首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Effect of glycine on the cyclooxygenase pathway of the kidney arachidonic acid metabolism in a rat model of metabolic syndrome
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Effect of glycine on the cyclooxygenase pathway of the kidney arachidonic acid metabolism in a rat model of metabolic syndrome

机译:甘氨酸对大鼠代谢综合征模型肾脏花生四烯酸代谢环氧合酶途径的影响

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摘要

The kidneys are organs that can be severely impaired by metabolic syndrome (MS). This is characterized by the association of various pathologies such as hypertension, dyslipidemia, and type-2 diabetes. Glycine, a nonessential amino acid, is known to possess various protective effects in the kidney, such as a decrease in the deterioration of renal function and a reduction of the damage caused by hypoxia. In a rat model of MS, the effect of glycine on the cyclooxygenase (COX) pathway of arachidonic acid (AA) metabolism was studied in isolated perfused kidney. MS was induced in Wistar rats by feeding them a 30% sucrose solution for 16 weeks. The addition of 1% glycine to their drinking water containing 30% sucrose, for 8 weeks, reduced high blood pressure, triglyceride levels, insulin concentration, homeostatis model assessment (HOMA) index, albuminuria, AA concentration in kidney homogenate, renal perfusion pressure, prostaglandin levels, PLA2 expression, and COX isoform expression, compared with MS rats that did not receive the glycine supplement. Glycine receptor expression decreased significantly with MS, but glycine treatment increased it. The results suggest that in the MS model, 1% glycine treatment protects the kidney from damage provoked by the high sucrose consumption, by acting as an anti-inflammatory on the COX pathway of AA metabolism in kidney.
机译:肾脏是可能被代谢综合征(MS)严重损害的器官。这的特征是各种病理的关联,例如高血压,血脂异常和2型糖尿病。甘氨酸是一种非必需氨基酸,已知在肾脏中具有多种保护作用,例如减少肾功能恶化和减少由缺氧引起的损害。在MS的大鼠模型中,研究了甘氨酸对分离的灌注肾脏中花生四烯酸(AA)代谢的环氧合酶(COX)途径的影响。通过向Wistar大鼠喂食30%的蔗糖溶液16周来诱导MS。在其含30%蔗糖的饮用水中添加1%甘氨酸持续8周,可降低高血压,甘油三酸酯水平,胰岛素浓度,稳态模型评估(HOMA)指数,白蛋白尿,肾脏匀浆中的AA浓度,肾脏灌注压,与未接受甘氨酸补充剂的MS大鼠相比,前列腺素水平,PLA2表达和COX亚型表达。 MS可使甘氨酸受体表达显着降低,但甘氨酸处理可使其升高。结果表明,在MS模型中,1%甘氨酸治疗通过对肾脏AA代谢的COX途径起消炎作用,保护肾脏免受高蔗糖消耗引起的损害。

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