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具有免疫调节和成骨功能的高性能丝素/聚乳酸复合支架材料

High-performance silk/polylactic acid composite scaffold material with immunomodulation and osteogenesis function.

作者信息

Rui Jia, Zhu Siyu, Xu Xiang, Wang Yi, Liu Zulan, Cheng Guotao, Long Dingpei, Cheng Lan, Dai Fangyin

机构信息

State Key Laboratory of Resource Insects, Key Laboratory of Sericultural Biology and Genetic Breeding, Ministry of Agriculture and Rural Affairs, College of Sericulture, Textile and Biomass Sciences, Yibin Academy, Southwest University, Chongqing, 400715, China.

出版信息

Mater Today Bio. 2024 Oct 28;29:101316. doi: 10.1016/j.mtbio.2024.101316. eCollection 2024 Dec.

Abstract

The choice of suitable materials and effective structural design are crucial in influencing the therapeutic outcomes of bone tissue engineering scaffolds. This study introduces a controllable biodegradable composite scaffold composed of flat silkworm cocoon (FSC) and polylactic acid (PLA) as an innovative strategy for promoting bone healing in complex injuries. We focused on optimizing the scaffold's structural design, mechanical properties, and underlying mechanisms of osteogenesis. Initial experiments established the parameters for hot pressing the FSC, followed by mechanical performance tests to identify the optimal preparation conditions. Composite scaffolds incorporating PLA films were subsequently fabricated using these optimized parameters. The results indicate that the FSC/PLA composite scaffold exhibits outstanding biocompatibility, mechanical strength, and in vitro mineralization capabilities, alongside an appropriate degradation rate. Furthermore, the composite scaffolds demonstrated significant potential in promoting osteogenic differentiation and facilitating macrophage polarization toward an anti-inflammatory M2 phenotype. In vivo implantation of the scaffold in defective regions enhanced osteogenesis and mitigated inflammatory responses associated with degradation. This investigation presents an optimal composite scaffold that closely mimics the complex structure of bone, offering a novel approach to enhance bone regeneration and effectively address substantial bone defects.

摘要

选择合适的材料和进行有效的结构设计对于影响骨组织工程支架的治疗效果至关重要。本研究引入了一种由扁平蚕茧(FSC)和聚乳酸(PLA)组成的可控可生物降解复合支架,作为促进复杂损伤中骨愈合的创新策略。我们专注于优化支架的结构设计、力学性能和成骨的潜在机制。初步实验确定了热压FSC的参数,随后进行力学性能测试以确定最佳制备条件。随后使用这些优化参数制备了包含PLA膜的复合支架。结果表明,FSC/PLA复合支架具有出色的生物相容性、机械强度和体外矿化能力,以及合适的降解速率。此外,复合支架在促进成骨分化和促进巨噬细胞向抗炎M2表型极化方面显示出巨大潜力。将支架体内植入缺损区域可增强成骨并减轻与降解相关的炎症反应。本研究提出了一种最佳复合支架,它紧密模拟了骨的复杂结构,为增强骨再生和有效解决严重骨缺损提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e37c/11570744/93dd629160be/ga1.jpg

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