5-卤化n -吲哚基磺酰-2-氟苯酚衍生物醛糖还原酶抑制剂的研究。

Antonios Kousaxidis, Konstantina-Malamati Kalfagianni, Eleni Seretouli, Ioannis Nicolaou
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引用次数: 0

摘要

背景/目的:糖尿病是一组以持续高血糖为特征的慢性代谢性疾病。醛糖还原酶是多元醇途径中的第一酶,在糖尿病长期并发症的发生中起关键作用。醛糖还原酶抑制已被广泛确立为预防和治疗糖尿病相关合并症的潜在药物治疗方法。虽然在过去的几十年里已经开发出了几种很有前途的醛糖还原酶抑制剂,但由于不可接受的药代动力学特性和严重的副作用,它们在临床试验中失败了。本文介绍了四种新型的5-卤化n -吲哚磺酰-2-氟苯酚衍生物(3a-d)醛糖还原酶抑制剂的设计、合成和药理学评价。方法:以课题组已发表的先导化合物(IIc)为基础设计化合物,增强其抑菌能力。筛选化合物3a-d对体外部分纯化大鼠晶状体醛糖还原酶的抑制能力,并通过分子对接研究其结合模式。结果:吲哚和邻氟酚芳香环之间的磺酰基连接体的存在是有效抑制醛糖还原酶的必要条件。与IIc相比,吲哚核心被卤素取代导致3a-c的抑制能力略有下降。卤素中,溴通过与Thr113和Phe115残基疏水相互作用填充选择性口袋的能力最强。结论:虽然我们通过在吲哚支架中插入卤素原子来优化IIc抑制效力的策略并不成功,但芳香环卤化仍然可以作为设计更有效的醛糖还原酶抑制剂的一种有前途的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An Investigation of 5-Halogenated <i>N</i>-Indolylsulfonyl-2-fluorophenol Derivatives as Aldose Reductase Inhibitors.

An Investigation of 5-Halogenated <i>N</i>-Indolylsulfonyl-2-fluorophenol Derivatives as Aldose Reductase Inhibitors.

An Investigation of 5-Halogenated <i>N</i>-Indolylsulfonyl-2-fluorophenol Derivatives as Aldose Reductase Inhibitors.

An Investigation of 5-Halogenated N-Indolylsulfonyl-2-fluorophenol Derivatives as Aldose Reductase Inhibitors.

Background/objectives: Diabetes mellitus is a group of chronic metabolic disorders characterized by persistent hyperglycemia. Aldose reductase, the first enzyme in the polyol pathway, plays a key role in the onset of long-term diabetic complications. Aldose reductase inhibition has been widely established as a potential pharmacotherapeutic approach to prevent and treat diabetes mellitus-related comorbidities. Although several promising aldose reductase inhibitors have been developed over the past few decades, they have failed in clinical trials due to unacceptable pharmacokinetic properties and severe side effects. This paper describes the design, synthesis, and pharmacological evaluation of four novel 5-halogenated N-indolylsulfonyl-2-fluorophenol derivatives (3a-d) as aldose reductase inhibitors.

Methods: The design of compounds was based on a previously published lead compound (IIc) developed by our research group to enhance its inhibitory capacity. Compounds 3a-d were screened for their ability to inhibit in vitro partially purified aldose reductase from rat lenses, and their binding modes were investigated through molecular docking.

Results: The presence of a sulfonyl linker between indole and o-fluorophenol aromatic rings is mandatory for potent aldose reductase inhibition. The 5-substitution of the indole core with halogens resulted in a slight decrease in the inhibitory power of 3a-c compared to IIc. Among halogens, bromine was the most capable of filling the selectivity pocket through hydrophobic interactions with Thr113 and Phe115 residues.

Conclusions: Although our strategy to optimize the inhibitory potency of IIc via inserting halogen atoms in the indole scaffold was not fruitful, aromatic ring halogenation can be still utilized as a promising approach for designing more potent aldose reductase inhibitors.

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