首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis, biological activity, and evaluation of the mode of action of novel antitubercular benzofurobenzopyrans substituted on A ring.
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Synthesis, biological activity, and evaluation of the mode of action of novel antitubercular benzofurobenzopyrans substituted on A ring.

机译:A环上取代的新型抗结核苯并呋喃苯并吡喃的合成,生物活性和作用方式的评估。

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摘要

The 8-, 9-, 10-, and 11-halo, hydroxy, and methoxy derivatives of the antimycobacterial 3,3-dimethyl-3H-benzofuro[3,2-f][1]benzopyran were synthesized by condensation of the diazonium salts of 2-chloroanilines (13-17) with 1,4-benzoquinone (18), reduction of the intermediate phenylbenzoquinones 19-22 to dihydroxybiphenyls, cyclisation to halo-2-hydroxydibenzofurans 24-27, and construction of the pyran ring by thermal rearrangement of the corresponding dimethylpropargyl ethers 35-38. Palladium catalyzed nucleophilic aromatic substitution permitted conversion of the halo to the corresponding hydroxy derivatives which were methylated to methoxy-3,3-dimethyl-3H-benzofuro[3,2-f][1]benzopyran. All compounds substituted on the A ring were found more potent than the reference compound 1 against Mycobacterium bovis BCG and the virulent strain Mycobacterium tuberculosis H37Rv. The effect of the most active derivatives on mycolate synthesis was explored in order to confirm the preliminary hypothesis of an effect on mycobacterial cell wall biosynthesis. The linear 9-methoxy-2,2-dimethyl-2H-benzofuro[2,3-g][1]benzopyran (46) exhibiting a good antimycobacterial activity and devoid of cytotoxicity appeared to be the most promising compound.
机译:通过重氮鎓的缩合反应合成了抗分枝杆菌3,3-二甲基-3H-苯并呋喃[3,2-f] [1]苯并吡喃的8-,9-,10-和11-羟基,羟基和甲氧基衍生物。 2-氯苯胺(13-17)与1,4-苯醌(18)的盐,中间体苯基苯醌19-22还原成二羟基联苯,环化成卤代-2-羟基二苯并呋喃24-27和通过热作用构建吡喃环相应的二甲基炔丙基醚35-38的重排。钯催化的亲核芳族取代允许将卤素转化为相应的羟基衍生物,将其甲基化为甲氧基-3,3-二甲基-3H-苯并呋喃[3,2-f] [1]苯并吡喃。发现在A环上取代的所有化合物对于牛分枝杆菌BCG和强毒株结核分枝杆菌H37Rv比参考化合物1更有效。为了证实对分枝杆菌细胞壁生物合成有影响的初步假设,探索了活性最高的衍生物对分支霉菌酸酯合成的影响。线性9-甲氧基-2,2-二甲基-2H-苯并呋喃[2,3-g] [1]苯并吡喃(46)具有良好的抗分枝杆菌活性,并且没有细胞毒性,是最有希望的化合物。

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