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MC3T3-E1前成骨细胞与工程化镁/聚乳酸复合材料接触时的细胞相容性、细胞-材料相互作用和成骨分化

Cytocompatibility, cell-material interaction, and osteogenic differentiation of MC3T3-E1 pre-osteoblasts in contact with engineered Mg/PLA composites.

作者信息

Ali Wahaaj, Ordoño Jesus, Kopp Alexander, González Carlos, Echeverry-Rendón Mónica, LLorca Javier

机构信息

IMDEA Materials Institute, Getafe, Madrid, Spain.

Department of Material Science and Engineering, Universidad Carlos III de Madrid, Leganés, Madrid, Spain.

出版信息

J Biomed Mater Res A. 2024 Dec;112(12):2136-2148. doi: 10.1002/jbm.a.37767. Epub 2024 Jun 20.

DOI:10.1002/jbm.a.37767
PMID:38899796
Abstract

Bioabsorbable Mg wire-reinforced poly-lactic acid (PLA) matrix composites are potential candidate for load-bearing orthopedic implants offering tailorable mechanical and degradation properties by stacking sequence, volume fraction and surface modification of Mg wires. In this study, we investigated the cytocompatibility, cell-material interaction, and bone differentiation behavior of MC3T3-E1 pre-osteoblast cells for medical-grade PLA, Mg/PLA, and PEO-Mg/PLA (having PEO surface modification on Mg wires) composites. MTT and live/dead assay showed excellent biocompatibility of both composites while cell-material interaction analysis revealed that cells were able to adhere and proliferate on the surface of composites. Cells on the longitudinal surface of composites showed a high and uniform cell density while those on transversal surfaces initially avoided Mg regions but later migrated back after the formation of the passivation layer. Bone differentiation tests showed that cells in extracts of PLA and composites were able to initiate the differentiation process as osteogenesis-related gene expressions, alkaline phosphatase protein quantity, and calcium mineralization increased after 7 and 14 days of culture. Interestingly, the bone differentiation response of PEO-Mg/PLA composite was found to be similar to medical-grade PLA, proving its superiority over Mg/PLA composite.

摘要

生物可吸收镁丝增强聚乳酸(PLA)基复合材料是承重骨科植入物的潜在候选材料,可通过镁丝的堆叠顺序、体积分数和表面改性来提供可定制的机械性能和降解性能。在本研究中,我们研究了MC3T3-E1前成骨细胞对医用级PLA、Mg/PLA和PEO-Mg/PLA(镁丝具有PEO表面改性)复合材料的细胞相容性、细胞-材料相互作用和骨分化行为。MTT和活/死检测显示两种复合材料均具有优异的生物相容性,而细胞-材料相互作用分析表明细胞能够在复合材料表面粘附和增殖。复合材料纵向表面的细胞显示出高且均匀的细胞密度,而横向表面的细胞最初避开镁区域,但在钝化层形成后后来又迁移回来。骨分化测试表明,PLA和复合材料提取物中的细胞能够启动分化过程,因为在培养7天和14天后,成骨相关基因表达、碱性磷酸酶蛋白量和钙矿化增加。有趣的是,发现PEO-Mg/PLA复合材料的骨分化反应与医用级PLA相似,证明了其优于Mg/PLA复合材料。

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