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Nanotechnology in the regulation of stem cell behavior

机译:纳米技术对干细胞行为的调节

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Stem cells are known for their potential to repair damaged tissues. The adhesion, growth and differentiation of stem cells are likely controlled by the surrounding microenvironment which contains both chemical and physical cues. Physical cues in the microenvironment, for example, nanotopography, were shown to play important roles in stem cell fate decisions. Thus, controlling stem cell behavior by nanoscale topography has become an important issue in stem cell biology. Nanotechnology has emerged as a new exciting field and research from this field has greatly advanced. Nanotechnology allows the manipulation of sophisticated surfaces/scaffolds which can mimic the cellular environment for regulating cellular behaviors. Thus, we summarize recent studies on nanotechnology with applications to stem cell biology, including the regulation of stem cell adhesion, growth, differentiation, tracking and imaging. Understanding the interactions of nanomaterials with stem cells may provide the knowledge to apply to cell–scaffold combinations in tissue engineering and regenerative medicine.
机译:干细胞因其修复受损组织的潜力而闻名。干细胞的粘附,生长和分化可能受周围的微环境控制,该环境同时包含化学和物理线索。在微环境中的物理提示,例如纳米形貌,已显示在干细胞命运决定中起重要作用。因此,通过纳米形貌控制干细胞行为已成为干细胞生物学中的重要问题。纳米技术已经成为一个令人兴奋的新领域,并且该领域的研究已大大推进。纳米技术可以操纵复杂的表面/支架,从而模仿细胞环境来调节细胞行为。因此,我们总结了纳米技术的最新研究及其在干细胞生物学中的应用,包括干细胞粘附,生长,分化,跟踪和成像的调控。了解纳米材料与干细胞的相互作用可能会提供知识,以应用于组织工程和再生医学中的细胞支架组合。

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