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Micro- and Nanoengineering Approaches to Control Stem Cell-Biomaterial Interactions

机译:微观和纳米工程控制干细胞-生物材料相互作用的方法

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摘要

As our population ages, there is a greater need for a suitable supply of engineered tissues to address a range of debilitating ailments. Stem cell based therapies are envisioned to meet this emerging need. Despite significant progress in controlling stem cell differentiation, it is still difficult to engineer human tissue constructs for transplantation. Recent advances in micro- and nanofabrication techniques have enabled the design of more biomimetic biomaterials that may be used to direct the fate of stem cells. These biomaterials could have a significant impact on the next generation of stem cell based therapies. Here, we highlight the recent progress made by micro- and nanoengineering techniques in the biomaterials field in the context of directing stem cell differentiation. Particular attention is given to the effect of surface topography, chemistry, mechanics and micro- and nanopatterns on the differentiation of embryonic, mesenchymal and neural stem cells.
机译:随着我们人口的老龄化,越来越需要适当供应的工程纸来解决一系列使人衰弱的疾病。设想基于干细胞的疗法可以满足这一新兴需求。尽管在控制干细胞分化方面取得了重大进展,但是仍然难以工程化用于移植的人类组织构建体。微型和纳米制造技术的最新进展使得能够设计出更多的仿生生物材料,这些材料可用于指导干细胞的命运。这些生物材料可能会对基于干细胞的下一代疗法产生重大影响。在这里,我们重点介绍了在指导干细胞分化的背景下,微材料和纳米工程技术在生物材料领域的最新进展。特别注意表面形貌,化学,力学和微观和纳米模式对胚胎,间充质和神经干细胞分化的影响。

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