Antoniades Charalambos, Shirodaria Cheerag, Warrick Nicholas, Cai Shijie, de Bono Joseph, Lee Justin, Leeson Paul, Neubauer Stefan, Ratnatunga Chandi, Pillai Ravi, Refsum Helga, Channon Keith M
Department of Cardiovascular Medicine, University of Oxford, John Radcliffe Hospital, Oxford, OX3 9DU, UK.
Circulation. 2006 Sep 12;114(11):1193-201. doi: 10.1161/CIRCULATIONAHA.106.612325. Epub 2006 Aug 28.
The circulating form of folic acid, 5-methyltetrahydrofolate (5-MTHF), may have beneficial effects on endothelial function; however, its mechanisms of action remain uncertain. Decreased nitric oxide (NO) bioavailability and increased vascular superoxide production in vascular disease states are due in part to endothelial NO synthase (eNOS) uncoupling related to deficiency of the eNOS cofactor tetrahydrobiopterin (BH4), but whether this mechanism is important in human atherosclerosis and represents a rational therapeutic target remains unclear. We hypothesized that 5-MTHF would improve endothelial function by decreasing superoxide and peroxynitrite production and by improving eNOS coupling, mediated by BH4 availability.
Vascular superoxide/peroxynitrite production and vasomotor responses to acetylcholine and bradykinin were determined in saphenous veins and internal mammary arteries from 117 patients undergoing CABG. The effects of 5-MTHF were examined ex vivo (n = 61) by incubating vessels with 5-MTHF (1 to 100 micromol/L) and in vivo by intravenous infusion of 5-MTHF or placebo before vessel harvest (n = 56). 5-MTHF improved NO-mediated endothelium-dependent vasomotor responses and reduced vascular superoxide, both ex vivo and in vivo. These changes were not explained by direct superoxide scavenging by 5-MTHF in vitro or by changes in plasma total homocysteine in vivo. Rather, 5-MTHF was a strong peroxynitrite scavenger and increased vascular BH4 and the BH4/total biopterin ratio. Furthermore, 5-MTHF reversed eNOS uncoupling, as assessed by NG-nitro-l-arginine methyl ester-inhibitable superoxide production, increased the eNOS dimer:monomer ratio, and enhanced eNOS activity.
5-MTHF has beneficial effects on endothelial function and vascular superoxide production in human atherosclerosis, by preventing peroxynitrite-mediated BH4 oxidation and improving eNOS coupling.
叶酸的循环形式5-甲基四氢叶酸(5-MTHF)可能对内皮功能具有有益作用;然而,其作用机制仍不确定。血管疾病状态下一氧化氮(NO)生物利用度降低和血管超氧化物生成增加部分归因于与内皮型一氧化氮合酶(eNOS)辅因子四氢生物蝶呤(BH4)缺乏相关的eNOS解偶联,但该机制在人类动脉粥样硬化中是否重要以及是否代表合理的治疗靶点仍不清楚。我们假设5-MTHF可通过降低超氧化物和过氧亚硝酸盐生成以及通过改善由BH4可用性介导的eNOS偶联来改善内皮功能。
在117例行冠状动脉旁路移植术(CABG)患者的大隐静脉和乳内动脉中测定血管超氧化物/过氧亚硝酸盐生成以及对乙酰胆碱和缓激肽的血管舒缩反应。通过用5-MTHF(1至100 μmol/L)孵育血管在体外(n = 61)研究5-MTHF的作用,并在体内通过在采集血管前静脉输注5-MTHF或安慰剂进行研究(n = 56)。5-MTHF在体外和体内均改善了NO介导的内皮依赖性血管舒缩反应并减少了血管超氧化物。这些变化不能通过5-MTHF在体外直接清除超氧化物或体内血浆总同型半胱氨酸的变化来解释。相反,5-MTHF是一种强大的过氧亚硝酸盐清除剂,并增加了血管BH4和BH4/总生物蝶呤比值。此外,通过NG-硝基-L-精氨酸甲酯抑制的超氧化物生成评估,5-MTHF逆转了eNOS解偶联,增加了eNOS二聚体:单体比值,并增强了eNOS活性。
5-MTHF通过防止过氧亚硝酸盐介导的BH氧化和改善eNOS偶联,对人类动脉粥样硬化中的内皮功能和血管超氧化物生成具有有益作用。