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新型不同组成比例纳米双相磷酸钙支架的体外生物相容性分析

In vitro biocompatibility analysis of novel nano-biphasic calcium phosphate scaffolds in different composition ratios.

作者信息

Ebrahimi Mehdi, Pripatnanont Prisana, Suttapreyasri Srisurang, Monmaturapoj Naruporn

机构信息

Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Prince of Songkla University, Hatyai, Songkhla, 90112, Thailand.

出版信息

J Biomed Mater Res B Appl Biomater. 2014 Jan;102(1):52-61. doi: 10.1002/jbm.b.32979. Epub 2013 Jul 11.

Abstract

This study aimed to evaluate in vitro biocompatibility of a composite of nanoscale biphasic calcium phosphate (BCP) and collagen (C) compared to pure BCP (P) in different composition ratios of nanohydroxyapatite to nano-β-tricalcium phosphate (HA/β-TCP). Each study group comprised of three ratios of BCP (30/70, 40/60, and 50/50). For evaluation of cellular response toward each ratio, mouse osteoblast (MC3T3-E1) cell line was cultivated on the scaffolds for 19 days. Analysis of cell proliferation, cell viability, cell attachment and morphology, alkaline phosphatase (ALP) activity, and osteocalcin synthesis were done on culture days 1, 3, 7, 13, 15, and 19, appropriately. The scanning electron microscopy showed that the osteoblasts attached successfully to scaffolds surfaces in both BCP groups and in all different ratios by spreading their filopodia and expressing similar viability that was confirmed by confocal laser scanning electron microscope. BCP scaffold (P3070) showed remarkable ALP activity, whereas BCP (P5050) showed highest osteocalcin activity. Collagen coating supported high cell proliferation on culture day 1 and possessed limited benefit restricted to early phase of cell differentiation. In conclusion, the fabricated nanoscale BCP scaffolds offered high biocompatibility and supported well the cell proliferation and differentiation regardless the composition ratio. Furthermore, higher ratio of TCP supported the early phase of cell proliferation, whereas higher HA ratio influenced the later phase. Finally, BCP scaffolds P5050 and C4060 were suggested as candidates for clinical applications.

摘要

本研究旨在评估纳米级双相磷酸钙(BCP)与胶原蛋白(C)复合材料在不同纳米羟基磷灰石与纳米β-磷酸三钙(HA/β-TCP)组成比例下与纯BCP(P)相比的体外生物相容性。每个研究组包含三种BCP比例(30/70、40/60和50/50)。为了评估细胞对每种比例的反应,将小鼠成骨细胞(MC3T3-E1)细胞系在支架上培养19天。分别在培养第1、3、7、13、15和19天对细胞增殖、细胞活力、细胞附着和形态、碱性磷酸酶(ALP)活性以及骨钙素合成进行分析。扫描电子显微镜显示,在两个BCP组中,成骨细胞均通过伸展丝状伪足成功附着在支架表面,且在所有不同比例下均表现出相似的活力,这一点通过共聚焦激光扫描电子显微镜得到了证实。BCP支架(P3070)显示出显著的ALP活性,而BCP(P5050)显示出最高的骨钙素活性。胶原蛋白涂层在培养第1天支持高细胞增殖,且其益处仅限于细胞分化的早期阶段。总之,制备的纳米级BCP支架具有高生物相容性,无论组成比例如何,均能很好地支持细胞增殖和分化。此外,较高比例的TCP支持细胞增殖的早期阶段,而较高比例的HA影响后期阶段。最后,建议将BCP支架P5050和C4060作为临床应用的候选材料。

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