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4-吡啶酮-3-甲酰胺核糖核苷(4PYR)——灌注大鼠心脏中的潜在心血管毒素的作用

Effect of 4-pyridone-3-carboxamide ribonucleoside (4PYR)-potential cardiovascular toxin in perfused rat heart.

作者信息

Romaszko Pawel, Slominska Ewa M, Smolenski Ryszard T

机构信息

a Department of Biochemistry , Medical University of Gdansk , Gdansk , Poland.

出版信息

Nucleosides Nucleotides Nucleic Acids. 2014;33(4-6):333-7. doi: 10.1080/15257770.2013.872793.

Abstract

We recently described a new nicotinamide derivative: 4-pyridone-3-carboxamide ribonucleoside (4PYR) and its conversion to intracellular metabolites (4PYR monophosphate: 4PYMP and 4PYR adenylate diphosphate: 4PYRAD). The aim of this study was to clarify the metabolism and physiological effects of brief exposure to 4PYR in perfused rat heart. Rat hearts were perfused in Langendorff mode. After 15 min equilibration, 100 μM 4PYR (or solvent in controls) was infused into coronary circulation for 5 min. Coronary flow was recorded with electromagnetic flow meter and left ventricular mechanical function was assessed with intraventricular baloon by constructing pressure-volume relations. After perfusion hearts were freeze-clamped and analyzed using HPLC for phosphocreatine, creatine, ATP with metabolites as well as 4PYR metabolites. 4PYR infused into the coronary circulation was rapidly converted in the heart into 4PYMP and 4PYRAD with concentrations reaching 85.6±46.9 and 43.9±6.4 nmol/g dry weight, respectively, while control concentrations were below 20 nmol/g. 4PYR had no effect on baseline coronary flow (11.9±2.3 ml/min versus 11.0±2.7 ml/min in control) or stimulated by shear stress (23.2±4.5 ml/min versus 23.1±5.2 ml/min in control). Both systolic and diastolic left ventricular mechanical function were not affected by 4PYR. No difference was noted for heart rate. Myocardial concentrations of ATP or phosphocreatine were also not affected by 4PYR. We conclude that 4PYR has no immediate effect on coronary endothelium or cardiomyocyte functions such as coronary flow, rhythm, diastolic properties, or contractility despite rapid incorporation into intracellular metabolites. This study also indicates the lack of effect on purinergic receptors.

摘要

我们最近描述了一种新的烟酰胺衍生物

4-吡啶酮-3-羧酰胺核糖核苷(4PYR)及其向细胞内代谢物的转化(4-吡啶酮-3-羧酰胺核糖核苷单磷酸:4PYMP和4-吡啶酮-3-羧酰胺核糖核苷腺苷二磷酸:4PYRAD)。本研究的目的是阐明在灌注大鼠心脏中短暂暴露于4PYR的代谢情况和生理效应。大鼠心脏以Langendorff模式灌注。平衡15分钟后,将100μM 4PYR(或对照组中的溶剂)注入冠状动脉循环5分钟。用电磁流量计记录冠状动脉血流量,并通过构建压力-容积关系用室内气囊评估左心室机械功能。灌注后,将心脏冷冻钳夹并用高效液相色谱法分析磷酸肌酸、肌酸、ATP及其代谢物以及4PYR代谢物。注入冠状动脉循环的4PYR在心脏中迅速转化为4PYMP和4PYRAD,浓度分别达到85.6±46.9和43.9±6.4 nmol/g干重,而对照浓度低于20 nmol/g。4PYR对基础冠状动脉血流量(11.9±2.3 ml/min,对照组为11.0±2.7 ml/min)或剪切应力刺激的血流量(23.2±4.5 ml/min,对照组为23.1±5.2 ml/min)均无影响。4PYR对左心室收缩和舒张机械功能均无影响。心率无差异。4PYR对心肌ATP或磷酸肌酸浓度也无影响。我们得出结论,尽管4PYR能迅速掺入细胞内代谢物,但它对冠状动脉内皮或心肌细胞功能(如冠状动脉血流量、节律、舒张特性或收缩性)没有直接影响。本研究还表明其对嘌呤能受体没有影响。

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