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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >In vitro metabolism of 2'-ribose unmodified and modified phosphorothioate oligonucleotide therapeutics using liquid chromatography mass spectrometry
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In vitro metabolism of 2'-ribose unmodified and modified phosphorothioate oligonucleotide therapeutics using liquid chromatography mass spectrometry

机译:使用液相色谱质谱法未经修改和改性硫代磷酸寡核苷酸治疗剂的2'-核糖的体外代谢

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Antisense oligonucleotides (ASOs) have been touted as an emerging therapeutic class to treat genetic disorders and infections. The evaluation of metabolic stability of ASOs during biotransformation is critical due to concerns regarding drug safety. Because the effects of the modifications in ASOs on their metabolic stabilities are different from unmodified ASOs, studies that afford an understanding of these effects as well as propose proper methods to determine modified and unmodified ASO metabolites are imperative. An LC-tandem mass spectrometry method offering good selectivity with a high-quality separation using 30mm N,N-dimethylcyclohexylamine and 100 mm 1,1,1,3,3,3-hexafluoro-2-propanol was utilized to identify each oligonucleotide metabolite. Subsequently, the method was successfully applied to a variety of in vitro systems including endo/exonuclease digestion, mouse liver homogenates, and then liver microsomes, after which the metabolic stability of unmodified versus modified ASOs was compared. Typical patterns of chain-shortened metabolites generated by mainly 3'-exonucleases were observed in phosphodiester and phosphorothioate ASOs, and endonuclease activity was identically observed in gapmers that showed relatively more resistance to nuclease degradation. Overall, the degradation of each ASO occurred more slowly corresponding to the degree of chemical modifications, while 5'-exonuclease activities were only observed in gapmers incubated in mouse liver homogenates. Our findings provide further understanding of the impact of modifications on the metabolic stability of ASOs, which facilitates the development of future ASO therapeutics.
机译:反义寡核苷酸(ASOS)被吹捧为新出现的治疗阶级以治疗遗传疾病和感染。由于药物安全的担忧,在生物转化期间对ASOS的代谢稳定性的评价是至关重要的。由于ASOS修改对其代谢稳定性的影响不同于未修改的ASO,所以能够理解这些效果的研究以及提出了确定改性和未修饰的ASO代谢物的适当方法是必要的。利用使用30mm N,N-二甲基环己胺和100mM 1,1,1,3,3,3-六氟-2-丙醇的高质量分离提供良好选择性的LC串联质谱法,用于鉴定每个寡核苷酸代谢物。随后,该方法被成功地应用于各种体外系统,包括内诺/外切核酸酶消化,小鼠肝匀浆,然后肝微粒体进行比较了未改性与改性ASOS的代谢稳定性。在磷酸二酯和硫代磷酸盐酶中观察到主要由3'-外切核酸酶产生的链缩式代谢物的典型图案,并且在显影剂中相似地观察到内切核酸酶活性,显示出对核酸酶降解的耐受性相对较高的抗性。总的来说,每个ASO的降解发生比较缓慢对应于化学修饰程度,而仅在小鼠肝匀浆中孵育的间隙中仅观察到5'外核酸酶活性。我们的研究结果进一步了解对修改对ASO的代谢稳定性的影响,这促进了未来的ASO治疗方法的发展。

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