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April 24, 2026JCI Insight0 citationsOpen Access

BAT-derived miR-378a-3p facilitates endothelial angiogenic function and promotes wound healing

HDHongyan DengYXYuyu XieJLJiadai Liu

Key Points

  • The research aims to investigate the role of BAT-derived exosomes and miR-378a-3p in promoting vascular health and wound healing.
  • Assessed the effects of BAT-derived exosomes on endothelial cell behavior and angiogenesis.
  • Measured the impact of miR-378a-3p on cell migration and tube formation in endothelial cells.
  • Utilized diabetic mouse models to evaluate the therapeutic effects of miR-378 mimics in wound healing.
  • BAT-derived exosomes enhanced peripheral angiogenesis and vascular repair.
  • miR-378a-3p overexpression significantly promoted endothelial cell migration and tube formation.
  • Encapsulation of miR-378 mimics in liposomes accelerated wound healing in diabetic mice.

Abstract

Interscapular brown adipose tissue (iBAT), one of the most vascularized tissues in the body, exemplifies the intricate crosstalk between the vascular system and adipocytes. BAT is known to secrete abundant exosomes into circulation, while exosomes are known to play a key role in vascular remodeling and cell migration. However, whether BAT-derived exosomes (BATexos) modulate peripheral vasculature remains unclear. Here, we report that BATexos promoted peripheral angiogenesis and vascular repair. Among their cargo, miR-378a-3p was highly enriched and identified as a key mediator of endothelial angiogenic function. The overexpression of miR-378a-3p in endothelial cells substantially promoted cell migration and tube formation. Conversely, inhibition of exosome secretion from BAT impaired vascular repair and delayed wound healing. Mechanistically, miR-378a-3p directly targeted the phosphatase and tensin homolog (Pten), thereby activating the PI3K-AKT signaling pathway. Liposomes encapsulating miR-378 mimics promoted angiogenesis and accelerated wound healing in a diabetic mouse model. Collectively, this study uncovers BAT-derived miR-378a-3p as a key regulator of vessel regeneration and tissue repair following injury, offering new therapeutic potential for treating vascular complications in metabolic disease.

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Cite This Study

Deng et al. (2026) studied this question.

synapsesocial.com/papers/69eb0899553a5433e34b37d7https://doi.org/10.1172/jci.insight.201311
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