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肾特异性敲除多药耐药相关蛋白 2 不会加重大鼠急性环孢素 A 肾毒性。

Kidney-specific deletion of multidrug resistance-related protein 2 does not aggravate acute cyclosporine A nephrotoxicity in rats.

机构信息

Institute of Physiology, University of Greifswald, Germany.

出版信息

Pharmacogenet Genomics. 2012 Jun;22(6):408-20. doi: 10.1097/FPC.0b013e32834a9bfd.

Abstract

OBJECTIVE

Multidrug resistance-related protein 2 (Mrp2) is expressed in apical membranes of renal proximal tubular cells and contributes to the renal secretion of cyclosporine A (CsA). Mrp2⁻/⁻ deficiency may lead to local renal CsA accumulation. We investigated whether kidney-specific Mrp2 deficiency enhances acute CsA nephrotoxicity in rats.

METHODS

Kidney-specific Mrp2 deletion was achieved by bilateral nephrectomy and transplantation of a congenic Mrp2-deficient kidney into wild-type recipients. Controls received a wild-type kidney. Animals were treated with CsA (10 or 30 mg/kg/day) for 7 days. Renal hemodynamics and renal cortical mRNA expression profile, oxidative stress, and the abundance of multidrug resistance protein 1 (Mdr1) and Mrp2 were assessed.

RESULTS

CsA accumulation and CsA-induced reduction in glomerular filtration rate were similar in wild-type and Mrp2⁻/⁻ kidneys. Renal vascular resistance and agonist-induced renal vascular responses were similar in both groups. A PCR array on 84 genes involved in the biotransformation and antioxidant defense revealed increased CsA-induced mRNA expression of genes involved in oxidative and metabolic stress, inflammation, and apoptosis. This gene expression pattern was similar in wild-type and Mrp2⁻/⁻ kidneys. CsA increased the renal cortical oxidized glutathione, did not affect xanthine oxidase-dependent superoxide formation, and decreased renal cortical NADPH oxidase-dependent superoxide formation. Furthermore, CsA increased Mdr1 protein abundance to a greater extent in Mrp2⁻/⁻ than in wild-type kidneys.

CONCLUSION

Mrp2 is not critical for renal CsA disposition and its deficiency does not enhance acute CsA nephrotoxicity. The high Mdr1 abundance may at least in part prevent exaggerated CsA accumulation in Mrp2⁻/⁻ kidneys.

摘要

目的

多药耐药相关蛋白 2(Mrp2)表达于肾近端小管细胞的顶膜,有助于环孢素 A(CsA)的肾分泌。Mrp2⁻/⁻缺乏可能导致局部肾 CsA 蓄积。我们研究了肾特异性 Mrp2 缺乏是否会增强大鼠急性 CsA 肾毒性。

方法

通过双侧肾切除术和将同源性 Mrp2 缺陷肾移植到野生型受者中来实现肾特异性 Mrp2 缺失。对照组接受野生型肾。动物用 CsA(10 或 30mg/kg/天)治疗 7 天。评估肾血流动力学和肾皮质 mRNA 表达谱、氧化应激以及多药耐药蛋白 1(Mdr1)和 Mrp2 的丰度。

结果

CsA 蓄积和 CsA 诱导的肾小球滤过率降低在野生型和 Mrp2⁻/⁻肾脏中相似。两组的肾血管阻力和激动剂诱导的肾血管反应相似。涉及生物转化和抗氧化防御的 84 个基因的 PCR 阵列显示,与氧化和代谢应激、炎症和细胞凋亡相关的基因的 CsA 诱导的 mRNA 表达增加。这种基因表达模式在野生型和 Mrp2⁻/⁻肾脏中相似。CsA 增加了肾皮质氧化型谷胱甘肽,不影响黄嘌呤氧化酶依赖性超氧化物形成,并且减少了肾皮质 NADPH 氧化酶依赖性超氧化物形成。此外,CsA 增加了 Mrp2⁻/⁻肾脏中 Mdr1 蛋白的丰度,超过了野生型肾脏。

结论

Mrp2 对肾 CsA 处置不是关键的,其缺乏不会增强急性 CsA 肾毒性。高 Mdr1 丰度至少部分防止了 Mrp2⁻/⁻肾脏中 CsA 的过度蓄积。

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