首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Capillary zone electrophoresis with a dynamic double coating for analysis of carbohydrate-deficient transferrin in human serum: Impact of resolution between disialo- and trisialotransferrin on reference limits.
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Capillary zone electrophoresis with a dynamic double coating for analysis of carbohydrate-deficient transferrin in human serum: Impact of resolution between disialo- and trisialotransferrin on reference limits.

机译:带有动态双涂层的毛细管区带电泳,用于分析人血清中碳水化合物缺乏的转铁蛋白:二唾液酸和三唾液酸转铁蛋白之间的分离度对参考限值的影响。

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摘要

Capillary electrophoresis with a dynamic double coating formed by charged polymeric reagents represents a very effective tool for the separation of iron-saturated transferrin (Tf) isoforms and thus the determination of carbohydrate-deficient transferrin (CDT) in human serum. The resolution between di- and trisialo-Tf is dependent on the applied voltage and capillary temperature. With a 50 microm inside diameter (ID) capillary of about 60 cm total length mounted into the P/ACE MDQ, 28 kV and 40 degrees C, the resolution of the two Tf isoforms is shown to be between 1.0 and 1.4, whereas with reduced voltage and/or temperature, increased resolution at the expense of elongated run times is observed. Best data with complete resolution (R(s) >/= 1.4) are obtained at 20 kV and 30 degrees C. For the determination of CDT in serum, incomplete separation of di- and trisialo-Tf is demonstrated to have an impact on the reference limits. Analysis of the sera of 54 healthy individuals with no or moderate alcohol consumption and using valley-to-valley peak integration, the upper (lower) reference limits for CDT in relation to total Tf at the two power levels are 1.33 (0.52) and 1.57 (0.81)%, respectively, representing intervals that are significantly different (P < 0.001). Furthermore, the reference intervals are shown to be strongly dependent on the peak integration approach used. Valley-to-valley peak integration should only be employed for conditions with complete resolution between disialo- and trisialo-Tf.
机译:具有带电聚合物试剂形成的动态双涂层的毛细管电泳代表了一种非常有效的工具,可用于分离铁饱和的转铁蛋白(Tf)同工型,从而测定人血清中碳水化合物不足的转铁蛋白(CDT)。 di-和trisialo-Tf之间的分辨率取决于所施加的电压和毛细管温度。在28 kV和40摄氏度的条件下,在P / ACE MDQ中安装了总长约60 cm的50微米内径(ID)毛细管,这两种Tf亚型的分离度显示为1.0至1.4,而降低了。在电压和/或温度下,观察到以延长的运行时间为代价提高了分辨率。在20 kV和30摄氏度下可获得具有完全分辨率(R(s)> / = 1.4)的最佳数据。为测定血清中的CDT,已证明二唾液酸和三唾液酸Tf的不完全分离对参考极限。对54名没有饮酒或中度饮酒的健康个体的血清进行分析,并使用谷值与谷值之间的峰积分,在两种功率水平下,CDT相对于总Tf的上限(下限)为1.33(0.52)和1.57 (0.81)%分别代表明显不同的间隔(P <0.001)。此外,参考区间显示出强烈依赖于所使用的峰积分方法。谷峰间峰积分仅应用于在二唾液酸和三唾液酸-Tf之间具有完全分离度的条件下。

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