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首页> 外文期刊>Stem cells translational medicine. >Perivascular Mesenchymal Stem Cells From the Adult Human Brain Harbor No Instrinsic Neuroectodermal but High Mesodermal Differentiation Potential
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Perivascular Mesenchymal Stem Cells From the Adult Human Brain Harbor No Instrinsic Neuroectodermal but High Mesodermal Differentiation Potential

机译:来自成年人脑的血管周围间充质干细胞没有内在的神经外胚层,但具有较高的中胚层分化潜能

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摘要

Brain perivascular cells have recently been identified as a novel mesodermal cell type in the human brain. These cells reside in the perivascular niche and were shown to have mesodermal and, to a lesser extent, tissue-specific differentiation potential. Mesenchymal stem cells (MSCs) are widely proposed for use in cell therapy in many neurological disorders; therefore, it is of importance to better understand the "intrinsic" MSC population of the human brain. We systematically characterized adult human brain-derived pericytes during in vitro expansion and differentiation and compared these cells with fetal and adult human brain-derived neural stem cells (NSCs) and adult human bone marrow-derived MSCs. We found that adult human brain pericytes, which can be isolated from the hippocampus and from subcortical white matter, are--in contrast to adult human NSCs--easily expandable in monolayer cultures and show many similarities to human bone marrow-derived MSCs both regarding both surface marker expression and after whole transcriptome profile. Human brain pericytes showed a negligible propensity for neuroectodermal differentiation under various differentiation conditions but efficiently generated mesodermal progeny. Consequently, human brain pericytes resemble bone marrow-derived MSCs and might be very interesting for possible autologous and endogenous stem cell-based treatment strategies and cell therapeutic approaches for treating neurological diseases. SignificancePerivascular mesenchymal stem cells (MSCs) recently gained significant interest because of their appearance in many tissues including the human brain. MSCs were often reported as being beneficial after transplantation in the central nervous system in different neurological diseases; therefore, adult brain perivascular cells derived from human neural tissue were systematically characterized concerning neural stem cell and MSC marker expression, transcriptomics, and mesodermal and inherent neuroectodermal differentiation potential in vitro and in vivo after in utero transplantation. This study showed the lack of an innate neuronal but high mesodermal differentiation potential. Because of their relationship to mesenchymal stem cells, these adult brain perivascular mesodermal cells are of great interest for possible autologous therapeutic use.
机译:脑血管周细胞最近已被鉴定为人脑中的新型中胚层细胞类型。这些细胞位于血管周生境中,并显示具有中胚层的能力,并在较小程度上具有组织特异性的分化潜能。间充质干细胞(MSCs)被广泛建议用于许多神经系统疾病的细胞治疗。因此,重要的是更好地了解人脑的“固有” MSC种群。我们在体外扩增和分化过程中系统地表征了成年人类脑源性周细胞,并将这些细胞与胎儿和成年人类脑源性神经干细胞(NSC)和成年人类骨髓源性MSC进行了比较。我们发现,与成年人类NSC相比,可以从海马和皮层下白质中分离出的成年人类脑周细胞可以在单层培养物中轻松扩增,并且在人类骨髓来源的MSC方面都具有许多相似之处表面标志物表达和整个转录组图谱之后。人脑周细胞在各种分化条件下对神经外胚层分化的倾向可忽略不​​计,但有效产生中胚层后代。因此,人脑周细胞类似于骨髓来源的MSC,可能对于基于自体和内源性干细胞的治疗策略以及用于治疗神经疾病的细胞治疗方法非常感兴趣。重要性最近,由于血管间质干细胞(MSCs)出现在包括人脑在内的许多组织中,引起了广泛的关注。据报道,在不同神经系统疾病的中枢神经系统中移植后,MSCs有益。因此,在子宫内移植后体内和体外,系统地表征了源自人类神经组织的成年脑血管周围细胞的神经干细胞和MSC标志物表达,转录组学以及中胚层和固有神经外胚层分化潜能。这项研究表明缺乏先天神经元,但中胚层分化潜能高。由于它们与间充质干细胞的关系,这些成年的脑血管周中胚层细胞对于可能的自体治疗用途非常感兴趣。

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