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用于纠正低蛋白血症和高蛋白血症猫血清水分分数钠离子浓度的公式。

Formulae to correct sodium concentrations for serum water fraction in cases of hypo- and hyperproteinemia in cats.

机构信息

Department of Microbiology, Immunology, and Pathology, College of Veterinary Medicine and Biomedical Science, Colorado State University, Fort Collins, CO, USA.

Department of Veterinary Biosciences, Ohio State University College of Veterinary Medicine, Columbus, OH, USA.

出版信息

Vet Clin Pathol. 2020 Mar;49(1):100-105. doi: 10.1111/vcp.12833. Epub 2020 Mar 21.

Abstract

BACKGROUND

Biochemistry analyzers in many high-throughput laboratories use indirect potentiometry to determine serum electrolyte concentrations, which involves a pre-analytical dilution step that may be associated with artifactual increases or decreases in electrolyte concentrations under circumstances of altered serum water fraction (SWF). Severe hypo- and hyperproteinemia, conditions that cause altered SWF, are recognized but under-emphasized causes of falsely measured serum sodium concentrations.

OBJECTIVES

The goals of this study were to determine the average actual SWF (SWF ) and establish formulae to correct serum sodium concentration measured by indirect potentiometry in hypo- and hyperproteinemic cats.

METHODS

Serum samples from 112 feline patients were analyzed for electrolytes (measured by both indirect and direct potentiometry), total protein, albumin, triglycerides, and cholesterol. Each serum sample was also lyophilized to determine the SWF . A feline-specific formula to estimate SWF (SWF ) was developed and evaluated with a multivariable linear model.

RESULTS

The mean SWF in this population of cats was 91.2%, which was significantly different (P < .0001) than the mean (93.9%) calculated using the human estimated formula (SWF ). The formula devised for the SWF better recapitulated the SWF than did the SWF , and the corrected sodium concentrations calculated using the feline formula were better correlated with serum sodium measured by direct potentiometry than those determined using the human formula.

CONCLUSIONS

Application of feline-specific formulae is expected to limit the misinterpretation of electrolyte data from indirect potentiometry when altered SWF occurs. To demonstrate this, a case example of a hypoproteinemic cat is provided.

摘要

背景

许多高通量实验室中的生化分析仪使用间接电位法来测定血清电解质浓度,这涉及到一个分析前稀释步骤,在血清水分分数(SWF)改变的情况下,可能会导致电解质浓度的假性增加或减少。严重的低蛋白血症和高蛋白血症,这些会改变 SWF 的情况,是被认识到但被低估的导致假性测量血清钠浓度的原因。

目的

本研究的目的是确定平均实际 SWF(SWF),并建立用于校正间接电位法测定的低蛋白血症和高蛋白血症猫血清钠浓度的公式。

方法

对 112 例猫的血清样本进行电解质分析(间接和直接电位法测量)、总蛋白、白蛋白、甘油三酯和胆固醇。每个血清样本还进行冻干以确定 SWF。开发了一种用于估计 SWF 的猫特异性公式(SWF),并使用多变量线性模型进行了评估。

结果

本研究猫群的平均 SWF 为 91.2%,与使用人类估计公式(SWF)计算的平均值(93.9%)显著不同(P<0.0001)。为 SWF 设计的公式比 SWF 更好地再现了 SWF,并且使用猫科公式计算的校正钠浓度与直接电位法测量的血清钠浓度相关性更好,而使用人类公式计算的校正钠浓度则较差。

结论

当 SWF 改变时,应用猫科特异性公式有望限制对间接电位法电解质数据的错误解释。为了证明这一点,提供了一个低蛋白血症猫的病例示例。

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