Observations from a decade of oligonucleotide bioanalysis by LC-MS.

IF 1.9 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS
Bioanalysis Pub Date : 2024-04-18 DOI:10.4155/bio-2024-0007
Matthew Ewles, A. Ledvina, Brendan Powers, C. E. Thomas
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引用次数: 0

Abstract

There is a growing need for efficient bioanalysis of oligonucleotide therapeutics. This broad class of molecules presents numerous challenges relative to traditional small molecule therapeutics. Methodologies including ligand-binding assays or polymerase chain reaction may be fit-for-purpose in many instances, but liquid chromatography coupled to mass spectrometry (LC-MS) often delivers the best balance of sensitivity and selectivity. Over the last decade, we have engaged with many such molecules and derived insights into challenges and solutions. Herein, we provide four case studies illustrating challenges we have encountered. These issues include low or variable analyte recovery, poor resolution from related species, chromatographic abnormalities or challenging sensitivity. We present a summary of considerations, based on these experiences, to assist others working in the area.
通过 LC-MS 进行寡核苷酸生物分析的十年观察。
对寡核苷酸疗法进行高效生物分析的需求日益增长。与传统的小分子疗法相比,这一大类分子面临着许多挑战。在许多情况下,配体结合测定或聚合酶链反应等方法可能适用,但液相色谱-质谱联用技术(LC-MS)往往能在灵敏度和选择性之间取得最佳平衡。在过去的十年中,我们接触了许多此类分子,并深入了解了它们所面临的挑战和解决方案。在此,我们提供四个案例研究,说明我们遇到的挑战。这些问题包括分析物回收率低或不稳定、对相关物种的分辨能力差、色谱异常或灵敏度不高。根据这些经验,我们总结了一些注意事项,以帮助其他从事该领域工作的人员。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioanalysis
Bioanalysis BIOCHEMICAL RESEARCH METHODS-CHEMISTRY, ANALYTICAL
CiteScore
3.30
自引率
16.70%
发文量
88
审稿时长
2 months
期刊介绍: Reliable data obtained from selective, sensitive and reproducible analysis of xenobiotics and biotics in biological samples is a fundamental and crucial part of every successful drug development program. The same principles can also apply to many other areas of research such as forensic science, toxicology and sports doping testing. The bioanalytical field incorporates sophisticated techniques linking sample preparation and advanced separations with MS and NMR detection systems, automation and robotics. Standards set by regulatory bodies regarding method development and validation increasingly define the boundaries between speed and quality. Bioanalysis is a progressive discipline for which the future holds many exciting opportunities to further reduce sample volumes, analysis cost and environmental impact, as well as to improve sensitivity, specificity, accuracy, efficiency, assay throughput, data quality, data handling and processing. The journal Bioanalysis focuses on the techniques and methods used for the detection or quantitative study of analytes in human or animal biological samples. Bioanalysis encourages the submission of articles describing forward-looking applications, including biosensors, microfluidics, miniaturized analytical devices, and new hyphenated and multi-dimensional techniques. Bioanalysis delivers essential information in concise, at-a-glance article formats. Key advances in the field are reported and analyzed by international experts, providing an authoritative but accessible forum for the modern bioanalyst.
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