Breast cancer vaccine could be available in 8 years, says Mayo Clinic

A new immunotherapy treatment is showing positive signs in early-stage clinical trials.

Breast cancer vaccine could be available in 8 years, says Mayo Clinic
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  • Clinical trials of an immunotherapy treatment for breast cancer showed positive signs, and the researchers hope to move to larger trials in coming years.
  • Immunotherapies train the body's immune system to find and kill cancer cells without harming healthy cells.
  • Recent trials of immunotherapies for other cancers have also showed positive signs.


A vaccine that prevents the recurrence and development of breast and ovarian cancers could become available in less than a decade, according to researchers at the Mayo Clinic in Jacksonville, Florida.

The researchers developed an immunotherapy treatment that trains the immune system to recognize and kill breast cancer cells. Based on the results of early-stage clinical trials, the vaccine seems to have successfully removed cancer cells in one patient, and another is showing positive results.

"It's supposed to stimulate a patient's own immune response so that the immune cells, like t-cells, would go in and attack the cancer," Dr. Saranya Chumsri, an oncologist at the world-renowned medical center, told First Coast News.

Before the vaccine could be made available to a large amount of patients, it would need to pass the Food and Drug Administration's phase 3 trials, a process that probably won't start for another three years. But the researchers are confident their treatment will withstand the screening.

"It is reasonable to say that we could have a vaccine within eight years that may be available to patients through their pharmacy or their doctor," Mayo Clinic investigator, Keith L. Knutson, Ph.D., told Forbes.

Mayo Clinic immunologists have also developed two other cancer vaccines for Triple Negative Breast Cancer and HER2 Positive Breast Cancer.

"We know that they're safe," Knutson said. "We know that they stimulate the immune system [to fight cancer]. . . We know that they have had a positive impact on ovarian and breast cancer. We haven't seen any adverse events that are causing problems other than irritation in the area similar to a flu vaccination. Now we have to convince the FDA, through solid, rigorous clinical trials that we're seeing what we're seeing."

Since the 1990s, immunotherapies have increasingly become an area of interest among medical researchers who seek to defeat cancer without simultaneously destroying healthy cells in the body, as chemotherapy and radiation does. Immunotherapy is, in theory, is the ideal solution. But one major obstacle is that all cancers are different, so it's unclear when or whether immunotherapies will be able to treat the more than 100 types of cancer currently known to scientists.

Still, researchers are currently exploring a variety of immunotherapies, and the global immunotherapy drug market is expected to grow to a valuation of $101.6 billion by 2023.

"Other individuals are working on lung and prostate and other cancers," Knutson said. "Some are very similar to the approaches we are taking, but there are different cellular processes that have gone wrong in different cancers."

Chumsri and Kutson both said that early clinical trials of a variety of immunotherapies are showing positive signs.

"We have seen early signals that our vaccines have a very positive impact on disease," Knutson said. "We are building on that foundation."

Is the universe a graveyard? This theory suggests humanity may be alone.

Ever since we've had the technology, we've looked to the stars in search of alien life. It's assumed that we're looking because we want to find other life in the universe, but what if we're looking to make sure there isn't any?

According to the Great Filter theory, Earth might be one of the only planets with intelligent life. And that's a good thing (NASA, ESA, and the Hubble Heritage Team [STScI/AURA]).
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Here's an equation, and a rather distressing one at that: N = R* × fP × ne × f1 × fi × fc × L. It's the Drake equation, and it describes the number of alien civilizations in our galaxy with whom we might be able to communicate. Its terms correspond to values such as the fraction of stars with planets, the fraction of planets on which life could emerge, the fraction of planets that can support intelligent life, and so on. Using conservative estimates, the minimum result of this equation is 20. There ought to be 20 intelligent alien civilizations in the Milky Way that we can contact and who can contact us. But there aren't any.

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Credit: Public domain
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Model of spiraling black holes that are merging with each other.

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