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实验性缺血/再灌注模型损害了肾脏近端肾小管细胞中的内源性大麻素信号转导和 Na/K ATP 酶的表达和活性。

Experimental ischemia/reperfusion model impairs endocannabinoid signaling and Na/K ATPase expression and activity in kidney proximal tubule cells.

机构信息

Instituto de Biofísica Carlos Chagas Filho, UFRJ, Rio de Janeiro, Brazil; Lab. Neuroquímica, Instituto Nacional de Ciência e Tecnologia em Neurociência Translacional, Brazil; CAPES Foundation, Ministry of Education of Brazil, Brasilia DF 70.040-020, Brazil.

Endocannabinoid Research Group, Istituto di Chimica Biomolecolare, CNR, Pozzuoli (Naples), Italy.

出版信息

Biochem Pharmacol. 2018 Aug;154:482-491. doi: 10.1016/j.bcp.2018.06.005. Epub 2018 Jun 8.

Abstract

LLC-PK1 cells, an immortalized epithelial cell line derived from pig renal proximal tubules, express all the major players of the endocannabinoid system (ECS) such as CB1, CB2 and TRPV1 receptors, as well as the main enzymes involved in the biosynthesis and degradation of the major endocannabinoids named 2-arachidonoylglycerol, 2-AG and anandamide, AEA. Here we investigated whether the damages caused by ischemic insults either in vitro using LLC-PK1 cells exposed to antimycin A (an inductor of ATP-depletion) or in vivo using Wistar rats in a classic renal ischemia and reperfusion (IR) protocol, lead to changes in AEA and 2-AG levels, as well as altered expression of genes from the main enzymes involved in the regulation of the ECS. Our data show that the mRNA levels of the CB1 receptor gene were downregulated, while the transcript levels of monoacylglycerol lipase (MAGL), the main 2-AG degradative enzyme, were upregulated in LLC-PK1 cells after IR model. Accordingly, IR was accompanied by a significant reduction in the levels of 2-AG and AEA, as well as of the two endocannabinoid related molecules, oleoylethanolamide (OEA) and palmitoylethanolamide (PEA) in LLC-PK1 cells. In kidney cortex homogenates, only AEA levels were significantly decreased. In addition, we found that in both the in vitro and in vivo model IR caused a reduction in the expression and activity of the Na/K ATPase. These changes were reversed by the CB1/CB2 agonist WIN55,212, in a CB1-receptor dependent manner in the LLC-PK1 IR model. In conclusion, the ECS and Na/K ATPase are down-regulated following IR in LLC-PK1 cells and rat kidney. We suggest that CB1 agonists might represent a potential strategy to reverse the consequences of IR injury in kidney tissues.

摘要

猪肾近端小管永生化上皮细胞系 LLC-PK1 表达所有主要的内源性大麻素系统 (ECS) 成员,如 CB1、CB2 和 TRPV1 受体,以及参与主要内源性大麻素 2-花生四烯酸甘油酯 (2-AG)、花生四烯酸乙醇胺 (AEA) 和大麻素降解的主要酶。在这里,我们研究了缺血性损伤是否会导致 LLC-PK1 细胞(通过暴露于安密妥 A[一种三磷酸腺苷耗竭诱导剂]在体外)或 Wistar 大鼠(在经典的肾缺血再灌注 [IR] 模型中)的损伤,导致 AEA 和 2-AG 水平的变化,以及参与 ECS 调节的主要酶的基因表达的改变。我们的数据表明,在 LLC-PK1 细胞中,CB1 受体基因的 mRNA 水平下调,而单酰基甘油脂肪酶(MAGL,主要的 2-AG 降解酶)的转录水平上调。相应地,IR 伴随着 2-AG 和 AEA 水平以及两种内源性大麻素相关分子油酸乙醇酰胺 (OEA) 和棕榈酸乙醇酰胺 (PEA) 的显著降低。在 LLC-PK1 细胞中。在肾皮质匀浆中,只有 AEA 水平显著降低。此外,我们发现,在体外和体内模型中,IR 导致 Na/K ATPase 的表达和活性降低。在 LLC-PK1 IR 模型中,CB1/CB2 激动剂 WIN55,212 以 CB1 受体依赖性方式逆转了这些变化。总之,在 LLC-PK1 细胞和大鼠肾脏中,IR 后 ECS 和 Na/K ATPase 下调。我们认为,CB1 激动剂可能是逆转肾脏组织 IR 损伤后果的一种潜在策略。

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