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对具有口服活性的对氨基水杨酸(PAS)前药和类似物的合成及生物评价。

Synthesis and biological evaluation of orally active prodrugs and analogs of para-aminosalicylic acid (PAS).

机构信息

Department of Medicinal Chemistry, University of Minnesota, Minneapolis, MN, USA.

Department of Microbiology & Immunology, University of Minnesota, Minneapolis, MN, USA.

出版信息

Eur J Med Chem. 2022 Mar 15;232:114201. doi: 10.1016/j.ejmech.2022.114201. Epub 2022 Feb 19.

Abstract

Tuberculosis (TB) is one of the world's most deadly infectious diseases resulting in nearly 1.3 million deaths annually and infecting nearly one-quarter of the population. para-Aminosalicylic acid (PAS), an important second-line agent for treating drug-resistant Mycobacterium tuberculosis, has moderate bioavailability and rapid clearance that necessitate high daily doses of up to 12 g per day, which in turn causes severe gastrointestinal disturbances presumably by disruption of gut microbiota and host epithelial cells. We first synthesized a series of alkyl, acyloxy and alkyloxycarbonyloxyalkyl ester prodrugs to increase the oral bioavailability and thereby prevent intestinal accumulation as well as undesirable bioactivation by the gut microbiome to non-natural folate species that exhibit cytotoxicity. The pivoxyl prodrug of PAS was superior to all of the prodrugs examined and showed nearly quantitative absorption. While the conceptually simple prodrug approach improved the oral bioavailability of PAS, it did not address the intrinsic rapid clearance of PAS mediated by N-acetyltransferase-1 (NAT-1). Thus, we next modified the PAS scaffold to reduce NAT-1 catalyzed inactivation by introduction of groups to sterically block N-acetylation and fluorination of the aryl ring of PAS to attenuate N-acetylation by electronically deactivating the para-amino group. Among the mono-fluorinated analogs prepared, 5-fluoro-PAS, exhibited the best activity and an 11-fold decreased rate of inactivation by NAT-1 that translated to a 5-fold improved exposure as measured by area-under-the-curve (AUC) following oral dosing to CD-1 mice. The pivoxyl prodrug and fluorination at the 5-position of PAS address the primary limitations of PAS and have the potential to revitalize this second-line TB drug.

摘要

结核病(TB)是世界上最致命的传染病之一,每年导致近 130 万人死亡,感染近四分之一的人口。对氨基水杨酸(PAS)是治疗耐药结核分枝杆菌的重要二线药物,其生物利用度适中,清除速度快,需要每天高达 12 克的高剂量,这反过来又会导致严重的胃肠道紊乱,推测是通过破坏肠道菌群和宿主上皮细胞引起的。我们首先合成了一系列烷基、酰氧基和烷氧基羰氧基烷基酯前药,以提高口服生物利用度,从而防止肠道积累以及肠道微生物群对非天然叶酸的不良生物活化,非天然叶酸表现出细胞毒性。PAS 的 pivoxyl 前药优于所有检查过的前药,显示出几乎定量的吸收。虽然概念上简单的前药方法提高了 PAS 的口服生物利用度,但它没有解决 PAS 由 N-乙酰转移酶-1(NAT-1)介导的内在快速清除问题。因此,我们接下来通过引入基团来修饰 PAS 支架,以阻止 N-乙酰化和 PAS 芳环的氟化,从而阻止 NAT-1 介导的 PAS 失活,从而降低 PAS 的 N-乙酰化。在所制备的单氟化类似物中,5-氟-PAS 表现出最佳的活性,并且 NAT-1 失活的速率降低了 11 倍,这转化为口服给予 CD-1 小鼠后通过 AUC 测量的暴露量提高了 5 倍。PAS 的 pivoxyl 前药和 5 位氟化解决了 PAS 的主要局限性,并有可能使这种二线结核病药物重新焕发生机。

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