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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Vitamin B complex mitigates cardiac dysfunction in high‐methionine diet‐induced hyperhomocysteinemia
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Vitamin B complex mitigates cardiac dysfunction in high‐methionine diet‐induced hyperhomocysteinemia

机译:维生素B复杂缓解高蛋氨酸饮食诱导的高红细胞血症的心脏功能障碍

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摘要

Summary This research is designed to test the hypothesis that elevated homocysteine (Hcy) levels in vivo, caused by a deficit in vitamin B complex, promote changes in cardiac function and redox status that lead to heart failure. In order to conduct the study, we used adult male Wistar albino rats (n?=?30; 4?weeks old; 100?±?15?g body weight). Hyperhomocysteinaemia ( HH cy) in these animals was achieved by dietary manipulation. For 4?weeks, the animals were fed with a standard rodent chow (control, CF ), a diet enriched in methionine with no deficiency in B vitamins (i.e., folic acid, B6 and B12) ( HMNV ) or a diet enriched in methionine and deficient in B vitamins ( HMLV ). After 28?days of dietary manipulation, all animals were killed. The rat hearts were isolated and retrogradely perfused according to the Langendorff technique at a gradually increasing perfusion pressure. We found a negative correlation between elevated serum Hcy and total body and heart weight. The maximum rate of left ventricular pressure development was significantly increased in the HMNV group compared with in the other groups. Systolic left ventricular pressure was significantly changed in all groups. HH cy induces remodelling of the cardiac tissues, as moderate HH cy is associated with more prominent interstitial and perivascular fibrosis. Our results suggest that a high methionine diet without vitamin B complex causes profound negative effects associated with HH cy.
机译:发明内容本研究旨在测试由维生素B复合物的缺陷引起的体内升高的半胱氨酸(Hcy)水平的假设,促进了导致心力衰竭的心功能和氧化还原状态的变化。为了进行这项研究,我们使用成人雄性Wistar白化大鼠(n?= 30; 4?周龄; 100?±15?g体重)。通过膳食操作实现这些动物中的HyperHomysteina血症(HH CY)。对于4个星期,将动物用标准的啮齿动物食物(对照,CF)喂食,富含蛋氨酸的饮食,在B维生素(即叶酸,B6和B12)(HMNV)中没有缺乏缺乏症或富含蛋氨酸的饮食缺乏B维生素(HMLV)。 28岁以下的饮食操作后,所有动物都被杀死。在逐渐增加的灌注压力下,根据Langendorff技术分离和逆行地灌注大鼠心脏。我们发现血清Hcy和全身和心脏重量之间的负相关性。与其他组相比,HMNV组中左心室压力发育的最大速率显着增加。所有组中,收缩左心室压力都显着改变。 HH Cy诱导心脏组织的重塑,如中等HH Cy与更突出的间质和血管纤维化有关。我们的研究结果表明,没有维生素B复合物的高甲硫氨酸饮食会导致与HH Cy相关的深刻负面影响。

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