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Increased Understanding of Stem Cell Behavior in Neurodegenerative and Neuromuscular Disorders by Use of Noninvasive Cell Imaging

机译:通过使用非侵入性细胞成像,增加神经变性和神经肌肉障碍中干细胞行为的了解

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Numerous neurodegenerative and neuromuscular disorders are associated with cell-specific depletion in the human body. This imbalance in tissue homeostasis is in healthy individuals repaired by the presence of endogenous stem cells that can replace the lost cell type. However, in most disorders, a genetic origin or limited presence or exhaustion of stem cells impairs correct cell replacement. During the last 30 years, methods to readily isolate and expand stem cells have been developed and this resulted in a major change in the regenerative medicine field as it generates sufficient amount of cells for human transplantation applications. Furthermore, stem cells have been shown to release cytokines with beneficial effects for several diseases. At present however, clinical stem cell transplantations studies are struggling to demonstrate clinical efficacy despite promising preclinical results. Therefore, to allow stem cell therapy to achieve its full potential, more insight in their in vivo behavior has to be achieved. Different methods to noninvasively monitor these cells have been developed and are discussed. In some cases, stem cell monitoring even reached the clinical setting. We anticipate that by further exploring these imaging possibilities and unraveling their in vivo behavior further improvement in stem cell transplantations will be achieved.
机译:许多神经变性和神经肌肉障碍与人体中的细胞特异性耗竭有关。在组织稳态中这种不平衡是通过存在的内源性干细胞的存在修复的健康个体,其可以取代丢失的细胞类型。然而,在大多数疾病中,遗传来源或有限的存在或耗尽干细胞损害正确的细胞更换。在过去30年中,已经开发出易于分离和扩展干细胞的方法,这导致再生医学领域的重大变化,因为它产生足够量的人移植应用。此外,已显示干细胞释放细胞因子,对几种疾病具有有益效果。然而,目前,尽管有希望的临床前结果,临床干细胞移植研究正在努力证明临床疗效。因此,为了允许干细胞疗法实现其全部潜力,必须实现更有洞察力的体内行为。已经开发出并讨论了不同的非侵入性监测这些细胞的方法。在某些情况下,干细胞监测甚至达到了临床环境。我们预期通过进一步探索这些成像可能性并解开其体内行为,将实现干细胞移植的进一步改善。

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