Identifying the Optimal Engineering Fabrication Strategy for Decellularized Cartilage Matrix‐Based Regeneration: Hierarchical Topology Superiority in Cartilage Regeneration
Jiang Wu, Liwei Fu, Zhengang Ding, Yazhe Zheng, Zhichao Zhang, Jianhao Wu, Zhixing Zhang, C. S. Long 等 13 位
Guiyang Medical University Chinese PLA General Hospital National Clinical Research Center for Digestive Diseases Peking University
阅读操作
确认中在文库中上传 PDF 后可生成中文音频讲解。
摘要与影响
The integration of bioactive matrix components and precise spatial architectures represents a promising strategy for regenerating complex tissues like articular cartilage. While decellularized cartilage matrix (DCM) preserves essential regenerative cues, the optimal engineering fabrication strategy to translate its biochemical potential remains to be defined. In this study, we conducted a systematic technological screening by fabricating three distinct DCM‐based topological prototypes: randomized porous scaffolds (RPS) via traditional lyophilization, oriented porous scaffolds (OPS) via ice‐templating, and hierarchical porous scaffolds (HPS) via low‐temperature 3D printing. Our findings reveal that the HPS configuration, characterized by its multi‐scale hierarchical porosity, functions as a biophysical instructor that activates the FAK‐PI3K/AKT mechanotransduction axis. Unlike RPS and OPS, HPS uniquely reprograms the BMSC secretome into a robust paracrine factory, effectively balancing pathological homeostasis and shielding chondrogenesis from inflammatory degradation. This study establishes the hierarchical architecture as the superior engineering fabrication solution for DCM‐based regeneration, offering a new paradigm for instructive cartilage defect repair.
逐年被引趋势
暂无年度引用数据
关键指标
同类平均 = 1
同领域 · 同年份 · 同类型
Google Scholar 与 OpenAlex 的被引统计范围不同,数值存在差异属正常。
AI 辅助阅读
依据:摘要
可就本文提问;依据不足时会说明。
学术脉络
学科主题
生物医学Osteoarthritis Treatment and Mechanisms
Tissue Engineering and Regenerative Medicine · 3D Printing in Biomedical Research
参考文献 43
此处列出前 3 条