去细胞化
细胞外基质
细胞生物学
整合素
再生(生物学)
肝再生
肝细胞
再生医学
机械敏感通道
组织工程
细胞外
生物
化学
机械转化
基质(化学分析)
过程(计算)
层粘连蛋白
信号转导
多细胞生物
干细胞
肝星状细胞
神经科学
SMAD公司
作者
Haodong Ma,Wenyue Wu,Wen Zhang,Hong Li,Ziyan Pan,Caihong Wang,Ruoyu Gao,Qiushuang Ji,Zhi Chen,H You,Wei Chen
出处
期刊:Bioengineering
[Multidisciplinary Digital Publishing Institute]
日期:2026-03-13
卷期号:13 (3): 335-335
标识
DOI:10.3390/bioengineering13030335
摘要
The liver possesses a remarkable regenerative capacity following injury, a process fundamentally orchestrated by the dynamic extracellular matrix (ECM). Far beyond a passive scaffold, the liver matrisome functions as an integrative mechano-biochemical circuit. It comprises a core structural network together with regulatory non-core components that collectively establish a dynamic niche. This niche stores and releases mitogenic cues, transmits mechanical forces, and coordinates multicellular crosstalk. Through receptors like integrins and mechanosensitive channels, ECM-derived signals converge on key pathways, including Hippo-YAP/TAZ and Wnt/β-catenin, to drive hepatocyte proliferation and tissue restructuring. The balance between matrix stabilization and remodeling dictates the outcome, guiding physiological regeneration versus fibrotic progression. Consequently, the ECM emerges as a central therapeutic target and a blueprint for engineering strategies aimed at restoring liver function. Strategies to recalibrate its composition, mechanics, and remodeling, from pharmacological inhibitors to bioengineered decellularized ECM scaffolds, hold significant potential for steering liver repair and combating chronic liver disease.
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