Zhang Sisi, Xiao Hui, Li Ning
Regeneron Pharmaceuticals Inc, 777 Old Saw Mill River Road, Tarrytown, New York, 10,591-6706, United States.
Pharm Res. 2024 Sep;41(9):1881-1892. doi: 10.1007/s11095-024-03759-2. Epub 2024 Aug 22.
The study aims to leverage the capabilities of Liquid Chromatography-Multiple Reaction Monitoring Mass Spectrometry (LC-MRM), a key technique in quantifying therapeutic proteins in pharmacokinetic studies. The focus is on demonstrating an enrichment method using ProteoMiner beads, which can be integrated with LC-MRM to detect low-abundance biotherapeutics in serum, such as monoclonal antibodies and gene therapy products.
The ProteoMiner enrichment method was employed and integrated with LC-MRM. The lower limit of quantification of serum drug substance concentrations was compared with that achievable with immuno-enrichment. The method used commercially available reagents, eliminating the need for assay-specific antibodies and reducing potential bias and development time.
The ProteoMiner enrichment method showed comparable performance to immuno-enrichment, meeting traditional assay requirements in terms of precision, accuracy, and specificity.
The ProteoMiner enrichment method, when combined with LC-MRM, offers a reliable and efficient alternative to immuno-enrichment for detecting and quantifying low-abundance biotherapeutics in serum. This approach, which uses commercially available reagents, can eliminate the bias and time associated with the development of assay-specific antibodies. It holds significant potential for accelerating pharmacokinetic analysis in both early and late stages of pharmaceutical development.
本研究旨在利用液相色谱 - 多反应监测质谱法(LC - MRM)的功能,这是药代动力学研究中定量治疗性蛋白质的关键技术。重点是展示一种使用ProteoMiner磁珠的富集方法,该方法可与LC - MRM相结合,以检测血清中的低丰度生物治疗药物,如单克隆抗体和基因治疗产品。
采用ProteoMiner富集方法并与LC - MRM相结合。将血清药物物质浓度的定量下限与免疫富集法所能达到的下限进行比较。该方法使用市售试剂,无需特定检测抗体,减少了潜在偏差和开发时间。
ProteoMiner富集方法表现出与免疫富集相当的性能,在精密度、准确度和特异性方面满足传统检测要求。
ProteoMiner富集方法与LC - MRM相结合,为检测和定量血清中的低丰度生物治疗药物提供了一种可靠且高效的替代免疫富集的方法。这种使用市售试剂的方法可以消除与开发特定检测抗体相关的偏差和时间。它在药物研发的早期和后期阶段加速药代动力学分析方面具有巨大潜力。