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容量负荷性心力衰竭犬多形核白细胞化学发光增强。

Increased chemiluminescence of polymorphonuclear leucocytes in dogs with volume overload heart failure.

作者信息

Prasad K, Kalra J, Bharadwaj B

机构信息

Department of Physiology, University of Saskatchewan, Saskatoon, Canada.

出版信息

Br J Exp Pathol. 1989 Aug;70(4):463-8.

Abstract

Polymorphonuclear leucocyte (PMN) stimulation is known to generate oxygen free radicals. Exogenous oxygen free radicals, generated by xanthine and xanthine oxidase, have been implicated in the decrease of cardiac contractility. It is possible that PMN have increased capacity to release oxygen free radicals in failing heart. It was, therefore, decided to investigate PMN chemiluminescence (oxygen free radicals) from blood in dogs with heart failure due to chronic volume overload. The dogs were divided into two groups: (A) normal, six dogs; (B) dogs with mitral insufficiency (MI) of 6-9 months' duration, six dogs. Haemodynamic parameters were recorded to assess cardiac failure. Mixed venous blood was collected to measure PMN chemiluminescence. Stimulation of PMN was initiated by addition of opsonized zymosan and chemiluminescence was monitored using a luminometer. The haemodynamic parameters in dogs with MI showed that these dogs had left ventricular failure. The peak chemiluminescent activity of PMN in blood of dogs with left ventricular failure was approximately four times that in the blood from normal dogs. This increase in chemiluminescence reflects an increase in the generation of oxygen free radicals from PMN in dogs with chronic heart failure. The decrease in the myocardial contractility in cardiac failure might be due to an increase in the oxygen free radicals produced by the PMN.

摘要

已知多形核白细胞(PMN)受刺激会产生氧自由基。黄嘌呤和黄嘌呤氧化酶产生的外源性氧自由基与心脏收缩力下降有关。心力衰竭时PMN释放氧自由基的能力可能增强。因此,决定研究慢性容量超负荷所致心力衰竭犬血液中的PMN化学发光(氧自由基)情况。将犬分为两组:(A)正常犬,6只;(B)二尖瓣关闭不全(MI)持续6 - 9个月的犬,6只。记录血流动力学参数以评估心力衰竭情况。采集混合静脉血以测量PMN化学发光。通过添加调理酵母聚糖启动PMN刺激,并使用发光计监测化学发光。MI犬的血流动力学参数显示这些犬存在左心室衰竭。左心室衰竭犬血液中PMN的化学发光峰值活性约为正常犬血液中的四倍。这种化学发光的增加反映了慢性心力衰竭犬PMN产生氧自由基的增加。心力衰竭时心肌收缩力下降可能是由于PMN产生的氧自由基增加所致。

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