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Establishing Standards for Studying Renal Function in Mice through Measurements of Body Size-Adjusted Creatinine and Urea Levels

机译:通过测量人体大小调节的肌酐和尿素水平建立研究小鼠肾功能的标准

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摘要

Strategies for obtaining reliable results are increasingly implemented in order to reduce errors in the analysis of human and veterinary samples; however, further data are required for murine samples. Here, we determined an average factor from the murine body surface area for the calculation of biochemical renal parameters, assessed the effects of storage and freeze-thawing of C57BL/6 mouse samples on plasmatic and urinary urea, and evaluated the effects of using two different urea-measurement techniques. After obtaining 24 h urine samples, blood was collected, and body weight and length were established. The samples were evaluated after collection or stored at −20°C and −70°C. At different time points (0, 4, and 90 days), these samples were thawed, the creatinine and/or urea concentrations were analyzed, and samples were restored at these temperatures for further measurements. We show that creatinine clearance measurements should be adjusted according to the body surface area, which was calculated based on the weight and length of the animal. Repeated freeze-thawing cycles negatively affected the urea concentration; the urea concentration was more reproducible when using the modified Berthelot reaction rather than the ultraviolet method. Our findings will facilitate standardization and optimization of methodology as well as understanding of renal and other biochemical data obtained from mice.
机译:为了减少人类和兽医样品分析中的错误,越来越多地采用获取可靠结果的策略。但是,鼠样品需要更多的数据。在这里,我们从鼠体表面积中确定了用于计算生化肾参数的平均因子,评估了C57BL / 6小鼠样品对血浆和尿素尿素的贮藏和冻融效果,并评估了使用两种不同的尿素的效果尿素测量技术。在获取24小时尿样后,采集血液,确定体重和身长。收集后评估样品或将其保存在-20°C和-70°C下。在不同的时间点(0、4和90天),将这些样品解冻,分析肌酐和/或尿素的浓度,并在这些温度下恢复样品以进行进一步测量。我们表明,肌酸酐清除率的测量应根据身体表面积进行调整,这是根据动物的体重和体长计算得出的。反复的冻融循环对尿素浓度产生负面影响;当使用改良的Berthelot反应而不是紫外线法时,尿素浓度更可重现。我们的发现将有助于方法的标准化和优化,以及对从小鼠获得的肾脏和其他生化数据的了解。

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