Study shows it helped a minority of patients, and experts say this approach has promise
WebMD News from HealthDay
<h3/> By EJ Mundell
HealthDay Reporter
<h3/> TUESDAY, May 26, 2015 (HealthDay News) -- A genetically engineered and harmless form of the herpes virus is showing promise in slowing the progression of melanoma, researchers report.
The treatment works by killing cancer cells and triggering the immune system to attack tumors, researchers said. The study, published May 26 in the Journal of Clinical Oncology, was funded by drug maker Amgen, which is developing the therapy.
The researchers said their study of 436 patients worldwide is the first phase 3 clinical trial to show that so-called "viral immunotherapy" -- using a harmless virus to spur an immune response against cancer -- can benefit cancer patients.
A phase 3 trial, typically the last and largest, is undertaken after earlier research indicates a treatment is already safe and effective in a small group.
The patients in this trial had aggressive, inoperable melanoma. Each received either an injection of the viral therapy -- called Talimogene Laherparepvec (T-VEC) -- or a "control" immunotherapy.
T-VEC is a modified form of herpes simplex virus type-1 that has had two of its genes removed so that it can't replicate in healthy cells, the research team explained. Instead, T-VEC multiplies inside cancer cells and bursts them from within. It also produces a molecule that stimulates the immune system to attack and destroy tumors.
Not everyone benefited from the therapy, however. According to the study, treatment response of more than six months occurred in only about 16 percent of patients in the T-VEC group. However, that was still much better than the 2 percent response rate of those in the group that didn't receive the treatment, the researchers reported.
Also, some patients in the T-VEC group had a response lasting longer than three years, the researchers noted.
"There is increasing excitement over the use of viral treatments like T-VEC for cancer, because they can launch a two-pronged attack on tumors -- both killing cancer cells directly and marshalling the immune system against them," said Kevin Harrington, U.K. trial leader and professor of biological cancer therapies at the Institute of Cancer Research in London.
WebMD News from HealthDay
<h3/> By EJ Mundell
HealthDay Reporter
<h3/> TUESDAY, May 26, 2015 (HealthDay News) -- A genetically engineered and harmless form of the herpes virus is showing promise in slowing the progression of melanoma, researchers report.
The treatment works by killing cancer cells and triggering the immune system to attack tumors, researchers said. The study, published May 26 in the Journal of Clinical Oncology, was funded by drug maker Amgen, which is developing the therapy.
The researchers said their study of 436 patients worldwide is the first phase 3 clinical trial to show that so-called "viral immunotherapy" -- using a harmless virus to spur an immune response against cancer -- can benefit cancer patients.
A phase 3 trial, typically the last and largest, is undertaken after earlier research indicates a treatment is already safe and effective in a small group.
The patients in this trial had aggressive, inoperable melanoma. Each received either an injection of the viral therapy -- called Talimogene Laherparepvec (T-VEC) -- or a "control" immunotherapy.
T-VEC is a modified form of herpes simplex virus type-1 that has had two of its genes removed so that it can't replicate in healthy cells, the research team explained. Instead, T-VEC multiplies inside cancer cells and bursts them from within. It also produces a molecule that stimulates the immune system to attack and destroy tumors.
Not everyone benefited from the therapy, however. According to the study, treatment response of more than six months occurred in only about 16 percent of patients in the T-VEC group. However, that was still much better than the 2 percent response rate of those in the group that didn't receive the treatment, the researchers reported.
Also, some patients in the T-VEC group had a response lasting longer than three years, the researchers noted.
"There is increasing excitement over the use of viral treatments like T-VEC for cancer, because they can launch a two-pronged attack on tumors -- both killing cancer cells directly and marshalling the immune system against them," said Kevin Harrington, U.K. trial leader and professor of biological cancer therapies at the Institute of Cancer Research in London.
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