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遗传性高血压性心肌病大鼠的铜缺乏:心电图、功能及超微结构方面

Copper deficiency in a genetically hypertensive cardiomyopathic rat: electrocardiogram, functional and ultrastructural aspects.

作者信息

Medeiros D M, Liao Z, Hamlin R L

机构信息

Department of Human Nutrition and Food Management, Ohio State University, Columbus 43210-1295.

出版信息

J Nutr. 1991 Jul;121(7):1026-34. doi: 10.1093/jn/121.7.1026.

Abstract

The effect of copper deficiency on cardiac function and structure was studied in a strain of rats (SHHS/Mcc-cp) known to develop cardiac failure as adults. Restriction of dietary copper (less than or equal to 1 mg/kg vs. 6 mg/kg in adequate diets) at weaning in both sexes for a 6-wk period produced cardiac hypertrophy. Male rats developed more severe copper-deficiency symptoms than their female counterparts. In both sexes of copper-deficient rats, there was an increase in cardiac length, width, free ventricular wall thickness and septum thickness. Electrocardiographic tracings revealed greater QRS height among male copper-deficient rats. Heart rate also was substantially reduced in this group. The increased volume of myocardium occupied by mitochondria in the copper-deficient male rats might result in increased electrical resistance that would increase the QRS height; hypertrophy or anemia also could be contributory. Some male copper-deficient rats had prolongation of the QRS in a bundle branch block pattern. Maximal rates of rise and fall for left ventricular pressure were reduced in male copper-deficient rats. The gross histology indicated that this type of heart failure was more concentric than eccentric. The copper-deficient male rat may serve as a useful model for studying the concentric cardiac hypertrophy that occurs in humans.

摘要

在一种成年后会发生心力衰竭的大鼠品系(SHHS/Mcc-cp)中,研究了铜缺乏对心脏功能和结构的影响。断奶时对两性大鼠进行为期6周的膳食铜限制(低于或等于1毫克/千克,而正常饮食为6毫克/千克)会导致心脏肥大。雄性大鼠出现的铜缺乏症状比雌性大鼠更严重。在铜缺乏的两性大鼠中,心脏长度、宽度、心室游离壁厚度和室间隔厚度均增加。心电图显示,雄性铜缺乏大鼠的QRS波高度更高。该组大鼠的心率也大幅降低。铜缺乏雄性大鼠心肌中线粒体所占体积增加,可能导致电阻增加,从而使QRS波高度增加;肥大或贫血也可能是促成因素。一些雄性铜缺乏大鼠出现束支传导阻滞型QRS波延长。雄性铜缺乏大鼠左心室压力的最大上升和下降速率降低。大体组织学表明,这种类型的心力衰竭更呈向心性而非离心性。铜缺乏雄性大鼠可能是研究人类发生的向心性心脏肥大的有用模型。

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