Chitosan-glycerophosphate thermosensitive hydrogel inhibits breast implant-associated capsular contracture by regulating the IRAK1-MAPK pathway
Wenwen Zhu, Yuan Tian, Xinyue Wang, Jiayan Lin, Te Sun, Xian Li, Zhiyong DiaoAbstract
Background:
Capsular contracture is a common complication following breast reconstruction or prosthetic implantation, characterized by excessive activation of fibroblasts and abnormal deposition of extracellular matrix (ECM). Chitosan-glycerophosphate thermosensitive hydrogel (C-GP gel) exhibits excellent injectability and biocompatibility; however, its direct impact and underlying mechanism on capsular contracture are still not well understood. This study aims to investigate the mechanism by which C-GP gel inhibits capsular contracture, providing insights for the development of novel therapeutic strategies.
Methods:
After preparing C-GP gel and verifying its
Results:
Animal experiments showed that C-GP gel effectively reduced capsule thickness and collagen deposition and downregulated the expression of proteins related to the interleukin-1 receptor-associated kinase 1 (IRAK1)-mitogen-activated protein kinase (MAPK) pathway.
Conclusion:
Chitosan-glycerophosphate thermosensitive hydrogel inhibits capsular contracture and is associated with downregulation of the IRAK1-MAPK pathway, thus holding potential clinical application value.