Design and synthesis of an indol derivative as antibacterial agent against Staphylococcus aureus.

Journal of Chemical Biology Pub Date : 2017-06-08 eCollection Date: 2017-10-01 DOI:10.1007/s12154-017-0173-0
Hau-Heredia Lenin, Figueroa-Valverde Lauro, Rosas-Nexticapa Marcela, Herrera-Meza Socorro, López-Ramos Maria, Díaz-Cedillo Francisco, García-Cervera Elodia, Pool-Gómez Eduardo, Paat-Estrella Josefa, Cauich-Carrillo Regina, Euan-Hau Saidy
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Abstract

Several indole derivatives with antibacterial activity have been prepared using different protocols; however, some require special reagents and conditions. The aim of this study involved the synthesis of some indole derivatives using estrone and OTBS-estrone as chemical tools. The synthesis of the indole derivatives involves reactions such as follows: (1) synthesis of two indol derivatives (4 or 5) by reaction of estrone or OTBS-estrone with phenylhydrazine in medium acid; (2) reaction of 4 or 5 with 6-cloro-1-hexyne in medium basic to form two hexynyl-indol (7 or 8); (3) preparation of indol-propargylic alcohol derivatives (10 or 11) by reaction of benzaldehyde with 7 or 8 in medium basic; (4) synthesis of indol-aldehydes (12 or 13) via oxidation of 10 or 11 with DMSO; (5) synthesis of indeno-indol-carbaldehyde (15 or 16) via alkynylation/cyclization of 12 or 13 with hexyne in presence of copper(II); (6) preparation indeno-indol-carbaldehyde complex (19 or 20) via alkynylation/cyclization of 12 or 13 with 1-(hex-5-yn-1-yl)-2-phenyl-1H-imidazole. The antibacterial effect exerted by the indol-steroid derivatives against Streptococcus pneumoniae and Staphylococcus aureus bacteria was evaluated using dilution method and the minimum inhibitory concentration (MIC). The results showed that only the compound 19 inhibit the growth bacterial of S. aureus. In conclusion, these data indicate that antibacterial activity of 19 can be due mainly to functional groups involved in the chemical structure in comparison with the compounds studied.

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设计和合成一种吲哚衍生物作为抗金黄色葡萄球菌的抗菌剂。
目前已有几种具有抗菌活性的吲哚衍生物通过不同的方法制备出来,但其中一些需要特殊的试剂和条件。本研究的目的是以雌酮和 OTBS-雌酮为化学工具,合成一些吲哚衍生物。吲哚衍生物的合成涉及以下反应:(1) 雌酮或 OTBS-estrone 与苯肼在中酸性条件下反应,合成两种吲哚衍生物(4 或 5);(2) 4 或 5 与 6-氯-1-己炔在中碱性条件下反应,生成两种己炔基吲哚(7 或 8);(3) 苯甲醛与 7 或 8 在中碱性条件下反应,制备吲哚-丙炔醇衍生物(10 或 11);(4) 通过 10 或 11 与二甲基亚砜的氧化反应合成吲哚醛(12 或 13); (5) 在铜(II)存在下,通过 12 或 13 与炔烃的炔化/环化反应合成茚酮吲哚甲醛(15 或 16); (6) 通过 12 或 13 与 1-(己-5-炔-1-基)-2-苯基-1H-咪唑的炔化/环化反应制备茚酮吲哚甲醛复合物(19 或 20)。采用稀释法和最小抑菌浓度(MIC)评估了吲哚类固醇衍生物对肺炎链球菌和金黄色葡萄球菌的抗菌效果。结果表明,只有化合物 19 能抑制金黄色葡萄球菌的生长。总之,这些数据表明,与所研究的化合物相比,19 的抗菌活性可能主要归因于其化学结构中的官能团。
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Last issue of journal of chemical biology. JOCB Bulletin. Design, synthesis, and characterization of 2,2-bis(2,4-dinitrophenyl)-2-(phosphonatomethylamino)acetate as a herbicidal and biological active agent. Design and synthesis of an indol derivative as antibacterial agent against Staphylococcus aureus. Amphotericin B potentiates the anticancer activity of doxorubicin on the MCF-7 breast cancer cells.
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