机械转化
细胞外小泡
细胞外
再灌注损伤
细胞生物学
医学
化学
生物医学工程
纳米技术
心脏病学
材料科学
缺血
生物
作者
Yong-Tao Wang,Danni Meng,Xiaohui Shi,Yan Hou,Shihui Zang,Lei Chen,Michail Spanos,Guoping Li,Dragoș Crețoiu,Qiulian Zhou,Junjie Xiao
标识
DOI:10.1016/j.xcrm.2025.101987
摘要
Cardiac ischemic reperfusion injury (IRI) significantly exacerbates cardiac dysfunction and heart failure, causing high mortality. Despite the severity of IRI, effective therapeutic strategies remain elusive. Acellular cardiac patches have shown considerable efficacy in delivering therapeutics directly to cardiac tissues. Herein, we develop injectable GelMA (GEL) hydrogels with controlled mechanical properties. Targeting miR-222-engineered extracellular vesicles (TeEVs), tailored with cardiac-ischemia-targeting peptides (CTPs), are developed as ischemic TeEV therapeutics. These TeEVs are encapsulated within mechanical hydrogels to create injectable TeEV-loaded cardiac patches, enabling minimal invasiveness to attenuate IRI. The injectable patches facilitate the precise targeting of TeEVs for the efficient rescue of damaged cells. Persistent delivery of TeEVs into the infarcted region alleviates acute IRI and mitigated remodeling post IRI. This is linked to focal adhesion activation, cytoskeleton force enhancement, and nuclear force-sensing preservation. These findings may pave the way for force-sensing approaches to cardiac therapy using bioengineered therapeutic patches.
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