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排列的水凝胶纤维结合 3D 打印支架通过增强细胞募集和功能有效地促进骨再生。

Aligned cryogel fibers incorporated 3D printed scaffold effectively facilitates bone regeneration by enhancing cell recruitment and function.

机构信息

Department of Foot and Ankle Surgery, Center for Orthopaedic Surgery, the Third Affiliated Hospital of Southern Medical University. Guangzhou, Guangdong 510630, China.

Zhejiang Engineering Research Center for Tissue Repair Materials, Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, Zhejiang 325000, China.

出版信息

Sci Adv. 2024 Feb 9;10(6):eadk6722. doi: 10.1126/sciadv.adk6722. Epub 2024 Feb 7.

Abstract

Reconstructing extensive cranial defects represents a persistent clinical challenge. Here, we reported a hybrid three-dimensional (3D) printed scaffold with modification of QK peptide and KP peptide for effectively promoting endogenous cranial bone regeneration. The hybrid 3D printed scaffold consists of vertically aligned cryogel fibers that guide and promote cell penetration into the defect area in the early stages of bone repair. Then, the conjugated QK peptide and KP peptide further regulate the function of the recruited cells to promote vascularization and osteogenic differentiation in the defect area. The regenerated bone volume and surface coverage of the dual peptide-modified hybrid scaffold were significantly higher than the positive control group. In addition, the dual peptide-modified hybrid scaffold demonstrated sustained enhancement of bone regeneration and avoidance of bone resorption compared to the collagen sponge group. We expect that the design of dual peptide-modified hybrid scaffold will provide a promising strategy for bone regeneration.

摘要

重建大面积颅骨缺损一直是一个临床挑战。在这里,我们报告了一种具有 QK 肽和 KP 肽修饰的混合三维(3D)打印支架,可有效促进内源性颅骨再生。该混合 3D 打印支架由垂直排列的凝胶纤维组成,可在骨修复的早期引导和促进细胞渗透到缺损区域。然后,共轭的 QK 肽和 KP 肽进一步调节募集细胞的功能,促进缺损区域的血管生成和成骨分化。与阳性对照组相比,双肽修饰混合支架的再生骨体积和表面覆盖率显著提高。此外,与胶原海绵组相比,双肽修饰混合支架表现出持续增强的骨再生和避免骨吸收的作用。我们期望双肽修饰混合支架的设计将为骨再生提供一种有前途的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecf6/10849600/6e8396553116/sciadv.adk6722-f1.jpg

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