首页> 外文期刊>ScientificWorldJournal >Influence of Poly(L-Lactic Acid) Nanofibers and BMP-2–Containing Poly(L-Lactic Acid) Nanofibers on Growth and Osteogenic Differentiation of Human Mesenchymal Stem Cells
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Influence of Poly(L-Lactic Acid) Nanofibers and BMP-2–Containing Poly(L-Lactic Acid) Nanofibers on Growth and Osteogenic Differentiation of Human Mesenchymal Stem Cells

机译:聚(L-乳酸)纳米纤维和BMP-2聚(L-乳酸)纳米纤维对人间充质干细胞生长和骨质发生分化的影响

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The aim of this study was to characterize synthetic poly-(L-lactic acid) (PLLA) nanofibers concerning their ability to promote growth and osteogenic differentiation of stem cells in vitro, as well as to test their suitability as a carrier system for growth factors. Fiber matrices composed of PLLA or BMP-2–incorporated PLLA were seeded with human mesenchymal stem cells and cultivated over a period of 22 days under growth and osteoinductive conditions, and analyzed during the course of culture, with respect to gene expression of alkaline phosphatase (ALP), osteocalcin (OC), and collagen I (COL-I). Furthermore, COL-I and OC deposition, as well as cell densities and proliferation, were analyzed using fluorescence microscopy. Although the presence of nanofibers diminished the dexamethasone-induced proliferation, there were no differences in cell densities or deposition of either COL-I or OC after 22 days of culture. The gene expression of ALP, OC, and COL-I decreased in the initial phase of cell cultivation on PLLA nanofibers as compared to cover slip control, but normalized during the course of cultivation. The initial down-regulation was not observed when BMP-2 was directly incorporated into PLLA nanofibers by electrospinning, indicating that growth factors like BMP-2 might survive the spinning process in a bioactive form.
机译:本研究的目的是表征合成聚 - (L-乳酸)(PLLA)纳米纤维,其促进体外促进干细胞生长和骨质发生分化的能力,以及测试它们作为生长因子的载体系统的适用性。由PLLA或BMP-2掺入PLLA组成的纤维基质与人间充质干细胞接种并在生长和骨诱导条件下在22天内培养,并在培养过程中分析,相对于碱性磷酸酶的基因表达( ALP),骨钙素(OC)和胶原I(Col-I)。此外,使用荧光显微镜分析Col-1和OC沉积以及细胞密度和增殖。虽然纳米纤维的存在降低了地塞米松诱导的增殖,但在22天培养后,细胞密度或Col-I或OC的细胞密度或沉积没有差异。与覆盖滑移控制相比,PLLA纳米纤维在PLLA纳米纤维上的初始阶段的初始阶段,AlP,OC和Col-i的基因表达减少,但在培养过程中归一化。当通过电刺激将BMP-2直接掺入PLLA纳米纤维中时未观察到初始下调,表明BMP-2等生长因子可能以生物活性形式存活纺丝过程。

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