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首页> 外文期刊>Cell transplantation >Forever young: how to control the elongation, differentiation, and proliferation of cells using nanotechnology.
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Forever young: how to control the elongation, differentiation, and proliferation of cells using nanotechnology.

机译:永远年轻:如何使用纳米技术控制细胞的延伸,分化和增殖。

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摘要

Within the emerging field of stem cells there is a need for an environment that can regulate cell activity, to slow down differentiation or proliferation, in vitro or in vivo while remaining invisible to the immune system. By creating a nanoenvironment surrounding PC12 cells, Schwann cells, and neural precursor cells (NPCs), we were able to control the proliferation, elongation, differentiation, and maturation in vitro. We extended the method, using self-assembling nanofiber scaffold (SAPNS), to living animals with implants in the brain and spinal cord. Here we show that when cells are placed in a defined system we can delay their proliferation, differentiation, and maturation depending on the density of the cell population, density of the matrix, and the local environment. A combination of SAPNS and young cells can be implanted into the central nervous system (CNS), eliminating the need for immunosuppressants.
机译:在新兴的干细胞领域内,需要一种可以在体外或体内调节细胞活性,减缓分化或增殖,同时保持免疫系统不可见的环境。通过在PC12细胞,许旺细胞和神经前体细胞(NPC)周围创建一个纳米环境,我们能够在体外控制增殖,延伸,分化和成熟。我们使用自组装纳米纤维支架(SAPNS)将方法扩展到在大脑和脊髓中植入了植入物的活体动物。在这里,我们表明,当将细胞放置在定义的系统中时,我们可以根据细胞群体的密度,基质的密度和局部环境来延迟其增殖,分化和成熟。 SAPNS和年轻细胞的组合可以植入中枢神经系统(CNS),从而消除了对免疫抑制剂的需求。

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