2'- o -(甲氧基乙基)部分修饰的硫代磷酸酯反义寡核苷酸在预孵育大鼠或人全肝匀浆中的体外代谢稳定性和代谢。

Oligonucleotides Pub Date : 2010-12-01 Epub Date: 2010-11-30 DOI:10.1089/oli.2010.0252
Min-Son Baek, Rosie Z Yu, Hans Gaus, John S Grundy, Richard S Geary
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引用次数: 31

摘要

由于目前还没有合适的体外测试系统,目前还没有常规进行硫代酸2'- o -甲氧基乙基(2'-MOE)部分修饰的反义寡核苷酸(ASOs)的体外代谢稳定性测试,以帮助筛选发现化合物(例如,预测体内半衰期)。本工作的目的是开发、优化和评估体外全肝匀浆(大鼠或人)测试系统。该测试系统用于评估所选ASOs的体外代谢稳定性(内在清除率),并将结果与报道的体内半衰期进行比较,并鉴定产生的代谢物。测试系统优化涉及全肝匀浆37℃预孵育≥24小时,提高体外ASO代谢率。从预孵育大鼠或人全肝匀质液中计算的体外固有清除率(CL(int))值来看,与含有单一磷酸二酯取代的2'-MOE ASO (ISIS 104838和ISIS 301012)相比,完全磷酸化的2'-MOE ASO (ISIS 104838PO10)的代谢稳定性更高(即CL(int)更低)。然而,与ISIS 104838相比,ISIS 301012的体外代谢稳定性相当低,相比之下,ISIS 301012的体内组织消除半衰期比ISIS 301012长2倍。体外鉴定的ISIS 301012代谢产物与先前报道的体内观察结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vitro metabolic stabilities and metabolism of 2'-O-(methoxyethyl) partially modified phosphorothioate antisense oligonucleotides in preincubated rat or human whole liver homogenates.

In vitro metabolic stability testing of phosphorothioate 2'-O-methoxyethyl (2'-MOE) partially modified antisense oligonucleotides (ASOs) is not routinely performed to help screen discovery compounds (eg, predict in vivo half-lives), as no suitable in vitro test system currently exists. The aims of this work were to develop, optimize, and evaluate an in vitro whole liver homogenate (rat or human) test system. The test system was used to evaluate in vitro metabolic stabilities (intrinsic clearance) of selected ASOs, with results compared to reported in vivo half-lives, and generated metabolites also identified. Test system optimization involved preincubating whole liver homogenates at 37°C for ≥24 hours, which increased in vitro ASO metabolism rate. From calculated in vitro intrinsic clearance (CL(int)) values in preincubated rat or human whole liver homogenates, metabolic stabilities of fully phosphorothioated 2'-MOE ASOs (ISIS 104838 and ISIS 301012) were, as expected, greater (ie, lower CL(int)) than a 2'-MOE ASO containing a single phosphodiester substitution (ISIS 104838PO10). However, comparable-to-lower in vitro metabolic stability for ISIS 301012 was seen compared to ISIS 104838, in contrast to reported ∼2-fold longer in vivo tissue elimination half-lives for ISIS 301012. Identified in vitro metabolic products of ISIS 301012 were consistent with previously reported in vivo observations.

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Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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