失巢
间充质干细胞
细胞生物学
癌症研究
旁分泌信号
整合素
间质细胞
再生医学
化学
细胞外基质
干细胞
细胞
再生(生物学)
治疗性血管生成
受体
调解人
血管生成
细胞粘附
细胞疗法
电池类型
骨膜炎
免疫学
细胞分化
生物
细胞生长
移植
作者
Yinghui Xu,Yuanhao Chen,Y. Wang,Ze Yang,Yu-Er Ruan,Jianzheng Li,Yuqiao Huang,Xinliang Ming,J Zhao,Ying Zhang,Zhi Fang,Changchen Xiao,Xiaohui Zou,Xinyang Hu,Ben Wang
标识
DOI:10.1073/pnas.2525881123
摘要
Mesenchymal stem cell (MSC)-based therapy holds significant promise in regenerative medicine, leveraging their multipotent differentiation capacity and paracrine effects. However, clinical translation is limited by poor cell survival and engraftment in a hostile injury microenvironment, where detachment-induced anoikis and insufficient extracellular matrix (ECM) adhesion compromise their therapeutic efficacy. Here, we engineered MSCs with surface-anchored von Willebrand factor A3 domain (vWF A3), a natural collagen-binding domain with exceptional affinity for type I and III collagen, to simultaneously confer collagen-targeting and prosurvival functionalities. The vWF A3-modified MSCs (vWF A3-MSCs) exhibited enhanced collagen-binding capacity, improving retention in myocardial infarction (MI) and osteoarthritis (OA) lesions. Beyond adhesion, vWF A3-MSCs demonstrated improved reparative capacity and anoikis resistance, driven by the activation of ECM-receptor interaction and integrin β3 signaling. These modifications promoted proangiogenic effects via mitogen-activated protein kinase pathway activation while enhancing cell survival through Hippo pathway suppression. In vivo studies confirmed the superior therapeutic efficacy of vWF A3-MSCs in both MI and OA models, highlighting how the artificially constructed collagen-targeting receptors on cell and ECM-adhesion-targeted strategy reprogram cellular fate and enhance therapeutic efficacy in stem cell-based regenerative medicine.
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