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尿酸转运蛋白1-尿酸氧化酶双敲除小鼠是肾性低尿酸血症和运动诱导的急性肾损伤的实验动物模型。

Urat1-Uox double knockout mice are experimental animal models of renal hypouricemia and exercise-induced acute kidney injury.

作者信息

Hosoyamada Makoto, Tsurumi Yu, Hirano Hidenori, Tomioka Naoko H, Sekine Yuko, Morisaki Takayuki, Uchida Shunya

机构信息

a Department of Human Physiology & Pathology , Faculty of Pharma-Sciences, Teikyo University , Tokyo , Japan.

b Department of Practical Pharmacology , Faculty and Graduate School of Pharmaceutical Sciences, Chiba University , Chiba , Japan.

出版信息

Nucleosides Nucleotides Nucleic Acids. 2016 Dec;35(10-12):543-549. doi: 10.1080/15257770.2016.1143559.

Abstract

Renal hypouricemia (RHUC) is a hereditary disease characterized by a low level of plasma urate but with normal urinary urate excretion. RHUC type 1 is caused by mutations of the urate transporter URAT1 gene (SLC22A12). However, the plasma urate levels of URAT1 knockout mice are no different from those of wild-type mice. In the present study, a double knockout mouse, in which the URAT1 and uricase (Uox) genes were deleted (Urat1-Uox-DKO), were used as an experimental animal model of RHUC type 1 to investigate RHUC and excise-induced acute kidney injury (EIAKI). Mice were given a variable content of allopurinol for one week followed by HPLC measurement of urate and creatinine concentrations in spot urine and blood from the tail. The urinary excretion of urate in Urat1-Uox-DKO mice was approximately 25 times higher than those of humans. With allopurinol, the plasma urate levels of Urat1-Uox-DKO mice were lower than those of Uox-KO mice. There were no differences in the urinary urate excretions between Urat1-Uox-DKO and Uox-KO mice administered with 9 mg allopurinol /100 g feed. In the absence of allopurinol, plasma creatinine levels of some Urat1-Uox-DKO mice were higher than those of Uox-KO mice. Consequently, hypouricemia and normouricosuria may indicate that the Urat1-Uox-DKO mouse administered with allopurinol may represent a suitable animal model of RHUC type 1. Urat1-Uox-DKO mice without allopurinol exhibited acute kidney injury, thus providing additional benefit as a potential animal model for EIAKI. Finally, our data indicate that allopurinol appears to provide prophylactic effects for EIAKI.

摘要

肾性低尿酸血症(RHUC)是一种遗传性疾病,其特征是血浆尿酸水平较低,但尿尿酸排泄正常。1型RHUC是由尿酸转运体URAT1基因(SLC22A12)突变引起的。然而,URAT1基因敲除小鼠的血浆尿酸水平与野生型小鼠并无差异。在本研究中,将URAT1和尿酸酶(Uox)基因均被敲除的双敲除小鼠(Urat1-Uox-DKO)用作1型RHUC的实验动物模型,以研究RHUC和切除诱导的急性肾损伤(EIAKI)。给小鼠喂食不同含量的别嘌呤醇一周,随后通过高效液相色谱法测定小鼠尾尖血和即时尿中的尿酸和肌酐浓度。Urat1-Uox-DKO小鼠的尿尿酸排泄量约为人类的25倍。使用别嘌呤醇后,Urat1-Uox-DKO小鼠的血浆尿酸水平低于Uox基因敲除小鼠。给予9mg别嘌呤醇/100g饲料时,Urat1-Uox-DKO小鼠和Uox基因敲除小鼠的尿尿酸排泄量没有差异。在不使用别嘌呤醇的情况下,一些Urat1-Uox-DKO小鼠的血浆肌酐水平高于Uox基因敲除小鼠。因此,低尿酸血症和尿酸正常尿症可能表明,给予别嘌呤醇的Urat1-Uox-DKO小鼠可能是1型RHUC的合适动物模型。未使用别嘌呤醇的Urat1-Uox-DKO小鼠表现出急性肾损伤,因此作为EIAKI的潜在动物模型具有额外的优势。最后,我们的数据表明,别嘌呤醇似乎对EIAKI具有预防作用。

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