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首页> 外文期刊>The Journal of Thoracic and Cardiovascular Surgery >Nitroglycerin as a nitric oxide donor accelerates lipid peroxidation but preserves ventricular function in a canine model of orthotopic heart transplantation.
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Nitroglycerin as a nitric oxide donor accelerates lipid peroxidation but preserves ventricular function in a canine model of orthotopic heart transplantation.

机译:硝酸甘油作为一氧化氮供体,可在原位心脏移植的犬模型中加速脂质过氧化,但保留心室功能。

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BACKGROUND: Nitric oxide has cardioprotective effects through several mechanisms. However, nitric oxide may have deleterious effects in the presence of superoxide because it is converted to peroxynitrite, which then initiates lipid peroxidation. Using a canine model of orthotopic heart transplantation, we examined whether adding an organic nitric oxide donor, nitroglycerin, to preservation solution elicits lipid peroxidation after reperfusion and causes deleterious effects on coronary endothelial function and left ventricular function. Methods and results: The donor heart was preserved for 24 hours in cold University of Wisconsin solution with nitroglycerin (0.1 mg/mL) supplementation (group NTG, n = 8) or in standard University of Wisconsin solution (group C, n = 8). After reperfusion, changes of coronary resistance were measured during the infusion of acetylcholine (0.1 mg/min) and of sodium nitroprusside (1 mg/min), and percent coronary relaxation was calculated. Left ventricular function was evaluated by pressure-volume relations with the use of a conductance catheter, thereby deriving the slopes of end-systolic pressure-volume relation, stroke work-end-diastolic volume relation, and maximum rate of change of left ventricular pressure-end-diastolic volume relation. Serum lipid peroxide level was measured. Percent coronary relaxation was similar for the 2 groups. The slopes of end-systolic pressure-volume relation, stroke work-end-diastolic volume relation, and maximum rate of change of left ventricular pressure-end-diastolic volume relation in group NTG were significantly higher than those in group C. On the other side, serum lipid peroxide level in group NTG was significantly higher than that in group C. CONCLUSIONS: Nitroglycerin may have detrimental effects evidenced by the increase in lipid peroxidation, which implied peroxynitrite formation. However, the overall effect of nitroglycerin was cardioprotective. Although the exact mechanism is yet to be clarified, the superb cardioprotective effect of nitroglycerin overwhelms the exaggeration of lipid peroxidation.
机译:背景:一氧化氮通过多种机制具有心脏保护作用。但是,一氧化氮在超氧化物的存在下可能具有有害作用,因为一氧化氮会转化为过氧亚硝酸盐,然后引发脂质过氧化。使用原位心脏移植的犬模型,我们检查了在保存液中添加有机一氧化氮供体硝酸甘油是否会引起再灌注后脂质过氧化,并对冠状动脉内皮功能和左心室功能造成有害影响。方法和结果:供体心脏在补充有硝酸甘油(0.1 mg / mL)的威斯康星大学冷溶液(NTG组,n = 8)或标准的威斯康星大学溶液(C组,n = 8)中保存24小时。 。再灌注后,在输注乙酰胆碱(0.1 mg / min)和硝普钠(1 mg / min)的过程中测量冠状动脉阻力的变化,并计算冠状动脉舒张百分比。使用电导导管通过压力-容积关系评估左心室功能,从而得出收缩末期压力-容积关系,中风功-舒张末期容积关系以及左心室压力最大变化率的斜率。舒张末期容积关系。测量血清脂质过氧化物水平。两组的冠状动脉松弛百分比相似。 NTG组的收缩末期压力-容积关系,中风功-舒张末期容积关系和左室压力-舒张末期容积最大变化率的斜率显着高于C组。因此,NTG组的血清脂质过氧化物水平显着高于C组。结论:硝酸甘油可能具有有害作用,其表现为脂质过氧化作用的增加,这暗示过氧亚硝酸盐的形成。但是,硝酸甘油的整体作用是心脏保护性的。尽管确切的机制尚待阐明,但硝酸甘油的出色心脏保护作用使脂质过氧化作用的夸张变得不堪重负。

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