars.

Equestrian and rodeo horses do not mix and because there have been few confirmed cases of the EHV-1 virus in Alberta, the risk of it spreading at Canada's premier equestrian venue was deemed low by the veterinarians Spruce Meadows consults.

"Because the speedskaters are affected by something doesn't mean the hockey players are," Spruce Meadows vice-president Ian Allison said Tuesday. "It's been very well contained in one equine community and doesn't effect us.

"We have taken steps to mitigate any risk we determined was real."

EHV-1 poses no threat to humans, but can cause respiratory failure, miscarriages and brain and spinal cord disease in horses. It can also be fatal. The virus is extremely contagious and can be spread via people, feed or shared equipment.

It is believed to have originated at a cutting competition in Ogden, Utah, and has spread through the western United States. There have been some reported cases in western Canada. Rodeos in High River, Okotoks and Nanton, Alta., were cancelled as a precautionary measure.

All horses competing at Spruce Meadows must pass a veterinarian's inspection and arrive with records verifying their health and where they've been.

Allison says Spruce Meadows has consulted daily with a veterinary panel since May 1 about this virus. Some parade and colour horses will not be used during Spruce Meadows ceremonies because it can't be determined what other horses they've had contact with in the last three months.

Competitors and staff are reminded not to share feed buckets and to wash their hands often. The commercial carriers who transport horses to and from the airport have been asked to disinfect their vehicles and the Spruce Meadows stables have been cleaned and disinfected.

"We're satisfied that the steps and measures have been taken, yet we still emphasized it this morning at our riders meeting and really want people to understand there are ways to virtually put this thing to zero risk," Allison said.

"It never hurts to emphasize it in case people become more casual in their approach to things and think the threat may have passed, although the threat is minimal."

While many of those who attend Spruce Meadows to watch events are horse owners themselves, the public doesn't have access to the fenced-off stables, Allison pointed out.

No riders have pulled their horses out of the National, although Allison says he got calls from all over the world asking about the situation over the last month.

Eric Lamaze's horse Hickstead arrived early Tuesday morning from Europe. Lamaze, from Montreal, and Hickstead won Olympic gold in individual show jumping and silver in the team event in 2008. Lamaze has faith Spruce Meadows will keep his prized horse safe.

"We just arrived and I'm not too sure about what's going on in this part of the world," Lamaze said. "There are a lot of horses here, so it can't be that bad. If I was the only one here it would be different."

While equine herpes is not new to the horse community, this particular strain is and can attack the nervous system.

"It looks like there is a more aggressive strain," said Dan French, the resident veterinarian at Spruce Meadows. "This unique neurogenic strain that has surfaced is one we have not got a good vaccine for."

He reiterated that western and show-jumping horses are separate communities, which will help keep the virus away from the horses at Spruce Meadows this week.

"We don't often get common trainers and groomers between the disciplines," French said. "That's to our advantage."


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