首页> 美国卫生研究院文献>Pharmacology Research Perspectives >The red‐vine‐leaf extract AS195 increases nitric oxide synthase–dependent nitric oxide generation and decreases oxidative stress in endothelial and red blood cells
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The red‐vine‐leaf extract AS195 increases nitric oxide synthase–dependent nitric oxide generation and decreases oxidative stress in endothelial and red blood cells

机译:红藤叶提取物AS195可增加一氧化氮合酶依赖性一氧化氮的产生并降低内皮细胞和红细胞的氧化应激

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摘要

The red‐vine‐leaf extract AS195 improves cutaneous oxygen supply and the microcirculation in patients suffering from chronic venous insufficiency. Regulation of blood flow was associated to nitric oxide synthase (NOS)‐dependent NO (nitric oxide) production, and endothelial and red blood cells (RBC) have been shown to possess respective NOS isoforms. It was hypothesized that AS195 positively affects NOS activation in human umbilical vein endothelial cells (HUVECs) and RBC. Because patients with microvascular disorders show increased oxidative stress which limits NO bioavailability, it was further hypothesized that AS195 increases NO bioavailability by decreasing the content of reactive oxygen species (ROS) and increasing antioxidant capacity. Cultured HUVECs and RBCs from healthy volunteers were incubated with AS195 (100 μmol/L), tert‐butylhydroperoxide (TBHP, 1 mmol/L) to induce oxidative stress and with both AS195 and TBHP. Endothelial and red blood cell–nitric oxide synthase (RBC‐NOS) activation significantly increased after AS195 incubation. Nitrite concentration, a marker for NO production, increased in HUVEC but decreased in RBC after AS195 application possibly due to nitrite scavenging potential of flavonoids. S‐nitrosylation of RBC cytoskeletal spectrins and RBC deformability were increased after AS195 incubation. TBHP‐induced ROS were decreased by AS195, and antioxidative capacity was significantly increased in AS195‐treated cells. TBHP also reduced RBC deformability, but reduction was attenuated by parallel incubation with AS195. Adhesion of HUVEC was also reduced after AS195 treatment. Red‐vine‐leaf extract AS195 increases NOS activation and decreases oxidative stress. Both mechanisms increase NO bioavailability, improve cell function, and may thus account for enhanced microcirculation in both health and disease.
机译:红叶提取物AS195可改善患有慢性静脉功能不全的患者的皮肤氧气供应和微循环。血流的调节与一氧化氮合酶(NOS)依赖的NO(一氧化氮)产生有关,并且内皮细胞和红细胞(RBC)已显示具有各自的NOS亚型。假设AS195对人脐静脉内皮细胞(HUVEC)和RBC中的NOS活化有积极影响。由于患有微血管疾病的患者显示出增加的氧化应激,从而限制了NO的生物利用度,因此进一步假设AS195通过减少活性氧(ROS)的含量和增加抗氧化能力来提高NO的生物利用度。将健康志愿者培养的HUVEC和RBC与AS195(100μmol/ L),叔丁基过氧化氢(TBHP,1 mmol / L)一起孵育以诱导氧化应激,并与AS195和TBHP一起孵育。孵育AS195后,内皮细胞和红细胞一氧化氮合酶(RBC-NOS)的活化显着增加。应用AS195后,亚硝酸盐浓度(NO生成的标志物)在HUVEC中升高,但在RBC中降低,这可能是由于类黄酮对亚硝酸盐的清除作用。 AS195孵育后,RBC细胞骨架蛋白的S亚硝基化和RBC变形能力增加。 TBHP诱导的ROS被AS195降低,并且抗氧化能力在经AS195处理的细胞中显着增加。 TBHP也降低了RBC的可变形性,但是通过与AS195平行孵育减弱了还原作用。 AS195处理后,HUVEC的粘附力也降低了。红藤叶提取物AS195增加NOS活化并减少氧化应激。两种机制都可以增加NO的生物利用度,改善细胞功能,因此可以解释健康和疾病中微循环的增强。

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