肝星状细胞
医学
肝纤维化
纤维化
细胞外基质
体内分布
肝损伤
癌症研究
生物信息学
肝纤维化
病态的
计算生物学
药物输送
病理
药物发现
转化式学习
细胞
颠倒
遗传增强
药物开发
靶向给药
纳米医学
肝病
作者
Xinying Ma,Dawei Chen,Ming Zhao,Haiyang Hu
摘要
Liver fibrosis (LF), a major global health burden causing over two million deaths annually, arises from chronic injury leading to hepatic stellate cell (HSC) activation and pathological extracellular matrix (ECM) deposition. Current therapies are limited by nonspecific biodistribution and inadequate drug delivery to HSCs. Nanosystems engineered for active HSC targeting offer a promising approach to overcome fibrotic barriers-including capillarized sinusoids and dense ECM-through strategies such as receptor-specific ligand modification, RNA-based gene silencing, and multifunctional combinatorial therapies. These platforms enable precise modulation of HSC activation and ECM remodeling, promoting fibrosis regression while sparing healthy tissue. Despite promising preclinical outcomes, key challenges remain in biosafety, scalable fabrication, and clinical validation. Advancements in HSC-specific nanotherapeutics hold transformative potential for reversing liver fibrosis and restoring hepatic function. This article is categorized under: Nanotechnology Approaches to Biology > Nanoscale Systems in Biology.
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