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乙酰左旋肉碱和奥芬可卡因对链脲佐菌素诱导的雄性 Wistar 大鼠糖尿病心脏泵功能的影响。

Acetyl-l-carnitine and oxfenicine on cardiac pumping mechanics in streptozotocin-induced diabetes in male Wistar rats.

机构信息

Department of Surgery, National Taiwan University Hospital, Taipei, Taiwan.

出版信息

PLoS One. 2013 Jul 26;8(7):e69977. doi: 10.1371/journal.pone.0069977. Print 2013.

Abstract

INTRODUCTION

In the treatment of patients with diabetes, one objective is an improvement of cardiac metabolism to alleviate the left ventricular (LV) function. For this study, we compared the effects of acetyl-l-carnitine (one of the carnitine derivatives) and of oxfenicine (a carnitine palmitoyltransferase-1 inhibitor) on cardiac pumping mechanics in streptozotocin-induced diabetes in male Wistar rats, with a particular focus on the pressure-flow-volume relationship.

METHODS

Diabetes was induced by a single tail vein injection of 55 mg kg(-1) streptozotocin. The diabetic animals were treated on a daily basis with either acetyl-L-carnitine (1 g L(-1) in drinking water) or oxfenicine (150 mg kg(-1) by oral gavage) for 8 wk. They were also compared with untreated age-matched diabetic controls. LV pressure and ascending aortic flow signals were recorded to calculate the maximal systolic elastance (E max) and the theoretical maximum flow (Q max). Physically, E max reflects the contractility of the myocardium as an intact heart, whereas Q max has an inverse relationship with the LV internal resistance.

RESULTS

When comparing the diabetic rats with their age-matched controls, the cardiodynamic condition was characterized by a decline in E max associated with the unaltered Q max. Acetyl-l-carnitine (but not oxfenicine) had reduced cardiac levels of malondialdehyde in these insulin-deficient animals. However, treating with acetyl-l-carnitine or oxfenicine resulted in an increase in E max, which suggests that these 2 drugs may protect the contractile status from deteriorating in the diabetic heart. By contrast, Q max showed a significant fall after administration of oxfenicine, but not with acetyl-L-carnitine. The decrease in Q max corresponded to an increase in total vascular resistance when treated with oxfenicine.

CONCLUSIONS

Acetyl-l-carnitine, but not oxfencine, optimizes the integrative nature of cardiac pumping mechanics by preventing the diabetes-induced deterioration in myocardial intrinsic contractility associated with unaltered LV internal resistance.

摘要

简介

在糖尿病患者的治疗中,一个目标是改善心脏代谢,以减轻左心室(LV)功能。为此,我们比较了乙酰左旋肉碱(肉碱衍生物之一)和奥芬尼辛(肉碱棕榈酰转移酶-1 抑制剂)对链脲佐菌素诱导的雄性 Wistar 大鼠糖尿病的心脏泵血力学的影响,特别关注压力-流量-容积关系。

方法

通过尾静脉单次注射 55mg/kg 链脲佐菌素诱导糖尿病。糖尿病动物每天用乙酰左旋肉碱(饮用水中 1g/L)或奥芬尼辛(口服 150mg/kg)治疗 8 周。并与未经治疗的同龄糖尿病对照组进行比较。记录 LV 压力和升主动脉流量信号,计算最大收缩弹性(E max)和理论最大流量(Q max)。从物理上看,E max 反映了完整心脏的心肌收缩性,而 Q max 与 LV 内阻力呈反比关系。

结果

与同龄对照组相比,糖尿病大鼠的心脏动力学特征是 E max 下降,而 Q max 不变。乙酰左旋肉碱(而非奥芬尼辛)降低了这些胰岛素缺乏动物的心脏丙二醛水平。然而,用乙酰左旋肉碱或奥芬尼辛治疗可使 E max 增加,这表明这两种药物可防止糖尿病心脏的收缩状态恶化。相比之下,奥芬尼辛治疗后 Q max 显著下降,但乙酰左旋肉碱则不然。奥芬尼辛治疗后 Q max 的下降与总血管阻力的增加相对应。

结论

乙酰左旋肉碱而非奥芬尼辛可通过防止糖尿病引起的心肌内在收缩性恶化而保持 LV 内部阻力不变,从而优化心脏泵血力学的整体性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fa6/3724909/deceeee4e65b/pone.0069977.g001.jpg

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