鈥淲e鈥檙e aiming to minimize one of the most challenging and devastating aspects of breast cancer鈥攎etastasis,鈥 said Komatsu. 鈥滿ortality rates for metastatic breast cancers are still incredibly high. Of the patients with cancer that has spread and led to tumors in other organs, almost 80% will survive less than five years.鈥
Cancer cells become more likely to move into other tissues as they adapt to a low-oxygen environment due to the tumor鈥檚 defective vasculature. Because these blood vessels grow abnormally fast, they form improperly鈥攐xygen and nutrients leak out before reaching the tumor鈥檚 interior. However, the cancer cells buried within continue to divide and mutate, so some can survive the lack of oxygen. The master switch that enables cancer cells to generate energy by alternate means also triggers changes that let them enter the circulation and find new homes.
Strengthening the blood supply could also help make the cancer more vulnerable to therapeutic attack, Komatsu added. 鈥淚mproving the circulation inside a tumor would help anticancer drugs鈥攁nd the body鈥檚 own T cells, which also help eliminate cancer鈥攔each all the tumor cells, and increasing oxygen levels helps sensitize them to radiation and immunotherapy.鈥
Animal studies suggest that normalizing tumor blood vessels confers such benefits, but existing drugs known to stabilize the vasculature have shown limited benefit. Komatsu and his lab are looking for better therapies by screening microRNAs, small pieces of genetic material that regulate gene activity.
With funding from the , the scientific team is testing each of hundreds of microRNAs to look for those that affect signaling pathways controlling the stability of tumor blood vessels. The microRNAs that come up positive could either be developed as drugs (to be used in combination with other cancer-killing treatments), or studied further to find new drug targets.
鈥淭his strategy is relevant not only to breast cancer, but to any solid tumor,鈥 commented Komatsu. 鈥淭he therapies we hope to find could help a huge number of patients.鈥
For more information or to schedule an interview with Dr. Komatsu, contact Deborah Robison at [email protected].