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Delivery of Differentiation Factors by Mesoporous Silica Particles Assists Advanced Differentiation of Transplanted Murine Embryonic Stem Cells

机译:介孔二氧化硅颗粒传递分化因子有助于移植的小鼠胚胎干细胞的晚期分化。

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摘要

Stem cell transplantation holds great hope for the replacement of damaged cells in the nervous system. However, poor long-term survival after transplantation and insufficiently robust differentiation of stem cells into specialized cell types in vivo remain major obstacles for clinical application. Here, we report the development of a novel technological approach for the local delivery of exogenous trophic factor mimetics to transplanted cells using specifically designed silica nanoporous particles. We demonstrated that delivering Cintrofin and Gliafin, established peptide mimetics of the ciliary neurotrophic factor and glial cell line-derived neurotrophic factor, respectively, with these particles enabled not only robust functional differentiation of motor neurons from transplanted embryonic stem cells but also their long-term survival in vivo. We propose that the delivery of growth factors by mesoporous nanoparticles is a potentially versatile and widely applicable strategy for efficient differentiation and functional integration of stem cell derivatives upon transplantation.
机译:干细胞移植对于替换神经系统中受损的细胞具有巨大的希望。但是,移植后长期存活率低以及干细胞在体内不能充分分化为特定细胞类型仍然是临床应用的主要障碍。在这里,我们报告了使用专门设计的二氧化硅纳米多孔颗粒将外源营养因子模拟物局部递送至移植细胞的新型技术方法的开发。我们证明了提供Cintrofin和Gliafin分别建立了睫状神经营养因子和神经胶质细胞系神经营养因子的肽模拟物,这些颗粒不仅能够使运动神经元从移植的胚胎干细胞中稳定分化,而且还能长期稳定体内生存。我们提出介孔纳米粒子的生长因子的传递是一种潜在的通用性和广泛适用的战略,用于干细胞衍生物在移植后的有效分化和功能整合。

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