Weksler B B, Subileau E A, Perrière N, Charneau P, Holloway K, Leveque M, Tricoire-Leignel H, Nicotra A, Bourdoulous S, Turowski P, Male D K, Roux F, Greenwood J, Romero I A, Couraud P O
Institut Cochin, CNRS UMR 8104-INSERM U567, Université René Descartes, Paris, France.
FASEB J. 2005 Nov;19(13):1872-4. doi: 10.1096/fj.04-3458fje. Epub 2005 Sep 1.
Establishment of a human model of the blood-brain barrier has proven to be a difficult goal. To accomplish this, normal human brain endothelial cells were transduced by lentiviral vectors incorporating human telomerase or SV40 T antigen. Among the many stable immortalized clones obtained by sequential limiting dilution cloning of the transduced cells, one was selected for expression of normal endothelial markers, including CD31, VE cadherin, and von Willebrand factor. This cell line, termed hCMEC/D3, showed a stable normal karyotype, maintained contact-inhibited monolayers in tissue culture, exhibited robust proliferation in response to endothelial growth factors, and formed capillary tubes in matrix but no colonies in soft agar. hCMEC/D3 cells expressed telomerase and grew indefinitely without phenotypic dedifferentiation. These cells expressed chemokine receptors, up-regulated adhesion molecules in response to inflammatory cytokines, and demonstrated blood-brain barrier characteristics, including tight junctional proteins and the capacity to actively exclude drugs. hCMEC/D3 are excellent candidates for studies of blood-brain barrier function, the responses of brain endothelium to inflammatory and infectious stimuli, and the interaction of brain endothelium with lymphocytes or tumor cells. Thus, hCMEC/D3 represents the first stable, fully characterized, well-differentiated human brain endothelial cell line and should serve as a widely usable research tool.
建立血脑屏障的人类模型已被证明是一个艰巨的目标。为实现这一目标,用包含人端粒酶或SV40 T抗原的慢病毒载体转导正常人脑内皮细胞。在通过对转导细胞进行连续有限稀释克隆获得的众多稳定永生化克隆中,选择了一个表达正常内皮标志物的克隆,包括CD31、血管内皮钙黏蛋白和血管性血友病因子。这个细胞系称为hCMEC/D3,显示出稳定的正常核型,在组织培养中保持接触抑制的单层状态,对内皮生长因子有强烈的增殖反应,并在基质中形成毛细管但在软琼脂中不形成集落。hCMEC/D3细胞表达端粒酶,可无限生长且无表型去分化。这些细胞表达趋化因子受体,对炎性细胞因子反应上调黏附分子,并表现出血脑屏障特征,包括紧密连接蛋白和主动排除药物的能力。hCMEC/D3是研究血脑屏障功能、脑内皮对炎性和感染性刺激的反应以及脑内皮与淋巴细胞或肿瘤细胞相互作用的极佳候选细胞。因此,hCMEC/D3代表了第一个稳定、充分表征、分化良好的人脑内皮细胞系,应作为一种广泛可用的研究工具。