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首页> 外文期刊>Current drug targets-The International journal for timely in-depth reviews on drug targets >Adult neural stem cell therapy: expansion in vitro, tracking in vivo and clinical transplantation.
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Adult neural stem cell therapy: expansion in vitro, tracking in vivo and clinical transplantation.

机译:成人神经干细胞疗法:体外扩增,追踪体内和临床移植。

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摘要

Neural stem cells (NSCs) are present not only in the developing nervous systems, but also in the adult human central nervous system (CNS). It is long thought that the subventricular zone of the lateral ventricles and the dentate gyrus of the hippocampus are the main sources of human adult NSCs, which are considered to be a reservoir of new neural cells. Recently adult NSCs with potential neural capacity have been isolated from white matter and inferior prefrontal subcortex in the human brain. Rapid advances in the stem cell biology have raised appealing possibilities of replacing damaged or lost neural cells by transplantation of in vitro-expanded stem cells and/or their neuronal progeny. However, sources of stem cells, large scale expansion, control of the differentiations, and tracking in vivo represent formidable challenges. In this paper we review the characteristics of the adult human NSCs, their potentiality in terms of proliferation and differentiation capabilities, as well as their large scale expansion for clinical needs. This review focuses on the major advances in brain stem cell-based therapy from the clinical perspective, and summarizes our work in clinical phase I-II trials with autologuous transplantation of adult NSCs for patients with open brain trauma. It also describes multiple approaches to monitor adult human NSCs labeled superparamagnetic nanoparticles after transplantation and explores the intriguing possibility of stem cell transplantation.
机译:神经干细胞(NSC)不仅存在于发育中的神经系统中,而且还存在于成人中枢神经系统(CNS)中。长期以来人们一直认为,侧脑室的脑室下区和海马的齿状回是人类成人NSC的主要来源,它们被认为是新神经细胞的储存库。最近,已经从人脑中的白质和前额叶下皮质分离出具有潜在神经功能的成年NSC。干细胞生物学的快速发展已经提出了通过移植体外扩增的干细胞和/或其神经元后代来替换受损或丢失的神经细胞的有吸引力的可能性。然而,干细胞的来源,大规模扩增,分化的控制以及体内追踪是巨大的挑战。在本文中,我们回顾了成年人类NSC的特征,其在增殖和分化能力方面的潜力以及它们针对临床需求的大规模扩展。这篇综述从临床角度侧重于基于脑干细胞疗法的主要进展,并总结了我们在I-II期临床研究中进行的自体移植成人NSC的开放性脑外伤患者的工作。它还描述了多种监测成年人类NSC标记的超顺磁性纳米粒子的方法,并探讨了干细胞移植的潜在可能性。

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