Ligand-binding assays validated for quantitative bioanalysis of a novel antibody-drug conjugate in monkey serum and related application in a nonclinical study

IF 1.3 4区 医学 Q4 PHARMACOLOGY & PHARMACY Journal of pharmacological and toxicological methods Pub Date : 2025-02-01 DOI:10.1016/j.vascn.2024.107580
Yingying Hou , Jie Miao , Yajun Sun , Lili Shi , Lu Ouyang , Xiaoqiang Chen , Ziyi Li , Tingting Liu , Gang Qin , Qiuping Qin , Likun Gong
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Abstract

Background: Antibody-drug conjugates (ADCs) are an emerging class of targeted therapeutics and are receiving growing attention in the pharmaceutical field. Here we aimed to validate two ligand binding assays for the quantitation of GQ1001, an ADC made of Trastuzumab site-specifically conjugated with DM1, in cynomolgus monkey serum, and then apply the validated assays to a nonclinical study. Methods: The quantitative methods for conjugated GQ1001 and total GQ1001 were validated against regulatory guidance documents on bioanalytical method validation under a Good Laboratory Practice (GLP)-compliant environment. The validated assays were applied to a single-dose pharmacokinetic (PK) study of GQ1001 conducted in cynomolgus monkeys. Results: Both intra- and inter-assay precision and accuracy met the priori-defined acceptance criteria. Neither matrix effect nor hemolysis effect were observed, and the impact of specific interferents on the assays was evaluated. Dilution linearity was good with the expected dilution factors and no hook effect till up to 20.2 mg/mL of GQ1001 was noted. Besides, the stability of the ADC in monkey serum was found to be sufficient to cover the time required for sample storage and analysis. Furthermore, the assays demonstrated good parallelism determined with a study sample and good reproducibility acquired by incurred sample reanalysis (ISR). Using the validated assays, we obtained serum concentrations for the conjugated GQ1001 and the total GQ1001 in the single-dose PK study, and thereafter, evaluated their exposures over the dosing period. Conclusions: All tested performance parameters of the assays met the validation acceptance criteria, which supported the application of the two assays in the nonclinical PK study and allowed the evaluation of the related PK parameters for GQ1001.
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用于猴血清中新型抗体-药物共轭物定量生物分析的配体结合测定法验证及在非临床研究中的相关应用。
背景:抗体-药物偶联物(adc)是一类新兴的靶向治疗药物,在制药领域受到越来越多的关注。在这里,我们旨在验证两种配体结合测定法用于定量食食猴血清中GQ1001(一种由曲珠单抗位点特异性结合DM1制成的ADC),然后将验证的测定法应用于非临床研究。方法:在符合良好实验室规范(GLP)的环境下,根据生物分析方法验证的法规指导文件,对偶联GQ1001和总GQ1001的定量方法进行验证。将验证的方法应用于GQ1001在食蟹猴体内的单剂量药代动力学(PK)研究。结果:测定内和测定间的精密度和准确度均满足优先定义的可接受标准。没有观察到基质效应和溶血效应,并评估特异性干扰物对测定的影响。与预期的稀释因子线性良好,在GQ1001浓度达到20.2 mg/mL前无钩效应。此外,发现ADC在猴子血清中的稳定性足以覆盖样品储存和分析所需的时间。此外,测定结果显示了良好的平行性,并通过发生的样品再分析(ISR)获得了良好的再现性。通过验证的方法,我们获得了单剂量PK研究中偶联GQ1001和总GQ1001的血清浓度,然后评估了它们在给药期间的暴露情况。结论:两种检测方法的性能参数均符合验证接受标准,支持两种检测方法在非临床PK研究中的应用,并可对GQ1001的相关PK参数进行评价。
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Tetramethylbenzidine (TMB)
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Tetramethylbenzidine (TMB)
来源期刊
Journal of pharmacological and toxicological methods
Journal of pharmacological and toxicological methods PHARMACOLOGY & PHARMACY-TOXICOLOGY
CiteScore
3.60
自引率
10.50%
发文量
56
审稿时长
26 days
期刊介绍: Journal of Pharmacological and Toxicological Methods publishes original articles on current methods of investigation used in pharmacology and toxicology. Pharmacology and toxicology are defined in the broadest sense, referring to actions of drugs and chemicals on all living systems. With its international editorial board and noted contributors, Journal of Pharmacological and Toxicological Methods is the leading journal devoted exclusively to experimental procedures used by pharmacologists and toxicologists.
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Editorial Board Predicting clinical outcomes from off-target receptor interactions using Secondary Intelligence™ Demonstrating the statistical and pharmacological sensitivity of nonclinical QTc analysis using a dofetilide dose–response in nonhuman primates Compromising the immunogenicity of diphtheria toxin-based immunotoxins through epitope engineering: An in silico approach Ligand-binding assays validated for quantitative bioanalysis of a novel antibody-drug conjugate in monkey serum and related application in a nonclinical study
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