Phenotype gradation of human saphenous vein endothelial cells from cardiovascular disease subjects.

C Krishna Prasad, K Jayakumar, Lissy K Krishnan
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引用次数: 3

Abstract

The highly organized histological architecture of the vascular wall and the specialized cellular phenotypes are perturbed in conditions such as atherosclerosis, restenosis, and hypertension. Alterations of endothelial cell (EC) phenotype in cardiovascular diseases (CVDs) as an effect of alteration of extracellular matrix (ECM) composition have not been well understood. In vitro study of EC phenotype is limited because they tend to dedifferentiate in subcultures. The objective of this study was to use in vitro cell culture on a biomimetic matrix model to characterize phenotype of human saphenous vein endothelial cells (HSVECs) harvested from CVD patients. Parameters studied were mRNA expression and synthesis of von Willebrand factor (vWF), plasminogen activation inhibitor (PAI), tissue plasminogen activator (t-PA), and endothelial nitric oxide synthetase (eNOS). Proliferation and apoptosis of HSVEC cultures obtained from eight different patients were compared on two matrices until passage 12. In early passages, both the prothombotic molecules vWF and PAI were overexpressed, whereas the antithrombotic molecules t-PA and eNOS were underexpressed. With increase in passage number, low expression of prothrombotic molecules and high expression of antithrombotic molecules were seen in cells on the model matrix. But when cells were grown on conventional gelatin-coated polystyrene, expression of prothrombotic molecules amplified further and antithrombotic molecules lessened with the progression of passages. On the model matrix HSVECs showed good proliferation rate and survival through several passages. It is demonstrated that matrix composition can influence switching of EC phenotypes into pro/antithrombotic states. This matrix model may be suitable to study the effect of exogenous factors on EC dysfunction with respect to CVD.
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心血管疾病患者大隐静脉内皮细胞的表型分级。
血管壁高度组织化的组织学结构和特化的细胞表型在动脉粥样硬化、再狭窄和高血压等疾病中受到干扰。心血管疾病(cvd)中内皮细胞(EC)表型的改变作为细胞外基质(ECM)组成改变的影响尚未得到很好的理解。体外对EC表型的研究是有限的,因为它们在传代培养中倾向于去分化。本研究的目的是在仿生基质模型上使用体外细胞培养来表征从心血管疾病患者身上采集的人隐静脉内皮细胞(hsvec)的表型。研究参数为血管性血友病因子(vWF)、纤溶酶原激活抑制剂(PAI)、组织型纤溶酶原激活剂(t-PA)和内皮型一氧化氮合成酶(eNOS) mRNA的表达和合成。8例不同患者的HSVEC培养物在两种基质上的增殖和凋亡比较,直到传代12。在早期传代中,促血栓分子vWF和PAI均过表达,而抗血栓分子t-PA和eNOS均过表达。随着传代数的增加,模型基质上的细胞出现血栓形成前分子的低表达和抗血栓形成分子的高表达。但当细胞生长在常规明胶包被的聚苯乙烯上时,随着传代的进展,血栓形成前分子的表达进一步扩增,抗血栓形成分子的表达减少。在模型基质上,hsvec经多次传代均表现出良好的增殖率和存活率。研究表明,基质组成可以影响EC表型向促/抗血栓状态的转换。该矩阵模型可能适用于研究外源性因素对CVD的EC功能障碍的影响。
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