Rauniyar Khushbu, Jha Sawan Kumar, Jeltsch Michael
Translational Cancer Biology Research Program, University of Helsinki, Helsinki, Finland.
Wihuri Research Institute, Biomedicum Helsinki, Helsinki, Finland.
Front Bioeng Biotechnol. 2018 Feb 12;6:7. doi: 10.3389/fbioe.2018.00007. eCollection 2018.
Because virtually all tissues contain blood vessels, the importance of hemevascularization has been long recognized in regenerative medicine and tissue engineering. However, the lymphatic vasculature has only recently become a subject of interest. Central to the task of growing a lymphatic network are lymphatic endothelial cells (LECs), which constitute the innermost layer of all lymphatic vessels. The central molecule that directs proliferation and migration of LECs during embryogenesis is vascular endothelial growth factor C (VEGF-C). VEGF-C is therefore an important ingredient for LEC culture and attempts to (re)generate lymphatic vessels and networks. During its biosynthesis VEGF-C undergoes a stepwise proteolytic processing, during which its properties and affinities for its interaction partners change. Many of these fundamental aspects of VEGF-C biosynthesis have only recently been uncovered. So far, most-if not all-applications of VEGF-C do not discriminate between different forms of VEGF-C. However, for lymphatic regeneration and engineering purposes, it appears mandatory to understand these differences, since they relate, e.g., to important aspects such as biodistribution and receptor activation potential. In this review, we discuss the molecular biology of VEGF-C as it relates to the growth of LECs and lymphatic vessels. However, the properties of VEGF-C are similarly relevant for the cardiovascular system, since both old and recent data show that VEGF-C can have a profound effect on the blood vasculature.
由于几乎所有组织都含有血管,血管化在再生医学和组织工程中的重要性早已得到认可。然而,淋巴管系统直到最近才成为研究热点。淋巴管内皮细胞(LECs)是构建淋巴管网的核心,它们构成了所有淋巴管的最内层。在胚胎发育过程中,指导LECs增殖和迁移的核心分子是血管内皮生长因子C(VEGF-C)。因此,VEGF-C是LEC培养以及尝试(再)生成淋巴管和淋巴管网的重要成分。在其生物合成过程中,VEGF-C会经历逐步的蛋白水解过程,在此过程中其性质以及与相互作用伙伴的亲和力会发生变化。VEGF-C生物合成的许多基本方面直到最近才被发现。到目前为止,VEGF-C的大多数(如果不是全部)应用都没有区分不同形式的VEGF-C。然而,对于淋巴再生和工程目的而言,了解这些差异似乎是必不可少的,因为它们涉及生物分布和受体激活潜力等重要方面。在这篇综述中,我们讨论了与LECs和淋巴管生长相关的VEGF-C的分子生物学。然而,VEGF-C的特性对心血管系统同样重要,因为新老数据均表明VEGF-C对血管系统可能有深远影响。