An Accurate and Fast 31P qNMR Assay Method for Oligonucleotide Therapeutics.

IF 6.7 1区 化学 Q1 CHEMISTRY, ANALYTICAL Analytical Chemistry Pub Date : 2024-10-11 DOI:10.1021/acs.analchem.4c03693
Jiayi Li, Fu Chen, Deyi Zhang, Yan Wang, Darby Kozak, Kang Chen
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Abstract

Chemically modified nucleic acid molecules have been developed as oligonucleotide therapeutics, and its assay is critical in quality assurance. The common DNA/RNA quantification method using UV-260 nm can lack accuracy because of structure modifications and the possible formation of higher-order structure (HOS). Additionally, process-associated water and counterions affect the accuracy in gravimetric analysis. Thus, to improve accuracy, efficiency, and flexibility, in this work a fast (<1 h) externally referenced 31P quantitative-NMR (qNMR) method was developed. The qNMR assay results agreed within 1-5% of the UV-260 nm results for the single-stranded DNA standards, confirming the method accuracy. Next, an NMR and UV comparison study was performed on intact oligonucleotide drug products. The 31P qNMR method showed 7 ± 2%, 8 ± 1%, and 12 ± 1% lower concentration values compared with drug product labels for eteplirsen, inotersen, and inclisiran, respectively. Meanwhile the UV-260 nm results showed 28 ± 3%, 10 ± 3%, and 10 ± 1% lower concentrations than the label for the same three drugs. The agreement between NMR and UV for phosphorothioate (PS)-based inotersen and mostly phosphodiester (PO)-based inclisiran suggest that the labeled concentration may have been obtained using different extinction coefficients. The underestimate of UV results for eteplirsen, which has a phosphorodiamidate morpholino oligomer (PMO) structure, suggests that the UV-260 nm extinction coefficient may need to be re-established for the PMO based oligonucleotide. Therefore, the 31P qNMR method could be a primary assay method for the oligonucleotide drug and reference standard.

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用于寡核苷酸疗法的精确快速 31P qNMR 分析方法。
经化学修饰的核酸分子已被开发为寡核苷酸疗法,其检测对质量保证至关重要。由于结构修饰和可能形成的高阶结构(HOS),使用 UV-260 纳米波长的普通 DNA/RNA 定量方法可能缺乏准确性。此外,加工过程中产生的水和反离子也会影响重量分析的准确性。因此,为了提高准确性、效率和灵活性,本研究开发了一种快速(31P 定量-核磁共振(qNMR))方法。qNMR 检测结果与单链 DNA 标准品的 UV-260 纳米波长检测结果的一致性在 1-5% 以内,从而证实了该方法的准确性。接下来,对完整的寡核苷酸药物产品进行了 NMR 和 UV 比较研究。31P qNMR 方法显示,与药物产品标签相比,eteplirsen、inotersen 和 inclisiran 的浓度值分别低 7±2%、8±1% 和 12±1%。同时,紫外线-260 纳米波长的检测结果显示,这三种药物的浓度分别比标签值低 28 ± 3%、10 ± 3% 和 10 ± 1%。基于硫代磷酸酯 (PS) 的伊诺替生和主要基于磷酸二酯 (PO) 的 inclisiran 的 NMR 和 UV 结果一致,这表明标记浓度可能是使用不同的消光系数获得的。具有磷酸二酰胺吗啉基寡聚体(PMO)结构的依替普利森的紫外结果被低估,这表明可能需要重新确定基于 PMO 的寡核苷酸的紫外-260 纳米消光系数。因此,31P qNMR 方法可作为寡核苷酸药物和参考标准的主要检测方法。
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来源期刊
Analytical Chemistry
Analytical Chemistry 化学-分析化学
CiteScore
12.10
自引率
12.20%
发文量
1949
审稿时长
1.4 months
期刊介绍: Analytical Chemistry, a peer-reviewed research journal, focuses on disseminating new and original knowledge across all branches of analytical chemistry. Fundamental articles may explore general principles of chemical measurement science and need not directly address existing or potential analytical methodology. They can be entirely theoretical or report experimental results. Contributions may cover various phases of analytical operations, including sampling, bioanalysis, electrochemistry, mass spectrometry, microscale and nanoscale systems, environmental analysis, separations, spectroscopy, chemical reactions and selectivity, instrumentation, imaging, surface analysis, and data processing. Papers discussing known analytical methods should present a significant, original application of the method, a notable improvement, or results on an important analyte.
期刊最新文献
An Accurate and Fast 31P qNMR Assay Method for Oligonucleotide Therapeutics. Correction to "Approach for Plasmonic Based DNA Sensing: Amplification of the Wavelength Shift and Simultaneous Detection of the Plasmon Modes of Gold Nanostructures". Development of a Flow Through-Based Limited Digestion Approach for High-Throughput and High-Sequence Coverage Mapping of Therapeutic mRNAs. Extensive Biotransformation Profiling of AZD8205, an Anti-B7-H4 Antibody-Drug Conjugate, Elucidates Pathways Underlying Its Stability In Vivo. Femtosecond Laser Assisted Chemical Ionization Mass Spectrometry: Toward Sub-ppq Detection Limits for Organic Molecules.
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