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首页> 外文期刊>Journal of Immunological Methods >Non-specific binding to protein A Sepharose and protein G Sepharose in insulin autoantibody assays may be reduced by pre-treatment with glycine or ethanolamine.
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Non-specific binding to protein A Sepharose and protein G Sepharose in insulin autoantibody assays may be reduced by pre-treatment with glycine or ethanolamine.

机译:通过用甘氨酸或乙醇胺进行预处理,可以减少胰岛素自身抗体测定中与蛋白A Sepharose和蛋白G Sepharose的非特异性结合。

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摘要

Insulin autoantibody (IAA) microassays are widely used for predicting type 1 diabetes. As levels of IAA are often low in type 1 diabetes, non-specific binding (NSB) needs to be minimised if assays are to achieve high analytical sensitivity. IAA microassays use protein A Sepharose (PAS) or protein G Sepharose (PGS) to isolate the antibody-bound label, but NSB by the gel can differ between commercially-produced batches. We investigated whether pre-incubation of gel with glycine or ethanolamine could overcome this problem. Batches of PAS/PGS shown to have high NSB (0.3-3.2%) were incubated with glycine or ethanolamine at various pHs between 8 and 10.6 for 2-18 h at 4 degrees C or room temperature. Treating PAS at pH 10.6 with 0.2 M glycine overnight at room temperature reduced NSB by >84%, with minimal reduction in specific binding (<5%). Treating PGS at pH 10.6 with 0.2 M ethanolamine overnight at 4 degrees C reduced background by >95%, with minimal reduction in specific binding by most sera. Treatment at high pH was critical in reducing NSB to both PAS and PGS, with slight reduction at pH 8, but a major reduction at pH 10.6. Pre-treatment with glycine or ethanolamine allows "poor" batches of PAS or PGS to be used in sensitive IAA assays, improving both consistency and performance.
机译:胰岛素自身抗体(IAA)微量测定法广泛用于预测1型糖尿病。由于1型糖尿病中IAA的水平通常较低,因此如果要实现高分析灵敏度需要将非特异性结合(NSB)降至最低。 IAA微量分析使用蛋白A Sepharose(PAS)或蛋白G Sepharose(PGS)分离结合抗体的标记物,但商业生产批次之间的凝胶NSB可能有所不同。我们研究了用甘氨酸或乙醇胺预孵育凝胶是否可以克服此问题。将一批具有较高NSB(0.3-3.2%)的PAS / PGS与甘氨酸或乙醇胺在8至10.6之间的各种pH值下于4摄氏度或室温孵育2-18小时。在室温下用0.2 M甘氨酸在pH 10.6下处理PAS过夜,NSB降低> 84%,而特异性结合降低最小(<5%)。在4摄氏度下用0.2 M乙醇胺在pH 10.6下处理PGS过夜,背景降低了95%以上,大多数血清的特异性结合降低最小。高pH值的处理对于将NSB还原为PAS和PGS至关重要,在pH 8时略微降低,但在pH 10.6时则大幅降低。用甘氨酸或乙醇胺进行预处理可将“不良”批次的PAS或PGS用于敏感的IAA分析,从而提高一致性和性能。

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