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2-氨基噻唑磺酰胺衍生物作为潜在抗氧化剂的合成、生物学研究及计算机模拟研究

Synthesis, biological investigation, and in silico studies of 2-aminothiazole sulfonamide derivatives as potential antioxidants.

作者信息

Worachartcheewan Apilak, Pingaew Ratchanok, Prachayasittikul Veda, Apiraksattayakul Setthawut, Prachayasittikul Supaluk, Ruchirawat Somsak, Prachayasittikul Virapong

机构信息

Department of Community Medical Technology, Faculty of Medical Technology, Mahidol University, Bangkok 10700, Thailand.

Department of Chemistry, Faculty of Science, Srinakharinwirot University, Bangkok 10110, Thailand.

出版信息

EXCLI J. 2025 Jan 3;24:60-81. doi: 10.17179/excli2024-7855. eCollection 2025.

Abstract

Antioxidant compounds have gained current interest as potential protective agents for several therapeutic applications. Antimicrobial drug resistance and infectious diseases also still be concerning globally health issues. Accordingly, the discovery of new antioxidative and antimicrobial agents is essential for human well-being. Thiazole and sulfonamide are privileged scaffolds in drug discovery due to their various bioactive properties. In this study, a series of 2-aminothiazole sulfonamide derivatives ( ) were synthesized and investigated for their antioxidant (i.e., DPPH and SOD-mimic) and antimicrobial activities. Among tested compounds, compound was the most promising one with potent DPPH and SOD (%DPPH = 90.09 %, %SOD = 99.02 %). However, none of these compounds are active antimicrobial agents. Quantitative structure-activity relationship (QSAR) modeling was performed in which the key findings were further used to guide the rational design of additional derivatives. Two antioxidant QSAR models (i.e., DPPH and SOD) were constructed using multiple linear regression (MLR) with good predictive performance. An additional set of structurally modified compounds were designed based on QSAR findings to finally obtain 112 newly designed compounds in which their activities (DPPH and SOD) were predicted. Most of the modified compounds performed better activities than their prototypes. Mass, polarizability, electronegativity, the presence of C-F bond, van der Waals volume, and structural symmetry were revealed as key properties influencing antioxidant activities. In summary, this study demonstrated the combination used of chemical synthesis, experimental assays, and computer-aided drug design for developing novel antioxidants for potential medicinal applications. See also the graphical abstract(Fig. 1).

摘要

抗氧化化合物作为潜在的保护剂在多种治疗应用中引起了当前的关注。抗菌药物耐药性和传染病仍然是全球健康问题。因此,发现新的抗氧化和抗菌剂对人类福祉至关重要。噻唑和磺酰胺由于其多种生物活性特性,是药物发现中的优势骨架。在本研究中,合成了一系列2-氨基噻唑磺酰胺衍生物( ),并对其抗氧化(即DPPH和超氧化物歧化酶模拟)和抗菌活性进行了研究。在测试的化合物中,化合物 是最有前景的,具有强效的DPPH和超氧化物歧化酶活性(%DPPH = 90.09%,%超氧化物歧化酶 = 99.02%)。然而,这些化合物都不是活性抗菌剂。进行了定量构效关系(QSAR)建模,其关键发现进一步用于指导其他衍生物的合理设计。使用多元线性回归(MLR)构建了两个抗氧化QSAR模型(即DPPH和超氧化物歧化酶),具有良好的预测性能。基于QSAR结果设计了另一组结构修饰的化合物,最终获得了112个新设计的化合物,并预测了它们的活性(DPPH和超氧化物歧化酶)。大多数修饰化合物的活性比其原型更好。质量、极化率、电负性、C-F键的存在、范德华体积和结构对称性被揭示为影响抗氧化活性的关键性质。总之,本研究展示了化学合成、实验测定和计算机辅助药物设计相结合用于开发潜在药用新型抗氧化剂。另见图1的图形摘要。

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