Department of Pediatric Hematology and Oncology, Bambino Gesù Children's Hospital, IRCCS, Rome, Italy.
Department of Life Sciences, University of Siena, Siena, Italy.
Phytother Res. 2024 Jun;38(6):2641-2655. doi: 10.1002/ptr.8183. Epub 2024 Mar 15.
Insufficient vessel maintenance adversely impacts patients in terms of tissue reperfusion following stroke or myocardial infarction, as well as during wound healing. Angiogenesis impairment is a feature typical of metabolic disorders acting at the cardiovascular level, such as diabetes. Therapeutic angiogenesis regulation offers promising clinical implications, and natural compounds as pro-angiogenic nutraceuticals hold valuable applications in regenerative medicine. By using cultured endothelial cells from human umbilical veins (HUVEC) we studied functional and molecular responses following exposure to erucin, a natural isothiocyanate derived from Brassicaceae plants and extracted from the seeds of rocket. Erucin (at nanomolar concentrations) promotes cell migration and tube formation, similar to vascular endothelial growth factor (VEGF), through mobilizing paxillin at endothelial edges. At the molecular level, erucin induces signaling pathways typical of angiogenesis activation, namely Ras, PI3K/AKT, and ERK1/2, leading to VEGF expression and triggering its autocrine production, as pharmacological inhibition of soluble VEGF and VEGFR2 dampens endothelial functions. Furthermore, erucin, alone and together with VEGF, preserves endothelial angiogenic functions under pathological conditions, such as those induced in HUVEC by high glucose (HG) exposure. Erucin emerges as a compelling candidate for therapeutic revascularization applications, showcasing promising prospects for natural compounds in regenerative medicine, particularly in addressing angiogenesis-related disorders.
血管维护不足会对中风或心肌梗死、伤口愈合等情况下的组织再灌注产生不利影响。血管生成受损是心血管代谢紊乱的一个特征,如糖尿病。治疗性血管生成调节具有有前景的临床意义,作为促血管生成的营养保健品的天然化合物在再生医学中有重要的应用。我们通过使用从人脐静脉(HUVEC)培养的内皮细胞,研究了暴露于来自十字花科植物的天然异硫氰酸酯——萝卜硫素(从火箭种子中提取)后的功能和分子反应。萝卜硫素(在纳摩尔浓度下)通过动员内皮边缘的桩蛋白,类似于血管内皮生长因子(VEGF),促进细胞迁移和管状形成。在分子水平上,萝卜硫素诱导血管生成激活的典型信号通路,即 Ras、PI3K/AKT 和 ERK1/2,导致 VEGF 表达并触发其自分泌产生,因为可溶性 VEGF 和 VEGFR2 的药理学抑制会抑制内皮功能。此外,萝卜硫素可单独或与 VEGF 一起在高糖(HG)暴露等病理条件下维持内皮的血管生成功能。萝卜硫素作为治疗性再血管化应用的有力候选物,展示了天然化合物在再生医学中的广阔前景,特别是在解决与血管生成相关的疾病方面。