内皮的生理和细胞生物学:细胞通讯的动态界面。

C J Kirkpatrick, M Wagner, I Hermanns, C L Klein, H Köhler, M Otto, T G van Kooten, F Bittinger
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引用次数: 44

摘要

本文简要介绍了内皮的生理和细胞生物学,这是理解内皮细胞在动脉粥样硬化、肿瘤内渗和多器官衰竭等多种病理过程中的作用的基础。在考虑了内皮在调节止血、血管张力和生长方面的一般功能后,将特别强调内皮对炎症反应的调节,其中心是微循环。细胞粘附分子(CAM)在炎症中起着特殊的作用,它在内皮细胞和血细胞上均有表达。我们将采用细胞和分子生物学的方法来研究CAM在内皮细胞中的体外表达,并提供新的数据,表明细胞因子诱导的内皮细胞中CAM的上调可能涉及信号转导途径,而不是最终激活NF-kappa b。血管生成现象将作为内皮细胞活性的一个特征,对生理学和病理学都具有重要意义,并将从体外模型中获得新的实验数据,以研究单个内皮细胞形成血管样结构的能力。在研究血管内皮生长因子(VEGF)和碱性成纤维细胞生长因子作用的比较研究中,可以明确地证明VEGF在毛细血管网络形成中的主导作用。
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Physiology and cell biology of the endothelium: a dynamic interface for cell communication.

This manuscript presents a brief overview of the physiology and cell biology of the endothelium, which is the basis for understanding the role of endothelial cells in pathological processes as diverse as atherosclerosis, tumour intravasation and multiple organ failure. Following consideration of general aspects of endothelial function in regulating haemostasis, vascular tone and growth, special emphasis will be placed on endothelial regulation of the inflammatory response, which centres on the microcirculation. A particular role in inflammation is played by cell adhesion molecules (CAM), expressed both on endothelial and blood cells. Cell and molecular biological methods to investigate the expression of CAM in endothelial cells in vitro will be presented, as well as novel data, indicating that cytokine-induced up-regulation of CAM in the endothelium may involve signal transduction pathways other than those culminating in the activation of NF-kappa B. Finally, the phenomenon of angiogenesis will be briefly reviewed as a characteristic of endothelial cell activity of central importance to both physiology and pathology and new experimental data presented from an in vitro model to study the ability of individual endothelial cells to form vessel-like structures. In comparative studies to investigate the roles of vascular endothelial growth factor (VEGF) and basic fibroblast growth factor, the dominant role of VEGF in the formation of capillary networks could be unequivocally demonstrated.

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