Elghareeb F H, Kandil E M, Abou-Elzahab M, Abdelmoteleb M, Abozeid M A
Department of Chemistry, Faculty of Science, Mansoura University Mansoura-35516 Egypt
Department of Botany, Faculty of Science, Mansoura University Mansoura-35516 Egypt.
RSC Adv. 2021 Jun 16;11(35):21301-21314. doi: 10.1039/d1ra03497a. eCollection 2021 Jun 15.
The development of new and effective antimicrobial agents with novel chemical skeletons and working mechanisms is highly desirable due to the increased number of resistant microbes. Different new compounds based upon a 3D-spiro chromanone scaffold such as Mannich bases 2 and 3 in addition to azo dye 4 were synthesized. Besides, the condensation reactions of the hydrazide-spiro chromanone 8 with different ketonic reagents led to the synthesis of pyrazoles (9 & 10) and anils (11 & 13). Moreover, the methoxyl substituted spiro chromanone 14 was condensed with different hydrazines and hydrazides to give the corresponding hydrazones 15-18 in up to 85% yields. The condensation of the hydrazone 18 with salicylaldehyde yielded coumarinyl spiro chromanone 19 in an excellent yield, whereas its reaction with benzaldehyde followed by hydrazine afforded aminopyrazole derivative 21 in 82% yield. The antimicrobial evaluation suggested that hydrazide 8 has a substantial activity against different microbes (: = 22 mm, MIC = 1.64 μM; : = 19 mm, MIC = 1.64 μM; : = 20 mm, MIC = 6.57 μM). Moreover, promising antimicrobial activities were observed for azo dye 4 ( = 13-19 mm, MIC = 5.95-11.89 μM), hydrazone 17 ( = 17-23 mm, MIC = 1.88-3.75 μM), and aminopyrazole 21 ( = 14-19 mm, MIC = 2.24-8.98 μM). The molecular docking revealed that compounds 4, 8, 17, and 21 had good to high binding affinities with different microbial targets such as penicillin-binding proteins (-7.4 to -9.9 kcal), DNA gyrase (-7.8 to -9.0 kcal), lanosterol 14-alpha demethylase (-8.2 to -11.2 kcal), and -beta-1,3-glucanase (-8.2 to -11.9 kcal). The QSAR analysis ascertained a good correlation between the antimicrobial activity of 3D-spiro chromanone derivatives and their structural and/or physicochemical parameters.
由于耐药微生物数量的增加,开发具有新型化学骨架和作用机制的新型有效抗菌剂非常必要。除了偶氮染料4之外,还合成了基于3D-螺色满酮支架的不同新化合物,如曼尼希碱2和3。此外,酰肼-螺色满酮8与不同的酮试剂的缩合反应导致了吡唑(9和10)和缩苯胺(11和13)的合成。此外,甲氧基取代的螺色满酮14与不同的肼和酰肼缩合,以高达85%的产率得到相应的腙15 - 18。腙18与水杨醛缩合,以优异的产率得到香豆素基螺色满酮19,而其与苯甲醛反应后再与肼反应,以82%的产率得到氨基吡唑衍生物21。抗菌评估表明,酰肼8对不同微生物具有显著活性(:抑菌圈直径 = 22 mm,最低抑菌浓度 = 1.64 μM;:抑菌圈直径 = 19 mm,最低抑菌浓度 = 1.64 μM;:抑菌圈直径 = 20 mm,最低抑菌浓度 = 6.57 μM)。此外,观察到偶氮染料4(抑菌圈直径 = 13 - 19 mm,最低抑菌浓度 = 5.95 - 11.89 μM)、腙17(抑菌圈直径 = ???17 - 23 mm,最低抑菌浓度 = 1.88 - 3.75 μM)和氨基吡唑21(抑菌圈直径 = 14 - 19 mm,最低抑菌浓度 = 2.24 - 8.98 μM)具有良好的抗菌活性。分子对接显示,化合物4、8、17和21与不同的微生物靶点如青霉素结合蛋白(-7.4至-9.9千卡)、DNA促旋酶(-7.8至-9.0千卡)、羊毛甾醇14-α-脱甲基酶(-8.2至-11.2千卡)和β-1,3-葡聚糖酶(-8.2至-11.9千卡)具有良好至高的结合亲和力。定量构效关系分析确定了3D-螺色满酮衍生物的抗菌活性与其结构和/或物理化学参数之间的良好相关性。
原文中“: = 17 - 23 mm”处表述似乎有误,翻译时保留了原文错误表述。