Kretschmer Maibritt, Rüdiger Daniel, Zahler Stefan
Department of Pharmacy, Pharmaceutical Biology, Ludwig-Maximilians-Universität München, Butenandtstraße 5-13, 81377 Munich, Germany.
Cancers (Basel). 2021 Oct 5;13(19):4987. doi: 10.3390/cancers13194987.
Angiogenesis is of high clinical relevance as it plays a crucial role in physiological (e.g., tissue regeneration) and pathological processes (e.g., tumor growth). Besides chemical signals, such as VEGF, the relationship between cells and the extracellular matrix (ECM) can influence endothelial cell behavior during angiogenesis. Previously, in terms of the connection between angiogenesis and mechanical factors, researchers have focused on shear forces due to blood flow. However, it is becoming increasingly important to include the direct influence of the ECM on biological processes, such as angiogenesis. In this context, we focus on the stiffness of the surrounding ECM and the adhesion of cells to the ECM. Furthermore, we highlight the mechanical cues during the main stages of angiogenesis: cell migration, tip and stalk cells, and vessel stabilization. It becomes clear that the different stages of angiogenesis require various chemical and mechanical cues to be modulated by/modulate the stiffness of the ECM. Thus, changes of the ECM during tumor growth represent additional potential dysregulations of angiogenesis in addition to erroneous biochemical signals. This awareness could be the basis of therapeutic approaches to counteract specific processes in tumor angiogenesis.
血管生成具有高度的临床相关性,因为它在生理过程(如组织再生)和病理过程(如肿瘤生长)中起着关键作用。除了化学信号(如血管内皮生长因子)外,细胞与细胞外基质(ECM)之间的关系也会在血管生成过程中影响内皮细胞的行为。以前,在血管生成与机械因素的联系方面,研究人员主要关注血流产生的剪切力。然而,将细胞外基质对生物过程(如血管生成)的直接影响纳入研究变得越来越重要。在此背景下,我们关注周围细胞外基质的硬度以及细胞与细胞外基质的黏附。此外,我们强调血管生成主要阶段的机械信号:细胞迁移、尖端细胞和柄细胞以及血管稳定。很明显,血管生成的不同阶段需要各种化学和机械信号来调节/被细胞外基质的硬度调节。因此,肿瘤生长过程中细胞外基质的变化代表了除错误生化信号外血管生成的额外潜在失调。这种认识可能是对抗肿瘤血管生成中特定过程的治疗方法的基础。