Suppr超能文献

使用甘露醇再灌注液保存心肌功能。

Preservation of myocardial function with mannitol reperfusate.

作者信息

Ouriel K, Ginsburg M E, Patti C S, Pearce F J, Hicks G L

出版信息

Circulation. 1985 Sep;72(3 Pt 2):II254-8.

PMID:3928190
Abstract

Reperfusion of the globally ischemic myocardium with mannitol has been shown to preserve myocardial function. However, it remains unclear whether the mechanism of mannitol protection relates to its hyperosmolar or free radical scavenging properties. Three groups of isolated, perfused rabbit hearts underwent 45 min of normothermic ischemia without cardioplegia in an experimental paradigm analogous to the clinical situation of coronary artery thrombosis with subsequent reperfusion. Six hearts were reperfused with an isosmolar solution, eight hearts were reperfused with a mannitol-containing solution (20 mOsm/liter), and five hearts were reperfused with a solution containing additional sodium chloride (10 meq/liter, 20 mOsm/liter) to control for the hyperosmotic effects of mannitol. Left ventricular developed pressure, its derivative dP/dt, and diastolic compliance were all significantly improved in the mannitol-reperfused hearts when compared with the hypertonic saline and control groups (p less than .05). There were no intergroup differences in myocardial edema formation, oxygen consumption, or lactate production. These data indicate that mannitol reperfusion offers significant myocardial protection independent of hyperosmolar properties. Free radical scavenging activity appears to be the most credible explanation for these observations, although confirmation of this mechanism awaits further biochemical and cellular investigation.

摘要

已证明用甘露醇对全心缺血心肌进行再灌注可保护心肌功能。然而,甘露醇保护机制是否与其高渗特性或自由基清除特性相关仍不清楚。在类似于冠状动脉血栓形成并随后再灌注的临床情况的实验范式中,三组离体灌注兔心在无心脏停搏的情况下经历了45分钟的常温缺血。六颗心脏用等渗溶液再灌注,八颗心脏用含甘露醇的溶液(20毫渗摩尔/升)再灌注,五颗心脏用含额外氯化钠(10毫当量/升,20毫渗摩尔/升)的溶液再灌注,以控制甘露醇的高渗效应。与高渗盐水组和对照组相比,甘露醇再灌注的心脏左心室舒张末压、其导数dP/dt和舒张顺应性均显著改善(p<0.05)。心肌水肿形成、氧消耗或乳酸产生方面无组间差异。这些数据表明,甘露醇再灌注提供了显著的心肌保护,与高渗特性无关。自由基清除活性似乎是对这些观察结果最可信的解释,尽管这一机制的证实有待进一步的生化和细胞研究。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验