[使用纯化共轭胆红素作为胆红素测定的校准器]。

Yuanbiao Guo, Min Guan, Zheli Du, Manling Chen, Jianwei Guo, Yi Tu, Juan Zhao, Shengli Li
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引用次数: 0

摘要

目的:提高胆红素特别是直接胆红素(DB)测定的准确度和精密度,并提高测定的标准化水平。方法:对纯化的偶联胆红素(Bc)和双红胆红素(DTB)及其重氮产物进行吸收光谱分析。用Doumas J-G(TB & DB)法比较了两种标定溶液的重氮反应特性。结果:Bc、DTB及其偶氮色素具有相似的吸收光谱和相同的λ max。他们的TB标准曲线几乎完全重叠在一起。虽然两组的DB标准曲线斜率无显著差异((YBc = 0.003666 x + 0.00933, rBc2 = 0.9977, P < 0.01;YDTB = 0.00391X + 0.00023, rDTB2 = 0.9987, P < 0.01;Pb1-b2 > 0.05, n1 = n2 = 5), Bc与DTB的DB值差异有统计学意义(n = 5, P < 0.05)。此外,不同基质(如HSA、BSA和人血清)制备的Bc校准器的DB/Bc有显著差异,但浓度之间没有差异。DTB和Bc测定的DB值分别随浓度的增加呈线性增加,斜率间无差异(YBc = 0.8300XBc + 1.9463, rBc2 = 0.9977, P < 0.01;YDTB = 0.8853XDTB-0.0251, rDTB2 = 0.9986, P < 0.01;n1 = n2 = 5, Pb1-b2 > 0.05)。结论:Bc与DTB的重氮反应特征一致。但在DB条件下,Bc的反应与DTB不同。本研究还表明,Bc作为基于DB的人血清的校准器,具有与血清样品相似的HCl恒定效应,是一种更可靠的消除基质效应的校准器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Using purified conjugated bilirubin as a calibrator for bilirubin measurement].

Objectives: To improve the accuracy and precision of the determination of bilirubin, especially direct bilirubin (DB), and the standardization of that as well.

Methods: Purified conjugated bilirubin (Bc) and ditaurobilirubin(DTB) and their diazo products were subjected to absorption spectrum analysis. The diazo reaction characters of their calibration solutions were compared by the method of Doumas J-G(TB & DB).

Results: Bc, DTB and their azopigments were found to have the similar absorption spectra with the same lambda max. Their TB standard curves almost superposed together all over. Although the slopes of their DB standard curves were not markedly different ((YBc = 0.00366X + 0.00933, rBc2 = 0.9977, P < 0.01; YDTB = 0.00391X + 0.00023, rDTB2 = 0.9987, P < 0.01; Pb1-b2 > 0.05, n1 = n2 = 5), the DB value measured for Bc differed from that for DTB(n = 5, P < 0.05). In addition, the calibrators made from Bc based different matrices, such as HSA, BSA and human serum, were significantly different in DB/Bc, but no difference was seen among the concentrations. Furthermore, the DB values determined for DTB or Bc increased linearly with the corresponding concentrations, respectively, with no difference between the slopes (YBc = 0.8300XBc + 1.9463, rBc2 = 0.9977, P < 0.01; YDTB = 0.8853XDTB-0.0251, rDTB2 = 0.9986, P < 0.01; n1 = n2 = 5, Pb1-b2 > 0.05).

Conclusions: The results demonstrate that the diazo reaction characters of Bc are identified with those of DTB. However, under the condition of DB, Bc reacts differently from DTB. This study also indicates that as a calibrator of DB based human serum, Bc has the similar constant effect of HCl as serum samples do, so it is a more reliable calibrator to eliminate the matrix effects.

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