细胞内
分泌物
外体
能量代谢
微泡
肝纤维化
干扰(通信)
细胞生物学
纤维化
新陈代谢
化学
小RNA
医学
药理学
生物
内分泌学
内科学
计算机科学
生物化学
电信
频道(广播)
基因
作者
Mengyao Zhang,Huaqing Jing,Xinyi Liu,Valentin A. Milichko,Yunsheng Dou,Yingzi Ren,Zitong Qiu,Wen Li,Weili Liu,Xinxing Wang,Nan Li
标识
DOI:10.1016/j.apsb.2025.07.008
摘要
As activated hepatic stellate cells (aHSCs) play a central role in fibrogenesis, they have become key target cells for anti-fibrotic treatment. Nevertheless, the therapeutic efficiency is constrained by the exosomes they secrete, which are linked to energy metabolism and continuously stimulate the activation of neighboring quiescent hepatic stellate cells (qHSCs). Herein, an intercellular communication interference strategy is designed utilizing paeoniflorin (PF) loaded and hyaluronic acid (HA) coated copper-doped ZIF-8 (PF@HA-Cu/ZIF-8, PF@HCZ) to reduce energy-related exosome secretion from aHSCs, thus preserving neighboring qHSCs in a quiescent state. Simultaneously, the released copper and zinc ions disrupt key enzymes involved in glycolysis to reduce bioenergy synthesis in aHSCs, thereby promoting the reversion of aHSCs to a quiescent state and further decreasing exosome secretion. Therefore, PF@HCZ can effectively sustain both aHSCs and qHSCs in a metabolically dormant state to ultimately alleviate liver fibrosis. The study provides an enlightening strategy for interrupting exosome-mediated intercellular communication and remodeling the energy metabolic status of HSCs with boosted antifibrogenic activity.
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