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体内组织相容性和生物可降解的 PDLLA 复合材料的成骨潜力,该复合材料含有基于硅的生物活性玻璃纤维。

In-vivo histocompatibility and osteogenic potential of biodegradable PLDLA composites containing silica-based bioactive glass fiber.

机构信息

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

State Key Laboratory of Oral Diseases, Sichuan University, Chengdu, China.

出版信息

J Biomater Appl. 2020 Jul;35(1):59-71. doi: 10.1177/0885328220911598. Epub 2020 Mar 31.

Abstract

The purpose of this two-year study was to evaluate the histocompatibility and osteogenic properties of a composite material consisting of poly(l--d,l lactide) (PLDLA) and silica-based bioactive glass fibers in vivo. PLDLA and PLDLA/silica-based bioactive glass fibers pins were implanted into the erector spinae muscles and femurs of beagles. Muscle and bone tissue samples were harvested 6, 12, 16, 26, 52, 78, and 104 weeks after implantation. Histology analysis was used to assess the histocompatibility, angiogenesis, and bone-implant contact. Micro-computed tomography was used to evaluate bone formation around the pins. Immunohistochemistry and western blotting revealed the expression level of the osteogenesis-related proteins. Addition of bioactive glass was demonstrated to possess better histocompatibility and reduce the inflammatory reactions in vivo. Moreover, PLDLA/silica-based bioactive glass fibers pins were demonstrated to promote angiogenesis and increase osteogenesis-related proteins expression, and thus played a positive role in osteogenesis and osseointegration after implantation. Our findings indicated that a composite of PLDLA and silica-based bioactive glass fiber is a promising biodegradable material for clinical use.

摘要

本为期两年的研究旨在评估聚(L-丙交酯-co-乙交酯)(PLDLA)和基于硅的生物活性玻璃纤维复合材料的组织相容性和成骨性能。PLDLA 和 PLDLA/基于硅的生物活性玻璃纤维钉被植入比格犬的竖脊肌和股骨中。在植入后 6、12、16、26、52、78 和 104 周时,采集肌肉和骨组织样本。组织学分析用于评估组织相容性、血管生成和骨-植入物接触。微计算机断层扫描用于评估钉周围的骨形成。免疫组织化学和 Western blot 揭示了与成骨相关的蛋白的表达水平。添加生物活性玻璃被证明具有更好的组织相容性并减少体内炎症反应。此外,PLDLA/基于硅的生物活性玻璃纤维钉被证明可促进血管生成并增加与成骨相关的蛋白表达,因此在植入后对成骨和骨整合起到积极作用。我们的研究结果表明,PLDLA 和基于硅的生物活性玻璃纤维的复合材料是一种有前途的可临床应用的可生物降解材料。

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