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Science Letters:Evaluation of a kinetic uricase method for serum uric acid assay by predicting background absorbance of uricase reaction solution with an integrated method
作者姓名:Liao F  Zhao YS  Zhao LN  Tao J  Zhu XY  Liu L
作者单位:[1]Laboratory of Bioinformatics and Molecular Engineering, Chongqing University of Medical Sciences, Chongqing 400016, China [2]Department of Biochemistry and Molecular Biology, Chongqing University of Medical Sciences, Chongqing 400016, China [3]Affiliated Children's Hospital, Chongqing University of Medical Sciences, Chongqing 400016, China
摘    要:A patented kinetic uricase method was evaluated for serum uric acid assay. Initial absorbance of the reaction mixture before uricase action (A0) was obtained by correcting the absorbance at 293 nm measured before the addition of uricase solution, and background absorbance (Ab) was predicted by an integrated method. Uric acid concentration in reaction solution was calculated from AA, the difference between A0 and Ab, using the absorptivity preset for uric acid. This kinetic uricase method exhibited CV〈4.3% and recovery of 100%. Lipids, bilirubin, hemoglobin, ascorbic acid, reduced glutathione and xanthine 〈0.32 mmol/L in serum had no significant effects. △A linearly responded to 1.2 to 37.5 μmol/L uric acid in reaction solution containing 15 μl serum. The slope of linear response was consistent with the absorptivity preset for uric acid while the intercept was consistent with that for serum alone. Uric acid concentrations in clinic sera by different uricase methods positively correlated to each other. By Bland-Altman analysis, this kinetic uricase method accorded with that by quantifying the total change of UV absorbance on the completion of uricase reaction. These results demonstrated that this kinetic uricase method is reliable for serum uric acid assay with enhanced resistance to both xanthine and other common errors, wider range of linear response and much lower cost.

关 键 词:背景吸光率  Bland-Altman分析  尿酸酶  反应曲线  血液检验
收稿时间:2006-03-01
修稿时间:2006-04-29

Evaluation of a kinetic uricase method for serum uric acid assay by predicting background absorbance of uricase reaction solution with an integrated method
Liao F,Zhao YS,Zhao LN,Tao J,Zhu XY,Liu L.Evaluation of a kinetic uricase method for serum uric acid assay by predicting background absorbance of uricase reaction solution with an integrated method[J].Journal of Zhejiang University Science,2006,7(6):497-502.
Authors:Fei Liao  Yun-sheng Zhao  Li-na Zhao  Jia Tao  Xiao-yun Zhu  Lan Liu
Institution:(1) Laboratory of Bioinformatics and Molecular Engineering, Chongqing University of Medical Sciences, Chongqing, 400016, China;(2) Department of Biochemistry and Molecular Biology, Chongqing University of Medical Sciences, Chongqing, 400016, China;(3) Affiliated Children’s Hospital, Chongqing University of Medical Sciences, Chongqing, 400016, China
Abstract:A patented kinetic uricase method was evaluated for serum uric acid assay. Initial absorbance of the reaction mixture before uricase action (A(0)) was obtained by correcting the absorbance at 293 nm measured before the addition of uricase solution, and background absorbance (A(b)) was predicted by an integrated method. Uric acid concentration in reaction solution was calculated from A, the difference between A(0) and A(b), using the absorptivity preset for uric acid. This kinetic uricase method exhibited CV<4.3% and recovery of 100%. Lipids, bilirubin, hemoglobin, ascorbic acid, reduced glutathione and xanthine <0.32 mmol/L in serum had no significant effects. A linearly responded to 1.2 to 37.5 micromol/L uric acid in reaction solution containing 15 microl serum. The slope of linear response was consistent with the absorptivity preset for uric acid while the intercept was consistent with that for serum alone. Uric acid concentrations in clinic sera by different uricase methods positively correlated to each other. By Bland-Altman analysis, this kinetic uricase method accorded with that by quantifying the total change of UV absorbance on the completion of uricase reaction. These results demonstrated that this kinetic uricase method is reliable for serum uric acid assay with enhanced resistance to both xanthine and other common errors, wider range of linear response and much lower cost.
Keywords:Background absorbance  Bland-Altman analysis  Kinetic uricase method  Reaction curve fitting  Serum uric acid assay
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