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人骨髓间充质干细胞中重组纤维连接蛋白和弹性蛋白片段对钛表面的生物功能化及体外评估

Bio-functionalization and in-vitro evaluation of titanium surface with recombinant fibronectin and elastin fragment in human mesenchymal stem cell.

机构信息

Department of Biochemistry, Inha University School of Medicine, Incheon, Korea.

出版信息

PLoS One. 2021 Dec 16;16(12):e0260760. doi: 10.1371/journal.pone.0260760. eCollection 2021.

Abstract

Titanium is a biomaterial that meets a number of important requirements, including excellent mechanical and chemical properties, but has low bioactivity. To improve cellular response onto titanium surfaces and hence its osseointegration, the titanium surface was bio-functionalized to mimic an extracellular matrix (ECM)-like microenvironment that positively influences the behavior of stem cells. In this respect, fibronectin and elastin are important components of the ECM that regulate stem cell differentiation by supporting the biological microenvironment. However, each native ECM is unsuitable due to its high production cost and immunogenicity. To overcome these problems, a recombinant chimeric fibronectin type III9-10 and elastin-like peptide fragments (FN9-10ELP) was developed herein and applied to the bio-functionalized of the titanium surface. An evaluation of the biological activity and cellular responses with respect to bone regeneration indicated a 4-week sustainability on the FN9-10ELP functionalized titanium surface without an initial burst effect. In particular, the adhesion and proliferation of human mesenchymal stem cells (hMSCs) was significantly increased on the FN9-10ELP coated titanium compared to that observed on the non-coated titanium. The FN9-10ELP coated titanium induced osteogenic differentiation such as the alkaline phosphatase (ALP) activity and mineralization activity. In addition, expressions of osteogenesis-related genes such as a collagen type I (Col I), Runt-related transcription factor 2 (RUNX2), osteopontin (OPN), osteocalcin (OCN), bone sialo protein (BSP), and PDZ-binding motif (TAZ) were further increased. Thus, in vitro the FN9-10ELP functionalization titanium not only sustained bioactivity but also induced osteogenic differentiation of hMSCs to improve bone regeneration.

摘要

钛是一种符合许多重要要求的生物材料,包括优异的机械和化学性能,但生物活性低。为了提高钛表面的细胞反应,从而促进其骨整合,对钛表面进行了生物功能化,以模拟一种细胞外基质(ECM)样的微环境,从而积极影响干细胞的行为。在这方面,纤连蛋白和弹性蛋白是 ECM 的重要组成部分,通过支持生物微环境来调节干细胞分化。然而,由于其高生产成本和免疫原性,每种天然 ECM 都不适用。为了克服这些问题,本文开发了一种重组嵌合型纤连蛋白 III9-10 型和弹性蛋白样肽片段(FN9-10ELP),并将其应用于钛表面的生物功能化。关于骨再生的生物学活性和细胞反应的评估表明,FN9-10ELP 功能化钛表面在没有初始突释效应的情况下可持续 4 周。特别是,与非涂层钛相比,FN9-10ELP 涂层钛表面上的人骨髓间充质干细胞(hMSCs)的黏附和增殖显著增加。FN9-10ELP 涂层钛诱导成骨分化,如碱性磷酸酶(ALP)活性和矿化活性。此外,成骨相关基因如 I 型胶原(Col I)、转录因子 Runt 相关因子 2(RUNX2)、骨桥蛋白(OPN)、骨钙素(OCN)、骨唾液蛋白(BSP)和 PDZ 结合基序(TAZ)的表达也进一步增加。因此,体外 FN9-10ELP 功能化钛不仅能持续保持生物活性,还能诱导 hMSCs 的成骨分化,从而促进骨再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4a4/8675760/db3e9643d7b2/pone.0260760.g001.jpg

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