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一种用于骨软骨缺损修复的免疫调节多肽水凝胶。

An immunomodulatory polypeptide hydrogel for osteochondral defect repair.

作者信息

Yang Meng, Zhang Zheng-Chu, Yuan Fu-Zhen, Deng Rong-Hui, Yan Xin, Mao Feng-Biao, Chen You-Rong, Lu Hua, Yu Jia-Kuo

机构信息

Department of Sports Medicine, Beijing Key Laboratory of Sports Injuries, Peking University Third Hospital, Beijing, 100191, China.

Institute of Sports Medicine of Peking University, Beijing, 100191, China.

出版信息

Bioact Mater. 2022 May 13;19:678-689. doi: 10.1016/j.bioactmat.2022.05.008. eCollection 2023 Jan.

Abstract

Osteochondral injury is a common and frequent orthopedic disease that can lead to more serious degenerative joint disease. Tissue engineering is a promising modality for osteochondral repair, but the implanted scaffolds are often immunogenic and can induce unwanted foreign body reaction (FBR). Here, we prepare a polypept(o)ide-based PAA-RGD hydrogel using a novel thiol/thioester dual-functionalized hyperbranched polypeptide P(EGGlu--Cys) and maleimide-functionalized polysarcosine under biologically benign conditions. The PAA-RGD hydrogel shows suitable biodegradability, excellent biocompatibility, and low immunogenicity, which together lead to optimal performance for osteochondral repair in New Zealand white rabbits even at the early stage of implantation. Further and mechanistic studies corroborate the immunomodulatory role of the PAA-RGD hydrogel, which induces minimum FBR responses and a high level of polarization of macrophages into the immunosuppressive M2 subtypes. These findings demonstrate the promising potential of the PAA-RGD hydrogel for osteochondral regeneration and highlight the importance of immunomodulation. The results may inspire the development of PAA-based materials for not only osteochondral defect repair but also various other tissue engineering and bio-implantation applications.

摘要

骨软骨损伤是一种常见且频发的骨科疾病,可导致更严重的退行性关节疾病。组织工程是骨软骨修复的一种有前景的方法,但植入的支架通常具有免疫原性,可引发不必要的异物反应(FBR)。在此,我们在生物良性条件下,使用新型硫醇/硫酯双功能化超支化多肽P(EGGlu--Cys)和马来酰亚胺功能化聚肌氨酸制备了一种基于多肽的PAA-RGD水凝胶。PAA-RGD水凝胶具有合适的生物降解性、优异的生物相容性和低免疫原性,这些特性共同使得其在新西兰白兔骨软骨修复中即使在植入早期也具有最佳性能。进一步的机理研究证实了PAA-RGD水凝胶的免疫调节作用,它诱导最小的FBR反应,并使巨噬细胞高度极化到免疫抑制性M2亚型。这些发现证明了PAA-RGD水凝胶在骨软骨再生方面具有广阔的潜力,并突出了免疫调节的重要性。这些结果可能会激发基于PAA的材料的开发,不仅用于骨软骨缺损修复,还可用于各种其他组织工程和生物植入应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4260/9112113/cd007cb09fa7/ga1.jpg

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