首页> 外文期刊>Tissue engineering, Part C. Methods >A novel three-dimensional culture system for isolation and clonal propagation of neural stem cells using a thermo-reversible gelation polymer.
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A novel three-dimensional culture system for isolation and clonal propagation of neural stem cells using a thermo-reversible gelation polymer.

机译:一种新颖的三维培养系统,用于使用热可逆凝胶聚合物对神经干细胞进行分离和克隆繁殖。

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摘要

In the present study, we examined the possible utility of a three-dimensional culture system using a thermo-reversible gelation polymer to isolate and expand neural stem cells (NSCs). The polymer is a synthetic biologically inert polymer and gelates at temperatures higher than the gel-sol transition point ( approximately 20 degrees C). When fetal mouse brain cells were inoculated into the gel, spherical colonies were formed ( approximately 1% in primary culture and approximately 9% in passage cultures). The spheroid-forming cells were positive for expression of the NSC markers nestin and Musashi. Under conditions facilitating spontaneous neural differentiation, the spheroid-forming cells expressed genes characteristic to astrocytes, oligodendrocytes, and neurons. The cells could be successively propagated at least to 80 poly-D-lysines over a period of 20 weeks in the gel culture with a growth rate higher than that observed in suspension culture. The spheroids formed by fetal mouse brain cells in the gel were shown to be of clonal origin. These results indicate that the spheroid culture system is a convenient and powerful tool for isolation and clonal expansion of NSCs in vitro.
机译:在本研究中,我们研究了使用热可逆凝胶聚合物分离和扩增神经干细胞(NSC)的三维培养系统的可能用途。该聚合物是合成的生物惰性聚合物,并在高于凝胶-溶胶转变点(约20摄氏度)的温度下凝胶化。将胎儿小鼠脑细胞接种到凝胶中后,形成了球形菌落(在原代培养中约为1%,在传代培养中约为9%)。形成球状细胞的NSC标志Nestin和Musashi表达阳性。在促进自发神经分化的条件下,形成球体的细胞表达星形胶质细胞,少突胶质细胞和神经元特有的基因。在凝胶培养中,细胞可以在20周内连续繁殖至少80个聚D-赖氨酸,其生长速率高于悬浮培养中观察到的。凝胶中胎儿小鼠脑细胞形成的球体显示是克隆来源的。这些结果表明,球状培养系统是体外分离和克隆NSC的便捷而强大的工具。

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