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人肺微血管内皮细胞:分离、培养及鉴定

Human lung microvessel endothelial cells: isolation, culture, and characterization.

作者信息

Hewett P W, Murray J C

机构信息

CRC Gray Laboratory, Mount Vernon Hospital, Northwood, Middlesex, UK.

出版信息

Microvasc Res. 1993 Jul;46(1):89-102. doi: 10.1006/mvre.1993.1037.

Abstract

The pulmonary vasculature is of great physiological/pathological significance. We have isolated and cultured microvessel endothelial cells (HuLEC) from lung tissue obtained from lung transplant recipients by modification of published methods. Pure cultures of HuLEC were isolated by mechanical disaggregation of the tissue prior to sequential dispase and trypsin digestion to obtain microvessel fragments. Magnetic beads (Dynabeads) coated with Ulex europaeus agglutinin-1 were then used to enhance the purity of cultures at the first passage. HuLEC formed contact-inhibited "cobblestone" monolayers on gelatin and fibronectin substrates and capillary-like "tubes" on Matrigel and accumulated acetylated low-density lipoprotein. Immunofluorescent characterization of these cells revealed the presence of von Willebrand Factor, angiotensin-converting enzyme, and thrombomodulin and the expression of antigens for the endothelial cell-specific monoclonal antibodies EN4, PAL-E, and H4-7/33. The endothelial origin of these cells was confirmed by the demonstration of the cell adhesion molecules, platelet endothelial cell adhesion molecule-1 (PECAM-1/CD31), and E-selectin (endothelial leukocyte adhesion molecule-1/ELAM-1) upon stimulation with TNF alpha. These cells should provide a useful tool for studying various aspects of pathology and biology of the pulmonary microvasculature in vitro.

摘要

肺血管系统具有重要的生理/病理意义。我们通过改进已发表的方法,从肺移植受者的肺组织中分离并培养了微血管内皮细胞(HuLEC)。在依次进行分散酶和胰蛋白酶消化以获得微血管片段之前,通过机械解离组织来分离HuLEC的纯培养物。然后使用包被有荆豆凝集素-1的磁珠(Dynabeads)在传代培养时提高培养物的纯度。HuLEC在明胶和纤连蛋白底物上形成接触抑制的“鹅卵石”单层,在基质胶上形成毛细血管样“管”,并积累乙酰化低密度脂蛋白。对这些细胞的免疫荧光表征显示存在血管性血友病因子、血管紧张素转换酶和血栓调节蛋白,以及内皮细胞特异性单克隆抗体EN4、PAL-E和H4-7/33的抗原表达。在用肿瘤坏死因子α刺激后,通过证明细胞粘附分子血小板内皮细胞粘附分子-1(PECAM-1/CD31)和E-选择素(内皮白细胞粘附分子-1/ELAM-1),证实了这些细胞的内皮起源。这些细胞应为体外研究肺微血管系统病理和生物学的各个方面提供有用的工具。

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