Imai Enyu, Horio Masaru, Nitta Kosaku, Yamagata Kunihiro, Iseki Kunitoshi, Hara Shigeko, Ura Nobuyuki, Kiyohara Yutaka, Hirakata Hideki, Watanabe Tsuyoshi, Moriyama Toshiki, Ando Yasuhiro, Inaguma Daiki, Narita Ichiei, Iso Hiroyasu, Wakai Kenji, Yasuda Yoshinari, Tsukamoto Yusuke, Ito Sadayoshi, Makino Hirofumi, Hishida Akira, Matsuo Seiichi
Department of Nephrology, Osaka University Graduate School of Medicine, Suita, Osaka 565-0871, Japan.
Clin Exp Nephrol. 2007 Mar;11(1):41-50. doi: 10.1007/s10157-006-0453-4. Epub 2007 Mar 28.
Accurate estimation of the glomerular filtration rate (GFR) is crucial for the detection of chronic kidney disease (CKD). In clinical practice, GFR is estimated from serum creatinine using the Modification of Diet in Renal Disease (MDRD) study equation or the Cockcroft-Gault (CG) equation instead of the time-consuming method of measured clearance for exogenous markers such as inulin. In the present study, the equations originally developed for a Caucasian population were tested in Japanese CKD patients, and modified with the Japanese coefficient determined by the data.
The abbreviated MDRD study and CG equations were tested in 248 Japanese CKD patients and compared with measured inulin clearance (Cin) and estimated GFR (eGFR). The Japanese coefficient was determined by minimizing the sum of squared errors between eGFR and Cin. Serum creatinine values of the enzyme method in the present study were calibrated to values of the noncompensated Jaffé method by adding 0.207 mg/dl, because the original MDRD study equation was determined by the data for serum creatinine values measured by the noncompensated Jaffé method. The abbreviated MDRD study equation modified with the Japanese coefficient was validated in another set of 269 CKD patients.
There was a significant discrepancy between measured Cin and eGFR by the 1.0xMDRD or CG equations. The MDRD study equation modified with the Japanese coefficient (0.881xMDRD) determined for Japanese CKD patients yielded lower mean difference and higher accuracy for GFR estimation. In particular, in Cin 30-59 ml/min per 1.73 m(2), the mean difference was significantly smaller with the 0.881xMDRD equation than that with the 1.0xMDRD study equation (1.9 vs 7.9 ml/min per 1.73 m(2); P < 0.01), and the accuracy was significantly higher, with 60% vs 39% of the points deviating within 15%, and 97% vs 87% of points within 50%, respectively (both P < 0.01). Validation with the different data set showed the correlation between eGFR and Cin was better with the 0.881xMDRD equation than with the 1.0xMDRD study equation. In Cin less than 60 ml/min per 1.73 m(2), the accuracy was significantly higher, with 85% vs 69% of the points deviating within 50% (P < 0.01), respectively. The mean difference was also significantly smaller (P < 0.01). However, GFR values calculated by the 0.881xMDRD equation were still underestimated in the range of Cin over 60 ml/min per 1.73 m(2).
Although the Japanese coefficient improves the accuracy of GFR estimation of the original MDRD study equation, a new equation is needed for more accurate estimation of GFR in Japanese patients with CKD stages 3 and 4.
准确估算肾小球滤过率(GFR)对于慢性肾脏病(CKD)的检测至关重要。在临床实践中,常使用肾脏疾病饮食改良(MDRD)研究方程或Cockcroft-Gault(CG)方程,通过血清肌酐来估算GFR,而非采用诸如菊粉等外源性标志物耗时的测量清除率方法。在本研究中,最初为白种人群开发的方程在日本CKD患者中进行了测试,并根据数据确定的日本系数进行了修正。
对248例日本CKD患者测试了简化的MDRD研究方程和CG方程,并与测量的菊粉清除率(Cin)及估算的GFR(eGFR)进行比较。通过使eGFR与Cin之间的平方误差之和最小来确定日本系数。本研究中酶法测定的血清肌酐值通过加0.207mg/dl校准为未补偿Jaffé法的值,因为原始的MDRD研究方程是由未补偿Jaffé法测量的血清肌酐值数据确定的。用日本系数修正的简化MDRD研究方程在另一组269例CKD患者中进行了验证。
采用1.0倍MDRD或CG方程时,测量的Cin与eGFR之间存在显著差异。为日本CKD患者确定的用日本系数修正的MDRD研究方程(0.881倍MDRD)在GFR估算方面产生的平均差异更低且准确性更高。特别是在Cin为30 - 59ml/(min·1.73m²)时,0.881倍MDRD方程的平均差异显著小于1.0倍MDRD研究方程(分别为1.9与7.9ml/(min·1.73m²);P < 0.01),准确性显著更高,分别有60%对39%的点偏差在15%以内,以及97%对87%的点偏差在50%以内(均P < 0.01)。用不同数据集进行验证显示,0.881倍MDRD方程的eGFR与Cin之间的相关性优于1.0倍MDRD研究方程。在Cin低于60ml/(min·1.73m²)时,准确性显著更高,分别有85%对69%的点偏差在50%以内(P < 0.01)。平均差异也显著更小(P < 0.01)。然而,在Cin超过60ml/(min·1.73m²)范围内,用0.881倍MDRD方程计算的GFR值仍被低估。
尽管日本系数提高了原始MDRD研究方程估算GFR的准确性,但对于日本CKD 3期和4期患者,仍需要一个新的方程来更准确地估算GFR。