Nat. Commun. | 摩擦电响应微针系统用于椎间盘退变修复
时间: 2024-09-21 作者: 浏览次数: 395

题目:

Self-powered triboelectric-responsive microneedles with controllable release of optogenetically engineered extracellular vesicles for intervertebral disc degeneration repair

作者:

Weifeng Zhang1#, Xuan Qin2#, Gaocai Li1#, Xingyu Zhou1#, Hongyang Li2, Di Wu1, Yu Song1, Kangcheng Zhao1, Kun Wang1, Xiaobo Feng1, Lei Tan1, Bingjin Wang1*, Xuhui Sun2*, Zhen Wen2* & Cao Yang1*

摘要:

Excessive exercise is an etiological factor of intervertebral disc degeneration (IVDD). Engineered extracellular vesicles (EVs) exhibit excellent therapeutic potential for disease-modifying treatments. Herein, we fabricate an exercise self-powered triboelectric-responsive microneedle (MN) assay with the sustainable release of optogenetically engineered EVs for IVDD repair. Mechanically, exercise promotes cytosolic DNA sensing-mediated inflammatory activation in senescent nucleus pulposus (NP) cells (the master cell population for IVD homeostasis maintenance), which accelerates IVDD. TREX1 serves as a crucial nuclease, and disassembly of TRAM1-TREX1 complex disrupts the subcellular localization of TREX1, triggering TREX1-dependent genomic DNA damage during NP cell senescence. Optogenetically engineered EVs deliver TRAM1 protein into senescent NP cells, which effectively reconstructs the elimination function of TREX1. Triboelectric nanogenerator (TENG) harvests mechanical energy and triggers the controllable release of engineered EVs. Notably, an optogenetically engineered EV-based targeting treatment strategy is used for the treatment of IVDD, showing promising clinical potential for the treatment of degeneration-associated disorders.

影响因子:

14.7

分区情况:

一区