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Fish oil may increase CTE risk after brain injury

Image of mouse brain neurovascular unit
In mice, the team found that fish oil-supplemented diets disrupted the brain鈥檚 repair process following traumatic injury. This led to long-term structural changes in the brain鈥檚 neurovascular unit (seen here), which is responsible for regulating blood flow and maintaining the blood-brain barrier. Image: Albayram lab/MUSC

Neurodegenerative conditions like chronic traumatic encephalopathy (CTE) are often called a silent pandemic. Even so-called 鈥渕ild鈥 concussions, like those sustained in contact sports, may have a cascading effect over time. CTE symptoms such as mood swings, memory loss, and depression may not appear for decades. A new study suggests one common dietary supplement may, in fact, be making things worse.

鈥淔ish oil is widely seen as neuroprotective,鈥 says CSHL Assistant Professor Semir Beyaz. Despite this popular notion, there鈥檚 surprisingly little long-term evidence of its effectiveness after repetitive brain injuries.

Beyaz, graduate student , and their collaborators initially assumed these popular supplements would be as beneficial as advertised. 鈥淪urprisingly, in mice, they made things much worse,鈥 Beyaz reveals.

The team鈥攚hich included Beyaz鈥檚 longtime collaborator, Onder Albayram, at the Medical University of South Carolina鈥攄eveloped a mouse model using a fish oil-based diet and collected additional samples from patients diagnosed with CTE. From there, they zeroed in on a common fatty acid in fish oil supplements called EPA. In mice, rather than aiding in recovery, EPA altered the brain鈥檚 metabolic response and disrupted repair efforts. Excess EPA was also found in human tissue.

What鈥檚 it doing there? In order to recover from injuries, the brain often builds new blood vessels to ensure unobstructed oxygen and blood flow. EPA is known to block this process. In some cases, like in certain cancer treatments, this is a good thing. After traumatic brain injuries, however, EPA can interfere with the brain鈥檚 natural repair and recovery processes. Over time, this can increase the long-term risk for developing conditions like CTE.

Despite their findings, the team cautions against sweeping generalizations.

鈥淭his idea of fish oil being a one-size-fits-all benefit doesn鈥檛 work once you start investigating interactions,鈥 Eskiocak says. 鈥淏ut that doesn鈥檛 mean it鈥檚 bad for you.鈥

鈥淲e know fish oil benefits your heart and gut,鈥 Beyaz adds. 鈥淏ut context matters, especially when it comes to injury and recovery.鈥

While the discovery may have implications for nutrition, therapeutic strategies, and dietary interventions, more questions must be answered before the full picture becomes clear. For example, two boxers may suffer the same number of knockouts during their careers, with only one of them developing CTE while the other stays relatively healthy. Scientists still aren鈥檛 sure why, but this study brings us one step closer to understanding how factors like diet and nutrition impact brain health over time.

Written by: Nick Wurm, Communications Specialist | [email protected] | 516-367-5940


Funding

The South Carolina Alzheimer鈥檚 Disease Research Center, National Institutes of Health Centers of Biomedical Research Excellence, Medical University of South Carolina Specialized Center of Research Excellence, Department of Veterans Affairs, National Cancer Institute, Oliver S. and Jennie R. Donaldson Charitable Trust, G. Harold and Leila Y. Mathers Charitable Foundation, Mark Foundation for Cancer Research, CSHL-Northwell Health Affiliation, Swim Across America

Citation

Karakaya, E., et al., 鈥淓icosapentaenoic Acid Reprograms Cerebrovascular Metabolism and Impairs Repair after Brain Injury, with Relevance to Chronic Traumatic Encephalopathy鈥, Cell Reports, March 25, 2026. DOI:

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Principal Investigator

Semir Beyaz

Semir Beyaz

Assistant Professor
Cancer Center Member
Ph.D., Harvard University, 2017

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