多孔硅基质支持间充质干细胞成骨分化

A. Parveen, D. Mills, D. Kuila
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引用次数: 0

摘要

研究了平面硅(裸硅)和多孔硅(微孔和纳米孔)在乙醇- hf基电解质中电化学刻蚀制备的间充质干细胞(MSCs)在平面硅(裸硅)和多孔硅(微孔和纳米孔)上的成骨分化。在添加成骨分化培养基的情况下,让MSCs在三种基质上分化成成骨细胞,并在第7天、第14天和第21天进行观察。采用免疫荧光法观察骨蛋白的表达,如骨桥蛋白(OP)和骨连接蛋白(ON),它们被认为是成骨谱系的标志。MTT法测定细胞增殖。用茜素红法定量这些分化的间充质干细胞的钙矿物沉积。分化的MSCs倾向于在所有三种底物上同时产生OP和ON,并且OP和ON的表达量随着时间的推移而增加。与第7天相比,第14天观察到细胞增殖减少。钙矿物沉积的定量分析表明,与裸硅和微孔硅相比,纳米多孔硅在培养21天后诱导的钙矿物产量最高。这些数据表明,纳米多孔硅是一种适合骨髓间充质干细胞向成骨细胞分化的支架,并为其在动物实验中的应用提供了潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Porous silicon substrates support osteogenic differentiation of mesenchymal stem cells
Osteoblastic differentiation of mesenchymal stem cells (MSCs) on planar silicon (bare silicon), and porous silicon (microporous and nanoporous) fabricated by electrochemical etching of silicon in ethanol-HF based electrolyte was investigated. MSCs were allowed to differentiate into osteoblasts on all the three substrates with the addition of osteogenic differentiation media, and observations were made at an interval of day 7, day 14, and day 21. Immunofluorescence assays were conducted to observe for expressions of bone proteins such as osteopontin (OP) and osteonectin (ON) that are considered as markers of osteogenic lineage. Cell proliferation was determined using the MTT assay. Calcium mineral deposits of these differentiated MSCs were quantified using the Alizarin Red assay. The differentiated MSCs tend to produce both OP and ON on all the three substrates and the amount of OP and ON expressed increased overtime. A decrease in cell proliferation was observed on day 14 in comparison to day 7. Quantification of calcium mineral deposits show that nanoporous-Si induces the highest level of calcium mineral production in comparison to bare and microporous-Si when cultured for a period of 21 days. The data suggest that nanoporous silicon is a suitable scaffold for the differentiation of MSCs to osteoblasts, and provides future potentials for its use in animal experiments.
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