细胞生物学
衰老
化学
受体
软骨
透明质酸
尿激酶受体
骨关节炎
阿格里坎
内吞作用
地址1
弹性蛋白
阳离子脂质体
脂质体
细胞周期蛋白依赖激酶
激酶
DNA损伤
软骨细胞
癌症研究
信号转导
生物化学
糖胺聚糖
蛋白多糖
作者
Zhiqi Lin,Chenliang Wu,Yawei Du,Ding Zhao,Yihan Li,Liren Wang,Yuhao Kang,Ziyun Li,Rongtai Zuo,Wenguo Cui,Jinzhong Zhao
标识
DOI:10.1002/adhm.202504034
摘要
Cellular senescence impairs clathrin-mediated endocytosis (CME), partly due to reduced membrane fluidity and disrupted lipid raft composition, which hinder receptor clustering and limit drug uptake. To overcome this, a urokinase receptor (µPAR) antibody-modified cationic liposome was developed loaded with plasmid of DNA-repairing enzyme Sirt6 (anti-µPAR@Lipo-Sirt6), targeting the overexpressed µPAR on senescent chondrocytes to promote receptor clustering and enhance CME. Compared to Lipo-Sirt6, anti-µPAR@Lipo-Sirt6 induced µPAR clustering and enhanced cellular uptake via the CME pathway. The results showed 1.7-2-fold higher uptake efficiency in vitro and 1.5-fold higher in vivo, leading to improved Sirt6 gene delivery. In vitro, treatment with anti-µPAR@Lipo-Sirt6 promoted DNA damage repair, significantly reduced the expression of senescence markers cyclin dependent kinase inhibitor 1a (Cdkn1a) and cyclin dependent kinase inhibitor 2a (Cdkn2a), and restored the expression of cartilage functional molecules type II collagen (Col2) and aggrecan (Acan). Encapsulation within hyaluronic acid-methacrylate (HAMA) hydrogel microspheres (anti-µPAR@Lipo-Sirt6@HMs) further prolonged retention and efficacy in vivo, significantly reducing p53 expression, preserving cartilage matrix molecules such as Col2 and Acan, delaying cartilage degradation, and restoring gait function in osteoarthritis (OA) mice. This study demonstrates that receptor clustering can be harnessed to enhance drug uptake in senescent cells, offering a promising strategy for anti-senescence therapy.
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