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首页> 外文期刊>Scandinavian journal of clinical and laboratory investigation. >Standardization of p-creatinine assays and use of lean body mass allow improved prediction of calculated glomerular filtration rate in adults: a new equation.
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Standardization of p-creatinine assays and use of lean body mass allow improved prediction of calculated glomerular filtration rate in adults: a new equation.

机译:对p-肌酐测定法的标准化和瘦体重的使用,可以改善对成人肾小球滤过率的预测值:一个新的方程式。

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摘要

OBJECTIVE: To evaluate the Cockcroft-Gault (CG) equation, using various body weight expressions, and the Sawyer equation in predicting glomerular filtration rate (GFR) using an enzymatic and zero-calibrated Jaffe plasma-creatinine assay, and to derive a new robust equation in adults. MATERIAL AND METHODS: The CG weight measures included total, ideal and adjusted body weight (ABW; lowest of total and ideal) and two lean body mass (LBM) expressions, while the Sawyer equation is based primarily on LBM. Iohexol clearance was used to measure GFR. One derivation set (n = 436; enzymatic assay) was used to evaluate and bias-adjust existing equations when indicated, and to derive a new equation based on plasma-creatinine, age, gender and the body weight measure yielding the best adjusted R2. All equations were then validated in a separate set (n = 414; Jaffe assay). RESULTS: The existing equations all performed similarly in both sets. Prediction errors of equations based on LBM showed no correlation with BMI. The CGABW and Sawyer equations performed best. The new equation with LBM yielded the highest adjusted R2. In the combined set (n = 850), its accuracy (86 %/98 % of estimates within 30 %/50 % of measured GFR) was significantly better than for the CGABW (79 %/95 %) and Sawyer equations (79 %/93 %) (p<0.001) for each 30 mL/min GFR subgroup within +/-30 % and +/-50 %, except within +/-30 % >120 mL/min. Prediction error did not correlate with BMI, age or gender. CONCLUSION: A new creatinine-based equation derived in a mainly Caucasian patient sample is a better predictor of GFR than CG-type equations irrespective of the body weight measure used or, if bias-adjusted, when using zero-calibrated creatinine assays.
机译:目的:使用各种体重表达法评估Cockcroft-Gault(CG)方程,并使用酶促和零校准的Jaffe血浆肌酐测定法预测Sawyer方程预测肾小球滤过率(GFR),并推导新的稳健性成人方程。材料和方法:CG体重测量包括总体重,理想体重和调整后的体重(ABW;总和理想的最低体重)和两个瘦体重(LBM)表达式,而Sawyer方程主要基于LBM。碘海醇清除率用于测量GFR。一个推导集(n = 436;酶法测定)用于评估并根据需要对现有方程式进行偏差调整,并基于血浆肌酐,年龄,性别和体重测量值得出一个新的方程式,从而得出最佳的调整后R2。然后在单独的一组中验证所有方程(n = 414; Jaffe分析)。结果:现有方程组在两组中的表现均相似。基于LBM的方程的预测误差与BMI无关。 CGABW和Sawyer方程的效果最佳。具有LBM的新方程式产生了最高的调整后R2。在组合组(n = 850)中,其准确性(估计值的86%/ 98%,在所测GFR的30%/ 50%之内)显着优于CGABW(79%/ 95%)和Sawyer方程(79%)对于每个30 mL / min的GFR亚组,在+/- 30%和+/- 50%的范围内为/ 93%(p <0.001),但在+/- 30%的> 120 mL / min范围内除外。预测误差与BMI,年龄或性别无关。结论:无论是使用体重测量还是使用零校正的肌酐测定,如果采用体重测量,或在进行偏倚调整后,在白种人患者样本中得出的新的基于肌酐的方程都比CG型方程更好地预测GFR。

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