Rusnati Marco, Presta Marco
Department of Biomedical Sciences and Biotechnology, Unit of General Pathology and Immunology, School of Medicine, University of Brescia, Italy.
Endothelium. 2006 Mar-Apr;13(2):93-111. doi: 10.1080/10623320600698011.
Angiogenesis plays a key role in various physiological and pathological processes, including inflammation and tumor growth. Numerous angiogenic growth factors (AGFs) have been identified. Usually, the angiogenic process is assumed to represent the outcome of a straightforward interaction of AGFs with specific signalling receptors of the endothelial cell (EC) surface. Actually, the mechanisms by which AGFs induce neovascularization are much more complex. Indeed, angiogenesis is the result of the simultaneous actions of various AGFs and angiogenesis modulators; multiple EC surface receptors with different structure and biological properties are engaged by AGFs to exert a full angiogenic response; AGFs bind a variety of free and immobilized proteins, polysaccharides, and complex lipids of the extracellular milieu that affect AGF integrity, stability, and bioavailability; some of the AGF-binding molecules interact also with AGF receptors. In this review the authors summarize literature data and discuss the current knowledge about the extracellular molecules able to interact with AGFs, thus representing possible key regulators of the angiogenesis process and targets/templates for the development of novel antiangiogenic drugs. This work represents an attempt to highlight common theme in the AGF interactome that occurs at the extracellular level during neovascularization.
血管生成在包括炎症和肿瘤生长在内的各种生理和病理过程中起着关键作用。众多血管生成生长因子(AGFs)已被识别。通常,血管生成过程被认为是AGFs与内皮细胞(EC)表面特定信号受体直接相互作用的结果。实际上,AGFs诱导新血管形成的机制要复杂得多。的确,血管生成是多种AGFs和血管生成调节剂共同作用的结果;具有不同结构和生物学特性的多种EC表面受体被AGFs激活,以发挥完整的血管生成反应;AGFs与细胞外环境中的多种游离和固定化蛋白质、多糖及复合脂质结合,这些物质会影响AGFs的完整性、稳定性和生物利用度;一些AGF结合分子也与AGF受体相互作用。在这篇综述中,作者总结了文献数据,并讨论了目前关于能够与AGFs相互作用的细胞外分子的知识,这些分子可能是血管生成过程的关键调节因子以及新型抗血管生成药物开发的靶点/模板。这项工作旨在突出新血管形成过程中在细胞外水平发生的AGF相互作用组中的共同主题。