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Researchers at the University of Oklahoma have discovered a potential mechanism through which triple-negative breast cancer tumors may attract nerves that could aid in their expansion and resistance to treatment. The investigation revealed that macrophages, immune cells that infiltrate tumors, produce BDNF, a protein associated with nerve development. In experiments conducted on mice, inhibiting BDNF signaling hindered nerve infiltration into tumors and notably diminished tumor size. Additionally, patient data indicated a correlation between elevated levels of macrophages and BDNF with reduced survival rates. The researchers propose that these insights could inform future therapeutic approaches aimed at disrupting the nerve-supporting system of tumors.

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Transcript
00:00Scientists have uncovered a hidden mechanism that may help aggressive breast cancer survive and grow.
00:06Researchers at the University of Oklahoma focused on triple-negative breast cancer,
00:11a particularly difficult cancer to treat.
00:13Their discovery?
00:15The tumors may actually recruit nerves to help create a supportive environment.
00:19The process begins with immune cells called macrophages, which are drawn into the tumor.
00:25These cells release BDNF, a protein that can stimulate nerve growth.
00:30Inside the tumor, that signal may pull nearby nerves directly into the cancer.
00:35In mice, blocking BDNF stopped nerves from entering tumors and significantly slowed tumor growth.
00:42Patient data showed higher macrophage, and BDNF levels were also linked to poorer survival.
00:48Researchers now hope targeting this hidden nerve pathway could expose a new weakness in aggressive cancer.
00:55Disclosure, this video contains stock footage and content created or enhanced using AI-assisted tools.
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