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2-花生四烯酸甘油酯,一种内源性大麻素受体激动剂,在实验性胆汁淤积性肝病发展过程中大鼠的各种组织中的情况。

2-Arachidonoylglycerol, an endogenous cannabinoid receptor agonist, in various rat tissues during the evolution of experimental cholestatic liver disease.

作者信息

Avraham Yosefa, Magen Iddo, Zolotarev Olga, Vorobiav Lia, Nachmias Avital, Pappo Orit, Ilan Yaron, Berry Elliot M, Ackerman Zvi

机构信息

Department of Human Nutrition and Metabolism, Braun School of Public Health, Hadassah-Hebrew University Medical School, Jerusalem, Israel.

出版信息

Prostaglandins Leukot Essent Fatty Acids. 2008 Jul-Aug;79(1-2):35-40. doi: 10.1016/j.plefa.2008.07.003. Epub 2008 Sep 3.

Abstract

BACKGROUND/AIM: Changes in tissue levels of 2-arachidonoylglycerol (2-AG), an endocannabinoid, during the evolution of bile duct ligation (BDL) may indicate that endocannabinoids have a role in the hemodynamic changes that occur in this condition.

METHODS

2-AG levels, in various organs and vascular beds of BDL rats, 2 and 4 weeks post surgery, were determined. Untouched and sham-operated (SO) rats were used as controls.

RESULTS

2-AG content of a specific organ was not a static finding and depended on the rat's age, the time from the surgical procedure and the type of procedure. The most pronounced changes were observed in BDL rats 4 weeks post surgery. In these rats, hepatic, pulmonary, cardiac and renal medullary and papillary 2-AG levels were highest observed. No changes in splenic, aortic and renal cortical 2-AG levels were observed. In addition a stepwise increase in 2-AG levels from the cortex to the papilla was detected and was followed by a decrease in creatinine clearance.

CONCLUSIONS

2-AG probably has a role in the pathophysiologic changes in the liver, heart, lung and kidney that follows BDL.

摘要

背景/目的:内源性大麻素2-花生四烯酸甘油酯(2-AG)在胆管结扎(BDL)过程中组织水平的变化可能表明内源性大麻素在这种情况下发生的血流动力学变化中起作用。

方法

测定术后2周和4周时BDL大鼠各器官和血管床中的2-AG水平。未处理和假手术(SO)大鼠用作对照。

结果

特定器官的2-AG含量不是一个固定值,它取决于大鼠的年龄、手术时间和手术类型。术后4周的BDL大鼠中观察到最明显的变化。在这些大鼠中,观察到肝脏、肺、心脏以及肾髓质和乳头的2-AG水平最高。脾脏、主动脉和肾皮质的2-AG水平未观察到变化。此外,检测到从皮质到乳头的2-AG水平呈逐步升高,随后肌酐清除率下降。

结论

2-AG可能在BDL后的肝脏、心脏、肺和肾脏的病理生理变化中起作用。

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