Combination of N-methyl-1-deoxynojirimycin and ischemic preconditioning markedly reduces the size of myocardial infarcts in rabbits.

D. J. Wu, S. Minatoguchi, Y. Uno, M. Arai, N. Wang, Y. Nishida, K. Hashimoto, Y. Hashimoto, G. Takemura, T. Fujiwara, H. Fujiwara
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引用次数: 5

Abstract

N-methyl-1-deoxynojirimycin (NMDN), an a-glucosidase inhibitor, reduces myocardial infarct size by reducing the glycogenolytic rate through inhibition of the alpha-1,6-glucosidase of glycogen-debranching enzyme in the heart, in addition to possessing an antihyperglycemic action by blocking alpha-1,4-glucosidase in the intestine. Ischemic preconditioning (PC), which markedly reduces the size of the myocardial infarct, is known to reduce the activity of phosphorylase and reduce the glycogenolytic rate. Therefore, it was hypothesized that a combination of pharmacological inhibition of glycogenolysis by an alpha-1,6-glucosidase inhibitor, NMDN, and PC could markedly reduce myocardial infarct size more than NMDN or PC alone. Japanese white rabbits without collateral circulation were subjected to a 30-min coronary occlusion followed by 48-h reperfusion. The infarct sizes as a percentage of area at risk were significantly reduced by pre-ischemic treatment with either 100mg/kg of NMDN or PC of 5 min ischemia and 5 min reperfusion alone (15.9+/-2.0%, n=8, and 10.3+/-1.2%, n=8, respectively) as compared with the control (43.9+/-2.2%, n=8). However, the combination of 100mg/kg of NMDN and PC significantly reduced the infarct size (4.9+/-1.2, n=8) compared with NMDN or PC alone. Another 40 rabbits, also given 100mg of NMDN, PC, NMDN+PC or saline before ischemia (n=10 in each group), were killed for biochemical analysis after 30 min of ischemia. NMDN and PC preserved the glycogen content and attenuated the lactate accumulation, respectively, as compared with the control. However, the combination of NMDN and PC preserved significantly more glycogen and significantly reduced lactate accumulation than either NMDN or PC alone. The combination of NMDN and PC markedly reduced the myocardial infarct size more than either process alone. The marked preservation of glycogen and marked attenuation of lactate accumulation by the combination of NMDN and PC suggest that the mechanism for this effect of NMDN+PC is related to the inhibition of glycogenolysis.
n -甲基-1-脱氧诺吉霉素联合缺血预处理可显著减小家兔心肌梗死面积。
n-甲基-1-脱氧诺吉霉素(NMDN)是一种a-葡萄糖苷酶抑制剂,除了通过阻断α -1,4-葡萄糖苷酶在肠道中具有降糖作用外,还可以通过抑制心脏中α -1,6-葡萄糖苷酶的α -1,6-葡萄糖苷酶来降低糖原溶解率,从而减少心肌梗死面积。缺血预处理(PC)可显著减小心肌梗死面积,降低磷酸化酶活性,降低糖原溶解率。因此,假设α -1,6-葡萄糖苷酶抑制剂、NMDN和PC联合抑制糖原溶解比单独使用NMDN或PC更能显著减少心肌梗死面积。无侧支循环的日本大白兔冠脉闭塞30 min,再灌注48 h。与对照组(43.9+/-2.2%,n=8)相比,100mg/kg NMDN或单独缺血5分钟再灌注5分钟PC的缺血前治疗(分别为15.9+/-2.0%,n=8和10.3+/-1.2%,n=8)显著降低了梗死面积占危险面积的百分比。然而,与单独使用NMDN或PC相比,100mg/kg NMDN和PC联合使用可显著减少梗死面积(4.9+/-1.2,n=8)。另取40只兔,缺血前分别给予NMDN、PC、NMDN+PC或生理盐水100mg(每组10只),缺血30min后处死进行生化分析。与对照相比,NMDN和PC分别保持了糖原含量,降低了乳酸积累。然而,与单独使用NMDN或PC相比,NMDN和PC联合使用可显著保存更多的糖原,并显著减少乳酸积累。NMDN和PC联合治疗比单独治疗更能明显减少心肌梗死面积。NMDN和PC联合使用对糖原的显著保存和乳酸积累的显著衰减表明,NMDN+PC的这种作用机制与抑制糖原分解有关。
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