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首页> 外文期刊>Journal of biomaterials applications >Evaluation of menstrual blood stem cells seeded in biocompatible Bombyx mori silk fibroin scaffold for cardiac tissue engineering
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Evaluation of menstrual blood stem cells seeded in biocompatible Bombyx mori silk fibroin scaffold for cardiac tissue engineering

机译:生物相容性家蚕丝素蛋白支架中植入的经血干细胞用于心脏组织工程的评估

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摘要

Recently, silk fibroin scaffolds have been introduced as novel and promising biomaterials in the field of cardiac tissue engineering. This study was designed to compare infiltration, proliferation, and cardiac differentiation potential of menstrual blood-derived stem cells (MenSCs) versus bone marrow-derived mesenchymal stem cells (BMSCs) in Bombyx mori-derived silk scaffold. Our primary data revealed that the fabricated scaffold has mechanical and physical qualities suitable for cardiac tissue engineering. The MenSCs tracking in scaffolds using immunofluorescent staining and scanning electron microscopy confirmed MenSCs attachment, penetration, and distribution within the porous scaffold matrix. Based on proliferation assay using propidium iodide DNA quantification, the significantly higher level of growth rates of both MenSCs and BMSCs was documented in scaffolds than that in two-dimensional culture (p<0.01). The expression level of TNNT2, a bona fide cardiac differentiation marker, in BMSCs differentiated on silk scaffolds was markedly higher than those cultured in two-dimensional culture indicating the improvement of cardiac differentiation in the silk scaffolds. Furthermore, differentiated MenSCs exhibited higher expression of TNNT2 compared with induced BMSCs. It seems that silk scaffold-seeded MenSCs could be viewed as a novel, safe, natural, and accessible construct for cardiac tissue engineering.
机译:最近,在心脏组织工程领域中,丝素蛋白支架被引入作为新颖且有希望的生物材料。这项研究旨在比较月经血来源的干细胞(MenSCs)与骨髓来源的间充质干细胞(BMSCs)在Bombyx mori衍生的丝质支架中的浸润,增殖和心脏分化潜能。我们的主要数据显示,制成的支架具有适合心脏组织工程的机械和物理质量。使用免疫荧光染色和扫描电子显微镜在支架中追踪MenSCs,证实了MenSCs在多孔支架基质中的附着,渗透和分布。根据使用碘化丙啶DNA定量进行的增殖测定,在支架中,MenSCs和BMSCs的生长水平均显着高于二维培养中的水平(p <0.01)。真正的心脏分化标记物TNNT2在丝支架上分化的BMSC中的表达水平显着高于二维培养中的水平,表明丝支架的心脏分化有所改善。此外,与诱导的BMSC相比,分化的MenSCs表现出更高的TNNT2表达。似乎可以将丝支架植入的MenSCs视为用于心脏组织工程的新颖,安全,天然且易于使用的构建体。

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