Interdisciplinary Research Center, Catholic University of Leuven, Kortrijk Campus, Etienne Sabbelaan 53, Kortrijk, Belgium.
Pediatr Nephrol. 2010 May;25(5):927-34. doi: 10.1007/s00467-009-1389-1. Epub 2009 Dec 15.
The Schwartz formula (eGFR = kL/Scr, with k = 0.55) to determine the estimated glomerular filtration rate (eGFR) in children with chronic kidney disease (CKD), based on length (L) and serum creatinine (Scr) has recently been updated for enzymatic serum creatinine concentrations, resulting in k = 0.413. Based on a meta-analysis, we evaluated the validity of this updated equation and other published equations for healthy children. This is the first time that publicly available data for healthy children of uncorrected and body surface area (BSA)-corrected median GFR have been combined with median serum creatinine values and median lengths and weights from different sources in the literature to evaluate several statistical models to estimate GFR in children. For enzymatic serum creatinine, we show that the simple model for uncorrected GFR (uGFR = k'L(3)/Scr, with k' = 1.32 x 10(-5)) and the BSA-corrected GFR (cGFR = kL/Scr, analogous to the Schwartz formula), with an important age-dependent adaptation for k (k = 0.0414 x 1n (Age) + 0.3018), correlate extremely well with chromium-51-ethylenediamine tetra-acetic acid ((51)Cr-EDTA) data for children between 1 month and 14 years of age. With this age-dependent modification for k, presented here, the simple bedside calculation tool derived by Schwartz can be used for screening all children for CKD. When height information is not available, the Lund-Malmö equation is an excellent alternative.
基于酶法血清肌酐浓度,最近对儿童慢性肾脏病(CKD)患者基于身高(L)和血清肌酐(Scr)的 Schwartz 公式(eGFR=kL/Scr,k=0.55)进行了更新,得出 k=0.413。基于荟萃分析,我们评估了该更新公式和其他已发表公式在健康儿童中的有效性。这是首次将健康儿童未经校正和体表面积(BSA)校正的中位数肾小球滤过率(GFR)的公开可用数据与来自文献中不同来源的中位数血清肌酐值和中位数身高及体重相结合,以评估几种统计模型来估计儿童的 GFR。对于酶法血清肌酐,我们发现未经校正 GFR(uGFR=k'L(3)/Scr,k'=1.32×10(-5))和 BSA 校正 GFR(cGFR=kL/Scr,类似于 Schwartz 公式)的简单模型与铬-51-乙二胺四乙酸((51)Cr-EDTA)数据相关性极好,适用于 1 个月至 14 岁儿童。使用此处介绍的这种 k 的年龄依赖性修正,Schwartz 提出的简单床边计算工具可用于筛查所有儿童的 CKD。当身高信息不可用时,Lund-Malmö 方程是一个极好的替代方法。