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引用次数: 0
摘要
目前的抗菌素武器库无法阻止抗菌素耐药性现象的迅速而凶猛的增长。总的来说,目前的情况表明迫切需要开发其他有效的抗微生物药物。在寻找新型抗菌剂方面,最近发现苯噻唑衍生物具有抗菌活性,特别是对一系列耐抗生素的金黄色葡萄球菌菌株。通过在含有一个或多个氢键促进基团的嘧啶环中加入可水解的- hc =N-键,对含氮头进行修饰,发现了第二代苯噻唑,与先导化合物1a相比,具有更强的活性和更长的半衰期。基于上述理论,本研究的目的是建立一组侧链上含有两个或两个以上杂原子的正丁基苯基噻唑-5-嘧啶的新结构,并研究这些化合物的结构形式与其抗菌活性和抗多药耐药(MDR)菌株的光谱之间的关系。新的衍生物集被设计为涵盖所有可能的侧链碳单元距离和空间构型。
SYNTHESIS AND EVALUATION OF NEW PHENYLTHIAZOLE DERVATIVES AS ANTIMICROBIAL AGENTS
The current arsenal of antimicrobials couldn't hold back the rapid and ferocious growth of the antimicrobial resistance phenomenon. Collectively the current situation points to the pressing need to develop other effective antimicrobial agents.
In the search for novel antimicrobials, phenylthiazole derivatives have recently been found to possess antibacterial activity particularly against a range of several antibiotic-resistant staphylococcus aureus strains. Modification of the nitrogenous head by incorporation the hydrolysable -HC=N- linkage within a pyrimidine ring bearing one or more hydrogen bond-promoting group led to the discovery of the second generation of phenylthiazoles, with more potent activity and longer half-lives compared to the lead compound 1a.
Based on the above rationale, the objective of this study was to create a new set of structures of n-butylphenylthiazole-5-pyrimidine that contains two or more heteroatoms in their side chain and to study the relationship between the structural form of these compounds and their antimicrobial activity and spectrum against certain multi-drug resistance (MDR) strains. The new set of derivatives is designed to cover all the possibilities of side chains carbon-units distance and spatial configurations.