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作为牛碳酸酐酶-II抑制剂的吗啉衍生噻唑的设计、合成及研究

Design, synthesis, and and studies of morpholine derived thiazoles as bovine carbonic anhydrase-II inhibitors.

作者信息

Tasleem Mussarat, Ullah Saeed, Khan Ajmal, Mali Suraj N, Kumar Sunil, Mathew Bijo, Oneto Angelo, Noreen Faiqa, Eldesoky Gaber E, Schenone Silvia, Al-Harrasi Ahmed, Shafiq Zahid

机构信息

Institute of Chemical Sciences, Bahauddin Zakariya University Multan-60800 Pakistan

Natural and Medical Sciences Research Centre, University of Nizwa P.O. Box 33, PC 616, Birkat Al Mauz Nizwa Sultanate of Oman

出版信息

RSC Adv. 2024 Jul 8;14(30):21355-21374. doi: 10.1039/d4ra03385j. eCollection 2024 Jul 5.

Abstract

Carbonic anhydrase CA-II enzyme is essential for maintaining homeostasis in several processes, including respiration, lipogenesis, gluconeogenesis, calcification, bone resorption, and electrolyte balance due to its vital function within cellular processes. Herein, we screened 25 newly synthesized thiazole derivatives and assessed their inhibitory potential against the zinc-containing carbonic anhydrase CA-II enzyme. Intriguingly, derivatives of thiazole exhibited varying degrees of inhibitory action against CA-II. The distinctive attribute of these compounds is that they can attach to the CA-II binding site and block its action. Morpholine based thiazoles can be strategically modified to improve bovine CA-II inhibitor binding affinity, selectivity, and pharmacokinetics. Thiazole and morpholine moieties can boost inhibitory efficacy and selectivity over other calcium-binding proteins by interacting with target bovine CA-II binding sites. The derivatives 23-26 exhibited greater affinity when compared to the standard acetazolamide. Furthermore, kinetic study of the most potent compound 24 was performed, which exhibited concentration dependent inhibition with a value of 9.64 ± 0.007 μM. Molecular docking, MD simulation and QSAR analysis was also carried out to elucidate the interactions, orientation, and conformational changes of these compounds within the active site of the enzyme. Moreover, pharmacokinetic assessments showed that most of the compounds possess attributes conducive to potential drug development.

摘要

碳酸酐酶CA-II对于维持包括呼吸、脂肪生成、糖异生、钙化、骨吸收和电解质平衡等多个过程中的稳态至关重要,因为它在细胞过程中具有重要功能。在此,我们筛选了25种新合成的噻唑衍生物,并评估了它们对含锌碳酸酐酶CA-II的抑制潜力。有趣的是,噻唑衍生物对CA-II表现出不同程度的抑制作用。这些化合物的独特之处在于它们可以附着在CA-II结合位点并阻断其作用。基于吗啉的噻唑可以进行策略性修饰,以提高对牛CA-II抑制剂的结合亲和力、选择性和药代动力学。噻唑和吗啉部分通过与目标牛CA-II结合位点相互作用,可以提高对其他钙结合蛋白的抑制效力和选择性。与标准乙酰唑胺相比,衍生物23-26表现出更高的亲和力。此外,对最有效的化合物24进行了动力学研究,其表现出浓度依赖性抑制, 值为9.64±0.007μM。还进行了分子对接、分子动力学模拟和定量构效关系分析,以阐明这些化合物在酶活性位点内的相互作用、取向和构象变化。此外,药代动力学评估表明,大多数化合物具有有利于潜在药物开发的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b10/11228576/54e4b8f0f540/d4ra03385j-f1.jpg

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