软骨
再生(生物学)
半透膜
膜
体内
材料科学
生物医学工程
静电纺丝
细胞生物学
关节软骨
化学
聚合物
生物
医学
解剖
复合材料
工程类
生物技术
骨关节炎
病理
生物化学
替代医学
作者
Yingying Huo,Baoshuai Bai,Rui Zheng,Yuyan Sun,Yao Yu,Xin Wang,Hong Chen,Yujie Hua,Yixin Zhang,Guangdong Zhou,Xiaoyun Wang
标识
DOI:10.1002/adhm.202203084
摘要
Abstract Tissue engineering is a promising strategy for cartilage defect repair. However, autologous cartilage regeneration is limited by additional trauma to the donor site and a long in vitro culture period. Alternatively, allogenic cartilage regeneration has attracted attention because of the unique advantages of an abundant donor source and immediate supply, but it will cause immune rejection responses ( IRRs ), especially in immunocompetent large animals. Therefore, a universal technique needs to be established to overcome IRRs for allogenic cartilage regeneration in large animals. In the current study, a hybrid synthetic‐natural electrospun thermoplastic polyurethane/gelatin ( TPU / GT ) semipermeable membrane to explore the feasibility of stable allogenic cartilage regeneration by an immunoisolation strategy is developed. In vitro results demonstrated that the rationally designed electrospun TPU / GT membranes has ideal biocompatibility, semipermeability, and an immunoisolation function. In vivo results further showed that the semipermeable membrane ( SPM ) efficiently blocked immune cell attack, decreased immune factor production, and cell apoptosis of the regenerated allogenic cartilage. Importantly, TPU / GT ‐encapsulated cartilage‐sheet constructs achieved stable allogeneic cartilage regeneration in a goat model. The current study provides a novel strategy for allogenic cartilage regeneration and supplies a new cartilage donor source to repair various cartilage defects.
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