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克服寡核苷酸治疗分析中的挑战:一种新的非离子对方法。

Overcoming Challenges in Oligonucleotide Therapeutics Analysis: A Novel Nonion Pair Approach.

机构信息

Bioanalysis Research Department, CMIC Pharma Science Co., Ltd., Hyogo 677-0032, Japan.

Division of Medicinal Safety Science, National Institute of Health Sciences, Kanagawa 210-9501, Japan.

出版信息

J Am Soc Mass Spectrom. 2024 Sep 4;35(9):2034-2037. doi: 10.1021/jasms.4c00270. Epub 2024 Aug 19.

Abstract

Oligonucleotide therapeutics (OT) have emerged as promising drug modality for various intractable diseases. Recently, liquid chromatography-mass spectrometry (LC-MS) has been commonly employed for characterizing and quantifying OT in biological samples. Traditionally, the ion pairing-reverse phase (IP-RP) LC-MS method has been utilized in OT bioanalyses; however, this approach is associated with several limitations, including the memory effect and ion suppression effect of IP reagents. Therefore, this study aimed to develop a new RP-LC-MS method that eliminates the need for IP reagents. Our investigation revealed that ammonium bicarbonate was essential for the successful implementation of this nonIP-RP-LC-MS-based bioanalysis of OT. Moreover, the developed method demonstrated high versatility, accommodating the analysis of various natural or chemically modified oligonucleotides. The sensitivity of the method was further assessed using reconstituted plasma samples (the lower limit of quantification in this experiment was 0.5-1 ng/mL). In summary, the developed nonIP-RP-LC-MS method offers an easy, reliable, and cost-effective approach to the bioanalysis of OT.

摘要

寡核苷酸疗法 (OT) 已成为治疗各种难治性疾病的有前途的药物模式。最近,液相色谱-质谱联用 (LC-MS) 已广泛用于在生物样本中对 OT 进行特征分析和定量。传统上,离子对反相 (IP-RP) LC-MS 方法已用于 OT 生物分析;然而,这种方法存在几个局限性,包括 IP 试剂的记忆效应和离子抑制效应。因此,本研究旨在开发一种新的无需使用 IP 试剂的反相 LC-MS 方法。我们的研究表明,碳酸氢铵对于成功实施基于非 IP-RP-LC-MS 的 OT 生物分析至关重要。此外,所开发的方法表现出高度的通用性,可容纳各种天然或化学修饰的寡核苷酸的分析。该方法的灵敏度通过使用重构的血浆样品进一步评估(本实验中的定量下限为 0.5-1ng/mL)。总之,所开发的非 IP-RP-LC-MS 方法为 OT 的生物分析提供了一种简单、可靠且具有成本效益的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be9f/11378278/a6449dbc93ce/js4c00270_0001.jpg

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