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Showing posts with label Breast. Show all posts
Showing posts with label Breast. Show all posts

Wednesday, November 2, 2011

Herpes Virus Effective in Treating Triple Negative Breast Cancer - Med India

Moreover, Dr. Gholami explained that TNBC cells have high levels of p-MAPK, a protein that promotes cancer cells to grow and has been reported as a potential cause for resistance to current conventional therapies. Knowing that the herpes virus specifically targets cells that over express this protein is the reason she chose to test this treatment protocol. "When we infect TNBC cells with the herpes virus and measure p-MAPK levels, the protein level decreases with time after treatment with the virus," Dr. Gholami said.

The hope is that advances in oncolytic viral therapy, which uses viruses tailored to target and destroy cancer cells while sparing healthy cells, will allow researchers to develop more effective strategies for hard-to-treat cancers. A similar herpes virus has been tested in clinical trials against head and neck cancers. But this is the first laboratory study to show promise in using the therapy to treat TNBC.

The next steps, Dr. Gholami said, are to map out the pathways in which the virus kills the tumor cells to determine how to improve upon this mechanism. In the future, the Fong laboratory, which is on the forefront in oncolytic viral therapy research, will continue this avenue of investigation in animal studies. The team will also work to identify leads to understand what existing chemotherapy drugs can be used synergistically with this viral therapy. Finding complementary treatments that kill fast-growing cancer cells and combat resistance is the key to possibly making a cure a reality.

If additional animal studies are also positive, human clinical trials could be on the horizon. "Our goal is to improve this version of the virus and get it into a clinical trial," Dr. Gholami said. "Ultimately, I believe the treatment for TNBC will be a multimodality targeted treatment approach: potentially using a viral-based therapy plus some other targeted chemotherapy or radiation."

The study was supported by grants from the National Institutes of Health and the Flight Attendant Medical Research Institution.

Source-Newswise


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Monday, October 31, 2011

Herpes Virus Shows Early Promise In Treating Triple-Negative Breast Cancer

Oncolytic viral therapy shows great potential
for treating an aggressive form of breast cancer

Newswise — SAN FRANCISCO: Researchers from Memorial Sloan-Kettering Cancer Center in New York City report they have successfully treated triple-negative breast cancer (TNBC) in petri dishes and in mouse models with a method based upon a herpes simplex virus. The study on the viral-based therapy was reported today at the 2011 Annual Clinical Congress of the American College of Surgeons.

Triple-negative breast cancer is an aggressive type of breast cancer that can account for up to 20 percent of all cases and is responsible for a disproportionate number of breast cancer deaths, according to the researchers. Moreover, the disease is most likely to surface in younger women (< 35 years old), especially if they are African American or Hispanic.

Because these types of cancerous tumors do not express the estrogen receptor, progesterone receptor, or HER-2 receptor, found in other more common types, newer targeted therapies such as tamoxifen and Herceptin are ineffective against the disease.

“Triple-negative breast cancer patients are in dire need of targeted therapies,” according to Sepideh Gholami, MD, a research fellow in the laboratory of Yuman Fong, MD, FACS, at Memorial Sloan-Kettering Cancer Center. “Although these tumors respond to a variety of chemotherapies, they have a high recurrence and metastatic rate.”

In the study, Dr. Gholami and her colleagues examined TNBC cell lines and infected them with a herpes simplex virus called NV1066. After treatment with the virus, more than 90 percent cell kill was achieved in all cell lines within a week. Furthermore, the researchers injected TNBC cells into laboratory mice. After treating the mouse models with the virus, and measuring the change in the tumors over 20 days, they found that the tumors had largely disappeared.

It was very surprising to see such an intense response. “The difference was dramatic, because sometimes we can stop tumor growth and achieve tumor regression,” Dr. Gholami said. “Our results are very exciting because we may be coming up with an approach that could potentially exploit the unique vulnerabilities of these specific cancer cells.”

Moreover, Dr. Gholami explained that TNBC cells have high levels of p-MAPK, a protein that promotes cancer cells to grow and has been reported as a potential cause for resistance to current conventional therapies. Knowing that the herpes virus specifically targets cells that over express this protein is the reason she chose to test this treatment protocol. “When we infect TNBC cells with the herpes virus and measure p-MAPK levels, the protein level decreases with time after treatment with the virus,” Dr. Gholami said.

The hope is that advances in oncolytic viral therapy, which uses viruses tailored to target and destroy cancer cells while sparing healthy cells, will allow researchers to develop more effective strategies for hard-to-treat cancers. A similar herpes virus has been tested in clinical trials against head and neck cancers. But this is the first laboratory study to show promise in using the therapy to treat TNBC.

The next steps, Dr. Gholami said, are to map out the pathways in which the virus kills the tumor cells to determine how to improve upon this mechanism. In the future, the Fong laboratory, which is on the forefront in oncolytic viral therapy research, will continue this avenue of investigation in animal studies. The team will also work to identify leads to understand what existing chemotherapy drugs can be used synergistically with this viral therapy. Finding complementary treatments that kill fast-growing cancer cells and combat resistance is the key to possibly making a cure a reality.

If additional animal studies are also positive, human clinical trials could be on the horizon. “Our goal is to improve this version of the virus and get it into a clinical trial,” Dr. Gholami said. “Ultimately, I believe the treatment for TNBC will be a multimodality targeted treatment approach: potentially using a viral-based therapy plus some other targeted chemotherapy or radiation.”

The study was supported by grants from the National Institutes of Health and the Flight Attendant Medical Research Institution.

Other participants in the study include Chun-Hao Chen, MD; Sizhi Paul Gao, MD, PhD; Joshua Carson, MD, PhD; Taejin Song, MD, PhD, FACS; Jackie Bromberg, MD, PhD; and Yuman Fong, MD, FACS.




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Sunday, October 30, 2011

Herpes Virus Could Kill Aggressive Breast Cancer

A genetically engineered version of the virus that causes herpes shows promise as a treatment for a particularly aggressive type of breast cancer, according to a new study in animals.

The virus targeted and killed triple-negative breast cancer cells in mice. Triple-negative breast cancer is a form of breast cancer that cannot be treated with hormone therapies, such as tamoxifen and Herceptin.

The results are preliminary, and it's not clear whether the therapy will have the same effect on tumors growing in people. Much more research is needed to determine this. If a treatment is developed, it will likely be used in conjunction with other cancer therapies, including chemotherapy and radiation, the researchers said.

The study will be presented today (Oct. 24) at the meeting of the American College of Surgeons in San Francisco.

Herpes therapy

Triple-negative breast cancer accounts for about 20 percent of all breast cancer cases. It disproportionally effects young, African-American women and is usually treated with chemotherapy. (Triple-negative breast cancers are not fueled by the hormone estrogen, so they do no respond to treatments designed to block the hormone.)

Study researcher Dr. Sepideh Gholami, a research fellow in the at Memorial Sloan-Kettering Cancer Center in New York City. and colleagues infected breast cancer cells in a dish with a herpes virus called NV1066. Within a week, the virus killed up to 90 percent of the tumor cells.

The researchers then injected breast cancer cells into mice. After treating the mice with the virus for 20 days, they saw the tumors had largely disappeared, Gholami said.

The dramatic response may be due to the fact that triple-negative breast cancer cells have high levels of a protein called p-MAPK. The herpes virus specifically targets cells with high levels of this protein, the researchers said.

The therapy is just one of many in recent years to explore the use of viruses as a means to target and destroy cancer cells. The herpes virus has been tested in people as a treatment for head and neck cancer, but not for breast cancer, the researchers said.

More research

The study is an "extremely exciting step" in the pursuit of a cancer therapy that uses the herpes virus, said Dr. Stefan Gluck, a medical oncologist at the University of Miami's Sylvester Comprehensive Cancer Center.

However, the researchers still need to show that this herpes virus is safe to use in patients. After all, the herpes virus is known to cause infection in humans, including infections in the brain. Proving the therapy's safety will likely be a lengthy process, and will involve testing it on other animals first, such as dogs and primates, Gluck said.

The researchers plan to figure out exactly how the virus works to kill the breast cancer cells, and try to bolster its effect.

Pass it on: The herpes virus can infect and kill breast cancer cells in a dish and in mice.

This story was provided by MyHealthNewsDaily, a sister site to LiveScience. Follow MyHealthNewsDaily staff writer Rachael Rettner on Twitter @RachaelRettner. Find us on Facebook.


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