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Features of Microsystems for Cultivation and Characterization of Stem Cells with the Aim of Regenerative Therapy

机译:具有再生疗法的干细胞培养与表征微系统的特征

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Stem cells have infinite potential for regenerative therapy thanks to their advantageous ability which is differentiable to requisite cell types for recovery and self-renewal. The microsystem has been proved to be more helpful to stem cell studies compared to the traditional methods, relying on its advantageous feature of mimicking in vivo cellular environments as well as other profitable features such as minimum sample consumption for analysis and multiprocedures. A wide variety of microsystems were developed for stem cell studies; however, regenerative therapy-targeted applications of microtechnology should be more emphasized and gain more attractions since the regenerative therapy is one of ultimate goals of biologists and bioengineers. In this review, we introduce stem cell researches harnessing well-known microtechniques (microwell, micropattern, and microfluidic channel) in view point of physical principles and how these systems and principles have been implemented appropriately for characterizing stem cells and finding possible regenerative therapies. Biologists may gain information on the principles of microsystems to apply them to find solutions for their current challenges, and engineers may understand limitations of the conventional microsystems and find new chances for further developing practical microsystems. Through the well combination of engineers and biologists, the regenerative therapy-targeted stem cell researches harnessing microtechnology will find better suitable treatments for human disorders.
机译:由于其有利的能力,干细胞具有无限的再生治疗的潜力,这是对恢复和自我更新的必要细胞类型的有利能力。与传统方法相比,微系统已被证明对干细胞研究更有助于干细胞研究,依赖于其在体内蜂窝环境中模拟的有利特征以及其他有利可图的特征,例如分析和多处理的最小样本消耗。为干细胞研究开发了各种各样的微系统;然而,由于再生治疗是生物学家和生物工程的最终目标之一,因此,应更加强调并获得更多景点,因此应更加强调并获得更多景点,以获得更多的吸引力。在本次综述中,我们介绍了利用众所周知的微型技术(微孔,微图示和微流体通道)的干细胞研究,以便在物理原理和这些系统和原理如何适当地实施这些系统和原理,以表征干细胞并找到可能的再生疗法。生物学家可以获得有关微系统原则的信息,以应用他们寻找当前挑战的解决方案,工程师可能了解传统微系统的局限性,并找到新的机会,以进一步开发实用的微系统。通过工程师和生物学家的良好组合,再生治疗靶向干细胞利用微技术的治疗方法将为人类疾病找到更好的合适治疗方法。

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