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探索1,3 - 噻嗪的多样治疗应用:一篇综述

Exploring the Diverse Therapeutic Applications of 1, 3-Thiazine: A Comprehensive Review.

作者信息

Agrawal Neetu, Goyal Deepika, Pathak Shilpi

机构信息

Institute of Pharmaceutical Research, GLA University, Mathura, Uttar Pradesh, India.

出版信息

Med Chem. 2025;21(2):85-95. doi: 10.2174/0115734064328915240827062052.

Abstract

Thiazine, a six-membered heterocycle containing nitrogen and sulfur atoms, is of paramount importance due to its diverse biological functions and broad therapeutic effects. The pharmacological attributes of 1,3-thiazine span a wide range of activities, including antileukemic, antimycobacterial, anti-inflammatory, sedative, hypnotic, anti-influenza, antituberculosis, melanogenesis inhibition, BACE1 inhibition (with anti-Alzheimer's potential), growth promotion, neuroprotective, and anticonvulsant properties. Consequently, novel synthetic methodologies and the design of new 1,3-thiazine derivatives are significantly influenced by recent research findings. This comprehensive review explores both and preclinical studies on the biomedical and therapeutic applications of 1,3-thiazine, highlighting its extensive medical relevance. It is anticipated that derivatization strategies for 1,3-thiazine will open new avenues for the development of innovative biological agents. This review aims to engage researchers, stimulating the creation of promising new treatments and preventive measures for various diseases.

摘要

噻嗪是一种含有氮和硫原子的六元杂环,由于其多样的生物学功能和广泛的治疗作用而至关重要。1,3 - 噻嗪的药理特性涵盖广泛的活性,包括抗白血病、抗分枝杆菌、抗炎、镇静、催眠、抗流感、抗结核、抑制黑色素生成、抑制β - 分泌酶1(具有抗阿尔茨海默病潜力)、促进生长、神经保护和抗惊厥特性。因此,新的合成方法以及新型1,3 - 噻嗪衍生物的设计受到近期研究结果的显著影响。这篇全面的综述探讨了1,3 - 噻嗪在生物医学和治疗应用方面的体内和临床前研究,突出了其广泛的医学相关性。预计1,3 - 噻嗪的衍生化策略将为创新生物制剂的开发开辟新途径。本综述旨在吸引研究人员,激发为各种疾病创造有前景的新治疗方法和预防措施。

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