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Neuronal Differentiation of Adipose Derived Stem Cells: Progress So Far

机译:脂肪干细胞的神经元分化:迄今为止的进展。

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摘要

The nervous system is essential for normal physiological function of all systems within the human body. Unfortunately the nervous system has a limited capacity for self-repair and there are a plethora of disorders, diseases, and types of trauma that affect the central and peripheral nervous systems; however, current treatment modalities are unable to remedy them. Stem cell therapy using easily accessible mesenchymal stem cells, such as those found in the adipose stroma, has come to the fore in a number of biomedical disciplines as a potential therapeutic regime. In addition to substantial research already having been conducted on the in vitro differentiation of stem cells for the treatment of neurological repair, numerous strategies for the induction and culture of stem cells into terminal neural lineages have also been developed. However, none of these strategies have yet been able to produce a fully functional descendent suitable for use in stem cell therapy. Due to the positive effects that low level laser irradiation has shown in stem cell studies to date, we propose that it could enhance the processes involved in the differentiation of adipose derived stem cells into neuronal lineages.
机译:神经系统对于人体中所有系统的正常生理功能至关重要。不幸的是,神经系统的自我修复能力有限,并且影响中枢神经系统和周围神经系统的疾病,疾病和创伤类型过多。但是,当前的治疗方式无法对其进行补救。使用易于接近的间充质干细胞(例如在脂肪基质中发现的间充质干细胞)进行的干细胞疗法已在许多生物医学领域脱颖而出,成为一种潜在的治疗方案。除了已经在干细胞的体外分化以治疗神经系统修复方面进行了大量研究之外,还开发了许多将干细胞诱导和培养成终末神经谱系的策略。然而,这些策略中没有一个能够产生适用于干细胞疗法的功能齐全的后代。由于迄今为止低水平激光照射在干细胞研究中已显示出积极作用,因此我们建议它可以增强与脂肪衍生干细胞分化为神经元谱系有关的过程。

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