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Brain-derived extracellular vesicles mediate traumatic brain injury associated multi-organ damage. | LitMetric

Brain-derived extracellular vesicles mediate traumatic brain injury associated multi-organ damage.

Biochem Biophys Res Commun

Department of Neurosurgery, Tianjin Medical University General Hospital, Tianjin, China; Tianjin Neurological Institute, Tianjin, China; Key Laboratory of Post-trauma Neuro-repair and Regeneration in Central Nervous System, Ministry of Education, Tianjin, China; Tianjin Key Laboratory of Injuries, Variations and Regeneration of Nervous System, Tianjin, China. Electronic address:

Published: July 2023

AI Article Synopsis

  • Traumatic brain injury (TBI) can cause damage not only to the brain but also to systemic organs, increasing the risk of death and disability.
  • Brain-derived extracellular vesicles (BDEVs), released from the injured brain, were found to induce harm to organs like the heart, lungs, liver, and kidneys by causing cell damage and dysfunction.
  • The study suggests that targeting and removing BDEVs from circulation may alleviate this secondary multi-organ damage caused by TBI.

Article Abstract

Traumatic brain injury (TBI) can negatively impact systemic organs, which can lead to more death and disability. However, the mechanism underlying the effect of TBI on systemic organs remains unclear. In previous work, we found that brain-derived extracellular vesicles (BDEVs) released from the injured brain can induce systemic coagulation with a widespread fibrin deposition in the microvasculature of the lungs, kidney, and heart in a mouse model of TBI. In this study, we investigated whether BDEVs can induce heart, lung, liver, and kidney injury in TBI mice. The results of pathological staining and related biomarkers indicated that BDEVs can induce histological damage and systematic dysfunction. In vivo imaging system demonstrated that BDEVs can gather in systemic organs. We also found that BDEVs could induce cell apoptosis in the lung, liver, heart, and kidney. Furthermore, we discovered that BDEVs could cause multi-organ endothelial cell damage. Finally, this secondary multi-organ damage could be relieved by removing circulating BDEVs. Our research provides a novel perspective and potential mechanism of TBI-associated multi-organ damage.

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Source
http://dx.doi.org/10.1016/j.bbrc.2023.04.119DOI Listing

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