Institute of Physiology and Pathophysiology, Division of Cardiovascular Physiology, Heidelberg University, Heidelberg, Germany.
Sci Rep. 2017 Dec 19;7(1):17820. doi: 10.1038/s41598-017-17910-0.
Due to gravity the venous vasculature in the lower extremities is exposed to elevated pressure levels which may be amplified by obesity or pregnancy. As a consequence, venules dilate and may be slowly transformed into varicose or spider veins. In fact, chronically elevated venous pressure was sufficient to cause the corkscrew-like enlargement of superficial veins in mice. We hypothesized that biomechanical activation of endothelial cells contributes to this process and investigated the inhibitory capacity of Magnolol in this context - a natural compound that features multiple properties counteracting cellular stress. While Magnolol did not influence endothelial capillary sprout formation, it interfered with proliferation, ERK1/2 activity, gelatinase activity as well as baseline production of reactive oxygen species in these cells or murine veins. The anti-oxidative and anti-proliferative capacity of Magnolol was mediated through stimulation of heme oxygenase-1 expression. Finally, local transdermal application of Magnolol attenuated pressure-mediated development of varicose/spider veins in mice and was accompanied by the absence of proliferating and MMP-2 positive endothelial cells. Collectively, our data identified Magnolol as a potent inhibitor of biomechanically evoked endothelial cell activity during pressure-mediated venous remodeling processes which contribute to the development of varicose and spider veins.
由于重力的作用,下肢的静脉脉管系统会承受较高的压力水平,而肥胖或怀孕可能会使这种压力进一步升高。结果,小静脉扩张,可能会逐渐转变为静脉曲张或蜘蛛状静脉。事实上,慢性静脉高压足以导致小鼠的浅静脉呈螺旋状扩张。我们假设内皮细胞的生物力学激活有助于这一过程,并研究了厚朴酚在这种情况下的抑制能力——厚朴酚是一种具有多种特性的天然化合物,可对抗细胞应激。虽然厚朴酚不影响内皮细胞毛细血管芽的形成,但它干扰了这些细胞或鼠静脉中的增殖、ERK1/2 活性、明胶酶活性以及基础状态下活性氧的产生。厚朴酚的抗氧化和抗增殖能力是通过刺激血红素加氧酶-1 的表达来介导的。最后,局部透皮应用厚朴酚可减轻压力介导的小鼠静脉曲张/蜘蛛状静脉的发展,并伴有增殖和 MMP-2 阳性内皮细胞的缺失。总的来说,我们的数据表明,厚朴酚是一种有效的抑制剂,可抑制压力介导的静脉重塑过程中,引发的内皮细胞活性,这有助于静脉曲张和蜘蛛状静脉的发展。