Clinical Pharmacology Laboratory, Institute for Infectious Diseases, University of Bern, Bern, Switzerland.
Division of Metabolism, University Children's Hospital Zürich, Zürich, Switzerland.
J Sep Sci. 2017 Jun;40(11):2488-2497. doi: 10.1002/jssc.201700211. Epub 2017 Apr 24.
Capillary electrophoresis analysis of transferrin in human serum is used to assess genetic variants after desialylation with neuraminidase and iron saturation to reduce the complexity of the transferrin pattern and thus facilitate the recognition of transferrin polymorphisms. Asialo-transferrin forms are analyzed by capillary zone electrophoresis using assay conditions as for the monitoring of carbohydrate-deficient transferrin or by capillary isoelectric focusing in a pH 5-8 gradient which requires immunoextraction of transferrin prior to analysis. With the carrier ampholytes used, peaks for iron saturated and iron depleted transferrin are monitored which indicates complexation of iron ions by carrier ampholytes. For BC, CD, and BD genetic variants, the expected peaks for B, C, and D forms of transferrin were detected with both methods. Monitoring of CC patterns revealed three cases, namely those producing double peaks in both methods, a double peak in capillary isoelectric focusing only and a double peak in capillary zone electrophoresis only. For all samples analyzed, data obtained by capillary isoelectric focusing could be confirmed with gel isoelectric focusing. The two capillary electrophoresis methods are shown to represent effective tools to assess unusual transferrin patterns, including genetic variants with dissimilar abundances of the two forms.
毛细管电泳分析人血清中的转铁蛋白,用于评估唾液酸酶脱唾液酸化和铁饱和度后的遗传变异,以降低转铁蛋白模式的复杂性,从而便于识别转铁蛋白多态性。非唾液酸化转铁蛋白形式通过毛细管区带电泳进行分析,使用与监测糖缺乏转铁蛋白相同的测定条件,或通过 pH 5-8 梯度的毛细管等电聚焦进行分析,这需要在分析前进行转铁蛋白的免疫提取。使用载体两性电解质监测铁饱和和铁耗尽转铁蛋白峰,这表明铁离子与载体两性电解质的络合。对于 BC、CD 和 BD 遗传变异,两种方法均检测到预期的 B、C 和 D 形式的转铁蛋白峰。CC 模式的监测显示了三种情况,即在两种方法中均产生双峰、仅在毛细管等电聚焦中产生双峰和仅在毛细管区带电泳中产生双峰。对于分析的所有样品,毛细管等电聚焦获得的数据可以通过凝胶等电聚焦得到证实。这两种毛细管电泳方法被证明是评估异常转铁蛋白模式的有效工具,包括两种形式丰度不同的遗传变异。