Laboratory of General Physiology, Department of Biology and Biotechnology "L. Spallanzani", University of Pavia, 27100 Pavia, Italy.
Center for the Study of Myelofibrosis, Laboratory of Biochemistry, Biotechnology and Advanced Diagnosis, IRCCS Policlinico San Matteo Foundation, 27100 Pavia, Italy.
Cells. 2020 May 27;9(6):1341. doi: 10.3390/cells9061341.
Therapeutic angiogenesis represents an emerging strategy to treat ischemic diseases by stimulating blood vessel growth to rescue local blood perfusion. Therefore, injured microvasculature may be repaired by stimulating resident endothelial cells or circulating endothelial colony forming cells (ECFCs) or by autologous cell-based therapy. Endothelial Ca signals represent a crucial player in angiogenesis and vasculogenesis; indeed, several angiogenic stimuli induce neovessel formation through an increase in intracellular Ca concentration. Several members of the Transient Receptor Potential (TRP) channel superfamily are expressed and mediate Ca-dependent functions in vascular endothelial cells and in ECFCs, the only known truly endothelial precursor. TRP Vanilloid 1 (TRPV1), a polymodal cation channel, is emerging as an important player in endothelial cell migration, proliferation, and tubulogenesis, through the integration of several chemical stimuli. Herein, we first summarize TRPV1 structure and gating mechanisms. Next, we illustrate the physiological roles of TRPV1 in vascular endothelium, focusing our attention on how endothelial TRPV1 promotes angiogenesis. In particular, we describe a recent strategy to stimulate TRPV1-mediated pro-angiogenic activity in ECFCs, in the presence of a photosensitive conjugated polymer. Taken together, these observations suggest that TRPV1 represents a useful target in the treatment of ischemic diseases.
治疗性血管生成代表了一种通过刺激血管生长来挽救局部血液灌注以治疗缺血性疾病的新兴策略。因此,可以通过刺激常驻内皮细胞或循环内皮祖细胞(ECFC)或通过自体细胞治疗来修复受损的微血管。内皮钙信号是血管生成和血管发生的关键因素;事实上,几种血管生成刺激物通过增加细胞内钙浓度诱导新血管形成。瞬时受体电位(TRP)通道超家族的几个成员在血管内皮细胞和 ECFCs 中表达并介导钙依赖性功能,ECFCs 是唯一已知的真正的内皮前体细胞。TRP 香草素 1(TRPV1)是一种多模式阳离子通道,作为内皮细胞迁移、增殖和管状形成的重要参与者而出现,通过整合几种化学刺激。在此,我们首先总结 TRPV1 的结构和门控机制。接下来,我们说明了 TRPV1 在血管内皮中的生理作用,重点关注内皮 TRPV1 如何促进血管生成。特别是,我们描述了一种在存在光敏感共轭聚合物的情况下刺激 ECFCs 中 TRPV1 介导的促血管生成活性的新策略。综上所述,这些观察结果表明 TRPV1 是治疗缺血性疾病的有用靶点。