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处于IRIS I-IV期慢性肾病的猫的血浆和红细胞谷胱甘肽过氧化物酶活性、血清硒浓度及血浆总抗氧化能力

Plasma and erythrocyte glutathione peroxidase activity, serum selenium concentration, and plasma total antioxidant capacity in cats with IRIS stages I-IV chronic kidney disease.

作者信息

Krofič Žel M, Tozon N, Nemec Svete A

机构信息

Clinic for Surgery and Small Animal Medicine, University of Ljubljana, Veterinary Faculty, Ljubljana, Slovenia.

出版信息

J Vet Intern Med. 2014 Jan-Feb;28(1):130-6. doi: 10.1111/jvim.12264. Epub 2013 Dec 16.

Abstract

BACKGROUND

Serum selenium concentrations and the activity of plasma glutathione peroxidase (GPx) decrease with the progression of chronic kidney disease (CKD) in human patients. Selenium is considered a limiting factor for plasma GPx synthesis. Plasma total antioxidant capacity (TAC) is decreased in CKD cats in comparison to healthy cats.

HYPOTHESIS

Serum selenium concentrations and plasma and erythrocyte GPx activity in cats with CKD are lower than in healthy cats. Serum selenium concentrations, the activity of enzymes, and plasma TAC progressively decrease with the progression of kidney disease according to IRIS (International Renal Interest Society) classification.

ANIMALS

Twenty-six client-owned cats in IRIS stages I-IV of CKD were compared with 19 client-owned healthy cats.

METHODS

A CBC, serum biochemical profile, urinalysis, plasma and erythrocyte GPx activity, serum selenium concentration, and plasma TAC were measured in each cat.

RESULTS

Cats in IRIS stage IV CKD had a significantly higher (P = .025) activity of plasma GPx (23.44 ± 6.28 U/mL) than cats in the control group (17.51 ± 3.75 U/mL). There were no significant differences in erythrocyte GPx, serum selenium concentration, and plasma TAC, either among IRIS stages I-IV CKD cats or between CKD cats and healthy cats.

CONCLUSIONS AND CLINICAL IMPORTANCE

Erythrocyte GPx activity, serum selenium concentration, and plasma TAC do not change in CKD cats compared with healthy cats. Selenium is not a limiting factor in feline CKD. Increased plasma GPx activity in cats with stage IV CKD suggests induction of antioxidant defense mechanisms. Antioxidant defense systems might not be exhausted in CKD in cats.

摘要

背景

在人类患者中,血清硒浓度和血浆谷胱甘肽过氧化物酶(GPx)活性会随着慢性肾脏病(CKD)的进展而降低。硒被认为是血浆GPx合成的限制因素。与健康猫相比,CKD猫的血浆总抗氧化能力(TAC)降低。

假设

CKD猫的血清硒浓度、血浆和红细胞GPx活性低于健康猫。根据国际肾脏兴趣协会(IRIS)的分类,随着肾脏疾病的进展,血清硒浓度、酶活性和血浆TAC会逐渐降低。

动物

将26只处于IRIS I-IV期CKD的客户拥有的猫与19只客户拥有的健康猫进行比较。

方法

对每只猫进行全血细胞计数、血清生化分析、尿液分析、血浆和红细胞GPx活性、血清硒浓度以及血浆TAC的检测。

结果

IRIS IV期CKD猫的血浆GPx活性(23.44±6.28 U/mL)显著高于对照组猫(17.51±3.75 U/mL)(P = 0.025)。在IRIS I-IV期CKD猫之间以及CKD猫与健康猫之间,红细胞GPx、血清硒浓度和血浆TAC均无显著差异。

结论及临床意义

与健康猫相比,CKD猫的红细胞GPx活性、血清硒浓度和血浆TAC没有变化。硒不是猫CKD的限制因素。IV期CKD猫血浆GPx活性增加表明抗氧化防御机制被诱导。猫CKD中的抗氧化防御系统可能并未耗尽。

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