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首页> 外文期刊>Turkish journal of chemistry >Synthesis, molecular docking, and pharmacological evaluation of halobenzodithiophene derivatives against alpha-glucosidase, urease, and free radical production
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Synthesis, molecular docking, and pharmacological evaluation of halobenzodithiophene derivatives against alpha-glucosidase, urease, and free radical production

机译:卤代苯并二噻吩衍生物对α-葡萄糖苷酶,脲酶和自由基产生的合成,分子对接和药理评价

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摘要

Benzodithiophenes are heterocyclic compounds that have various medicinal and industrial applications. In the present study, halobenzodithiophene, the simplest benzofused thiophene, and its derivatives were synthesized and evaluated against alpha-glucosidase, urease, and free radical production. In the alpha-glucosidase inhibition assay, compound 2,2-bisbenzothiophne (1 ) exhibited potent activity with IC$_{50}$ = 135 $pm $ 0.51 $mu $M, while its derivative 2,7-bis(butoxycarbonyl)-3,6-dichlorobenzo[1,2-$b$;6,5-$b$']dithiophene (2 ) exhibited promising inhibition with IC$_{50}$ = 263 $pm $ 0.32 $mu $M. In the 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical-scavenging assay, compound 2 exhibited promising activity with IC$_{50}$ = 33 $pm $ 0.42 $mu $M, while compound 1 showed moderate inhibition in the urease inhibition assay. Molecular docking studies determined the possible interaction of benzodithiophene and alpha-glucosidase on the basis of binding energy and scoring function. Structure-activity relationship analysis revealed that compound 2,7-bis (butoxycarbonyl)-3,6-dichlorobenzo[1,2-$b$;6,5-$b$'] dithiophene (1 ) containing two chlorine substitutions exhibited more alpha-glucosidase inhibition (IC$_{50}$ = 263 $pm $ .0.32 $mu $M) than other derivatives. Moreover, compound 2,7-bis (butoxycarbonyl)-3,6-dichlorobenzo[1,2-$b$;6,5-$b$'] dithiophene (2 ) with two chlorine substitutions exhibited potent DPPH radical scavenging activity compared to other derivatives.
机译:苯并二噻吩是具有多种医学和工业应用的杂环化合物。在本研究中,卤代苯并二噻吩,最简单的苯并噻吩及其衍生物被合成并针对α-葡萄糖苷酶,脲酶和自由基产生进行了评估。在α-葡萄糖苷酶抑制试验中,化合物2,2-双苯并噻吩( 1)表现出强活性,IC $ _ {50} $ = 135 $ pm $ 0.51 $ mu $ M,而其衍生物2,7 -双(丁氧基羰基)-3,6-二氯苯并[1,2- $ b $; 6,5- $ b $']二噻吩( 2)显示出有希望的抑制作用,IC $ _ {50} $ = 263 $ pm $ 0.32 $ mu $ M。在1,1-二苯基-2-吡啶并肼基(DPPH)自由基清除试验中,化合物 2表现出良好的活性,IC $ _ {50} $ = 33 $ pm $ 0.42 $ mu $ M,而化合物b 1在脲酶抑制试验中显示出中等抑制作用。分子对接研究基于结合能和评分功能确定了苯并二噻吩和α-葡萄糖苷酶的可能相互作用。结构-活性关系分析表明,化合物2,7-双(丁氧羰基)-3,6-二氯苯并[1,2- $ b $; 6,5- $ b $']二噻吩( 1)含有两个氯取代表现出比其他衍生物更多的α-葡萄糖苷酶抑制作用(IC $ _ {50} $ = 263 $ pm $ .0.32 $ mu $ M)。此外,具有两个氯取代基的化合物2,7-双(丁氧基羰基)-3,6-二氯苯并[1,2- $ b $; 6,5- $ b $']二噻吩( 2)显示出有效的DPPH自由基与其他衍生物相比的清除活性。

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