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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >The effect of TGF-β1 and BMP-4 on bone marrow-derived stem cell morphology on a novel bioabsorbable nanocomposite material
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The effect of TGF-β1 and BMP-4 on bone marrow-derived stem cell morphology on a novel bioabsorbable nanocomposite material

机译:TGF-β1和BMP-4对新型生物可吸收纳米复合材料对骨髓干细胞形态的影响

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Context: Congenital heart disease is a leading cause of death in the first year, with an incidence of 1.5 million worldwide. It can be treated with bypass surgery, but due to the limited availability of autologous grafts, there has been research into developing a completely tissue-engineered vascular graft. Our group has developed a small diameter, biodegradable nanocomposite graft which is non-thrombogenic and biostable. Objectives: This study looks at the effects of the growth factors, TGF-β1 and BMP-4 on bone marrow-derived stem cell (BMSC) morphology on a POSS PCL scaffold. Materials and methods: BMSCs were seeded onto a new nanocomposite of POSS (polyhedral oligomeric silsesquioxane) and PCL (poly[caprolactone-urea]urethane) and TGF-β1 and BMP-4 were used to induce differentiation of the cells to smooth muscle cells. The distribution of the cells was examined using confocal and electron microscopies and the phenotype of the cells was assessed using immunohistochemistry. Results: It was found that growth factor induction led to a decrease in cell growth on POSS PCL as compared to that of the control surface, and confocal microscopic analysis showed less cytoskeleton reorganization of these cells. After immunohistochemistry analysis, the BMSCs showed no differentiation to smooth muscle cells. Discussion: Growth factor induction on the static scaffold discs led to a change in morphology, with less spreading of the cells, a lower proliferation rate and no differentiation into SMCs. These findings can be attributed to the POSS PCL being manufactured by a coagulation technique, resulting in a structure with low stiffness.
机译:背景:先天性心脏病是第一年的主要死亡原因,全球范围内有150万的发病率。可以通过搭桥手术进行治疗,但是由于自体移植物的可用性有限,因此已经进行了开发完全组织工程化的血管移植物的研究。我们的小组开发了一种小直径,可生物降解的纳米复合材料移植物,该移植物不致血栓形成且具有生物稳定性。目的:本研究探讨了生长因子,TGF-β1和BMP-4对POSS PCL支架上的骨髓衍生干细胞(BMSC)形态的影响。材料和方法:将BMSCs接种到POSS(多面体寡聚倍半硅氧烷)和PCL(聚己内酯-脲)聚氨酯的新型纳米复合材料上,并使用TGF-β1和BMP-4诱导细胞分化为平滑肌细胞。使用共聚焦和电子显微镜检查细胞的分布,并使用免疫组织化学评估细胞的表型。结果:发现与对照表面相比,生长因子诱导导致POSS PCL上的细胞生长减少,并且共聚焦显微镜分析显示这些细胞的细胞骨架重组较少。免疫组织化学分析后,骨髓间充质干细胞没有分化为平滑肌细胞。讨论:静态支架椎间盘上的生长因子诱导导致形态发生变化,细胞散布减少,增殖速率降低且没有分化为SMC。这些发现可归因于通过凝结技术制造的POSS PCL,从而导致结构的刚性低。

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