首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Primordial germ cell differentiation of nuclear transfer embryonic stem cells using surface modified electroconductive scaffolds
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Primordial germ cell differentiation of nuclear transfer embryonic stem cells using surface modified electroconductive scaffolds

机译:使用表面改性导电支架的核转移胚胎干细胞的原始生殖细胞分化

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摘要

A combination of nanotopographical cues and surface modification of collagen and fibronectin is a potential platform in primordial germ cells (PGCs) differentiation. In the present study, the synergistic effect of nanotopography and surface modification on differentiation of nuclear transfer embryonic stem cells (nt-ESCs) toward PGC lineage was investigated. In order to achieve this goal, poly-anyline (PANi) was mix within poly-l-lactic acid (PLLA). Afterward, the random composite mats were fabricated using PLLA and PANi mix solution. The nanofiber topography notably upregulated the expressions of prdm14, mvh and c-kit compared with tissue culture polystyrene (TCP). Moreover, the combination of nanofiber topography and surface modification resulted in more enhancement of PGCs differentiation compared with non-modified nanofibrous scaffold. Additionally, gene expression results showed that mvh and c-kit were expressed at higher intensity in cells exposed to collagen and fibronectin rather than collagen or fibronectin solitary. These results demonstrated the importance of combined effect of collagen and fibronectin in order to develop a functional extracellular matrix (ECM) mimic in directing stem cell fate and the potential of such biofunctional scaffolds for treatment of infertility.
机译:纳米蛋白和纤连蛋白的纳米检测性提示和表面改性的组合是原始胚芽细胞(PGCs)分化的潜在平台。在本研究中,研究了纳米复印件和表面改性对核转移胚胎干细胞(NT-ESC)朝向PGC谱系分化的协同作用。为了实现这一目标,多合金(PANI)在聚-L-乳酸(PLLA)中混合。之后,使用PLLA和PANI混合物溶液制造随机复合垫。与组织培养聚苯乙烯(TCP)相比,纳米纤维形貌显着上调了PRDM14,MVH和C-kit的表达。此外,与未改性的纳米纤维支架相比,纳米纤维形貌和表面改性的组合导致PGCS分化的更多增强。另外,基因表达结果表明,在暴露于胶原和纤连蛋白的细胞中以更高强度表达MVH和C-kit,而不是胶原蛋白或纤连蛋白孤零性。这些结果表明了胶原蛋白和纤连蛋白的综合作用的重要性,以便在引导干细胞命运和这种生物功能支架中用于治疗不孕症的这种生物功能支架的潜力进行模拟的功能性细胞外基质(ECM)。

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