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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Isolation of Vascular Endothelial Cells from Intact and Injured Murine Brain Cortex-Technical Issues and Pitfalls in FACS Analysis of the Nervous Tissue
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Isolation of Vascular Endothelial Cells from Intact and Injured Murine Brain Cortex-Technical Issues and Pitfalls in FACS Analysis of the Nervous Tissue

机译:从完整和受伤的小鼠大脑皮层中分离血管内皮细胞-在神经组织的FACS分析中的技术问题和陷阱

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摘要

CNS endothelial cells (CNS-ECs), one of the main non-neural CNS cell populations, play a vital role in physiology, pathology, and regeneration of the nervous system. Therefore, there is an urgent need to enhance our knowledge on their biology to elucidate mechanisms responsible for the blood brain barrier function in normal and pathological conditions, interaction between brain endothelium and neural stem cells in the neurogenic niche, the paracrine processes in the brain and spinal cord, etc. Here, we described a novel, simple, and efficient protocol for isolation of endothelial, vessel-forming cells from the murine CNS, which is based on Sca-1 expression. Using this newly described protocol we were able to detect and sort viable, highly pure CNS-ECs with minimal contamination by cells of non-endothelial origin. This method will increase the availability of CNS-ECs for in vitro research. Moreover, we compared phenotype of CNS-ECs isolated from neonatal mice and adult intact and injured brain looking for the cells of endothelial precursor characteristic, such as those found in the bone marrow and circulating in the bloodstream after organ injuries. We have found that neonatal brain capillaries contain proportion of endothelial precursor cells (Sca-1(+), CD45(-), c-Kit(+)). Such precursors were also found in adult brain cortex, both in intact and injured brain. Finally, we discuss several crucial technical issues concerning CNS tissue preparation for flow cytometry analysis and cell sorting as well as nonspecific antibody binding caused by inflammatory microglia/macrophages which should be avoided in order to reliable isolation of pure CNS cells for downstream procedures including cell transplantation-based translational studies. (C) 2015 International Society for Advancement of Cytometry
机译:CNS内皮细胞(CNS-ECs)是主要的非神经CNS细胞群体之一,在生理,病理和神经系统再生中起着至关重要的作用。因此,迫切需要增强我们的生物学知识,以阐明正常和病理条件下负责血脑屏障功能的机制,神经源性利基中脑内皮与神经干细胞之间的相互作用,脑中旁分泌过程以及脊髓等。在这里,我们描述了一种基于Sca-1表达从鼠CNS分离内皮,血管形成细胞的新颖,简单而有效的方法。使用这种新近描述的方案,我们能够检测和分类可行的,高纯度的CNS-EC,而对非内皮来源细胞的污染最小。这种方法将增加CNS-EC在体外研究中的可用性。此外,我们比较了从新生小鼠和成年完好无损的大脑中分离的CNS-ECs的表型,以寻找内皮前体细胞的特征,例如那些在骨髓中发现的细胞以及器官损伤后在血液中循环的细胞。我们发现新生儿脑毛细血管中含有一定比例的内皮前体细胞(Sca-1(+),CD45(-),c-Kit(+))。在成人大脑皮层中,无论是完整的还是受伤的大脑,也都发现了这种前体。最后,我们讨论了有关用于流式细胞术分析和细胞分选的中枢神经系统组织制备以及炎性小胶质细胞/巨噬细胞引起的非特异性抗体结合的几个关键技术问题,为了可靠地分离纯中枢神经系统细胞用于包括细胞移植在内的下游程序,应该避免基础的翻译研究。 (C)2015国际细胞计数学会

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