非放射性同位素羰基金属免疫分析法(CMIA)在二苯基苯妥英中的应用。

A Varenne, A Vessières, P Brossier, G Jaouen
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摘要

作为我们正在进行的工作的一部分,开发新的非同位素分析方法羰基金属免疫分析法(CMIA),其有效性已经在实验室中证明了苯巴比妥和皮质醇,我们在这里介绍了建立5,5二苯氢妥英(DPH)的CMIA的步骤,DPH是最常用的抗癫痫药物之一。首先,将免疫原dph -3-戊酸bsa注射兔体内获得抗dph抗体。以[14C]-DPH为示踪剂,采用RIA检测这些抗体的滴度值和特异性,并选择对DPH及其他抗癫痫药物的代谢物具有高滴度值和良好特异性的抗体批次。其次,合成了有机金属配合物Cr(CO)3-DPH作为CMIA示踪剂,对抗dph抗体具有较高的识别值(Cr = 200%)。选择异丙醚作为分离示踪剂游离和结合组分的最佳有机溶剂。采用Cr(CO)3-DPH配合物作为示踪剂,FT-IR光谱作为检测方法,我们使用与RIA相同的示踪剂量,通过CMIA获得了滴定曲线。CMIA法获得的滴度值约为RIA法的两倍。这些结果证明了CMIA法测定DPH的可行性。
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Application of the non-radioisotopic carbonyl metalloimmunoassay (CMIA) to diphenylhydantoin.

As part of our ongoing work to develop the new non-isotopic assay method carbonyl metalloimmunoassay (CMIA), whose efficacy has already been proven in the laboratory for phenobarbital and cortisol, we here present the steps involved in establishing CMIA of 5,5 diphenylhydantoin (DPH), one of the most commonly used antiepileptic medications. First, anti-DPH antibodies were obtained by injection of the immunogen DPH-3-valerate-BSA into rabbits. The titer value and specificity of these antibodies were examined by RIA using [14C]-DPH as tracer, and an antibody batch selected for its high titer value and good specificity for metabolites of DPH and other antiepileptic drugs. Next the organometallic complex Cr(CO)3-DPH, chosen as the CMIA tracer, was synthesized and shown to conserve a high recognition value for anti-DPH antibodies (CR = 200%). Isopropyl ether was selected as the best organic solvent for use in separating the free and bound fractions of the tracer. Employing the Cr(CO)3-DPH complex as tracer and FT-IR spectroscopy as the detection method, we were able to obtain a titration curve by CMIA using an amount of tracer identical to that used in RIA. The titer value obtained in CMIA is approximately twice that obtained by RIA. These results demonstrate the feasibility of DPH assay by the CMIA method.

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