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首页> 外文期刊>Journal of assisted reproduction and genetics >Behavior of mouse spermatogonial stem-like cells on an electrospun nanofibrillar matrix
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Behavior of mouse spermatogonial stem-like cells on an electrospun nanofibrillar matrix

机译:小鼠精原干细胞样在电纺纳米原纤维基质上的行为

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Purpose: Spermatogonial stem cells are affected by the interactions of extrinsic signals produced by components of the microenvironment niche, in addition to the chemical and physical properties of the extracellular matrix. Therefore, this study was initiated to assess the interaction of these cells on a synthetic nanofibrillar extracellular matrix that mimicked the geometry and nanotopography of the basement membrane for cellular growth. Methods: This study has used a variety of experimental approaches to investigate the interaction of mouse neonatal-derived spermatogonial stem-like cells on a synthetic random oriented three-dimensional nanofibrillar matrix composed of electrospun polyamide nanofibers (Ultra-Web?). Results: Spermatogonial stem-like cell colonies were characterized by their ability to express α6-integrin, Thy-1, PLZF, and β1-integrin. After culture of cells on the nanofibrillar surfaces for 7 days, the number of colonies, the number of cells in each colony, and the average area of colonies were increased (P < 0.05). However, the expression difference of related markers in both groups was not significant. A significantly higher proliferation and survival was observed in the nanofibrillar group (P < 0.05). After transplantation into the testes of busulfan-treated adult mice, spermatogonial stem-like cell colonies that were cultured on the nanofibrillar surface demonstrated functionality, as verified by their ability to migrate to the seminiferous basal membrane, where they produced additional colonies. Conclusions: These results have suggested that electrospun nanofibrillar surfaces could provide a more favorable microenvironment for in vitro short term culture of spermatogonial stem-like cell colonies.
机译:目的:除了细胞外基质的化学和物理特性外,精原干细胞还受微环境利基成分产生的外部信号相互作用的影响。因此,开始这项研究以评估这些细胞在合成的纳米原纤维细胞外基质上的相互作用,该基质模仿细胞生长的基底膜的几何形状和纳米形貌。方法:本研究已使用多种实验方法来研究小鼠新生精原干细胞样细胞在电纺聚酰胺纳米纤维(Ultra-Web?)组成的合成随机定向三维纳米原纤维基质上的相互作用。结果:精原干细胞样集落具有表达α6-整联蛋白,Thy-1,PLZF和β1-整联蛋白的能力。在纳米原纤维表面上培养细胞7天后,菌落数,每个菌落中的细胞数和平均菌落面积均增加(P <0.05)。但是,两组相关标志物的表达差异均不显着。在纳米原纤维组中观察到显着更高的增殖和存活率(P <0.05)。移植入经白消安处理的成年小鼠的睾丸后,在纳米原纤维表面培养的精原干样细胞集落表现出功能性,这已通过它们迁移到生精基底膜的能力得到了验证,并在其中产生了其他集落。结论:这些结果表明,电纺纳米原纤维表面可以为精原干细胞样集落的体外短期培养提供更有利的微环境。

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