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化学改性超亲水钛种植体表面对间充质干细胞成骨分化的调控作用。

Osteogenic differentiation of mesenchymal stem cells modulated by a chemically modified super-hydrophilic titanium implant surface.

机构信息

School of Dentistry, Kyungpook National University, Daegu, Republic of Korea.

出版信息

J Biomater Appl. 2018 Aug;33(2):205-215. doi: 10.1177/0885328218786873. Epub 2018 Jul 9.

Abstract

This study investigated the osteogenic functionality of multipotent mesenchymal stem cells (MSCs) modulated by a chemically modified super-hydrophilic titanium (Ti) bone implant surface to elucidate the biological mechanism underlying the bone healing capacity of this modified Ti surface. A microstructured Ti surface incorporating bioactive ions (in this study, phosphate (P) ions) was prepared by wet chemical treatment. The results showed that the hydrothermally obtained crystalline P-incorporated Ti surface (P surface) displayed long-term super-hydrophilicity (water contact angles <5°) during a 36-week observation period. The hydrophilic P surface enhanced early cellular functions and osteogenic differentiation of multipotent MSCs derived from mouse bone marrow and human adipose tissue. The expression of critical integrins affecting subsequent osteoblast function and osteoblast phenotype genes was notably upregulated in multipotent MSCs grown on the P surface compared with the commercially available grit-blasted microrough clinical oral implant surface. The P surface supported better cell spreading, focal adhesion and ALP activity of MSCs. These results indicate that a super-hydrophilic P-incorporated Ti surface accelerates implant bone healing by enhancing the early osteogenesis functions of multipotent MSCs.

摘要

本研究旨在探究经化学改性的超亲水钛(Ti)骨植入表面调制后的多能间充质干细胞(MSCs)的成骨功能,以阐明该改性 Ti 表面促进骨愈合能力的生物学机制。通过湿化学处理制备了一种整合有生物活性离子(在本研究中为磷酸盐(P)离子)的微结构 Ti 表面。结果表明,水热法获得的含结晶 P 的 Ti 表面(P 表面)在 36 周的观察期内表现出长期超亲水性(水接触角<5°)。亲水 P 表面增强了源自小鼠骨髓和人脂肪组织的多能 MSCs 的早期细胞功能和成骨分化。与商业上可用的喷砂粗糙临床口腔植入物表面相比,在 P 表面上培养的多能 MSCs 中,影响后续成骨细胞功能和成骨细胞表型基因的关键整合素的表达明显上调。P 表面支持 MSCs 的更好细胞扩展、焦点附着和 ALP 活性。这些结果表明,超亲水 P 整合的 Ti 表面通过增强多能 MSCs 的早期成骨功能加速了植入物的骨愈合。

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