An Ying-Shuang, Hao Zhen-Fang, Zhang Xiu-Jun, Wang Lan-Zhi
College of Chemistry & Material Science, Hebei Normal University, Shijiazhuang, 050024, China.
Chem Biol Drug Des. 2016 Jul;88(1):110-21. doi: 10.1111/cbdd.12739. Epub 2016 Mar 6.
A series of novel 1,5-benzodiazepine derivatives were rationally designed and synthesized following the principle of the superposition of bioactive substructures by the combination of 1,5-benzodiazepine, pyridine (phenyl), and an ester group. The structures of the target compounds were determined by (1) H NMR, (13) C NMR, MS, IR, and elemental analysis. All the synthesized compounds were evaluated for their antimicrobial activities in vitro against the fungi C. neoformans, C. neoformans clinical isolates (ATCC 32264), C. albicans (ATCC 10231), Gram-negative bacterium E. coli (ATCC 44752), and Gram-positive bacterium S. aureus (ATCC 25923). The results of the bioactive assay demonstrated that most of the tested compounds exhibited variable inhibitory effects on the growth of the tested microorganisms. All the active compounds showed better antifungal activity than antibacterial activity. Notably, compound 2b displayed the highest activity (MIC = 30 μg/mL) against C. neoformans and (MIC = 31 μg/mL) against C. neoformans clinical isolates. In addition, compound 2a also showed excellent activity against C. neoformans and C. neoformans clinical isolates with minimum inhibitory concentration of 35 and 36 μg/mL, respectively. Compounds 2a and 2b were further studied by evaluating their cytotoxicities, and the results showed that they have relatively low level cytotoxicity for BV2 and 293T cell. Preliminary structure-activity relationship study on three diverse sets (C-2, C-3, and C-8 positions) of 1,5-benzodiazepines was performed. The results revealed that the presence of a -CH3 group at the C-8 position had a positive effect on the inhibitory activity of these compounds. Additionally, the 2-pyridyl group at the C-2 position may be a pharmacophore and -COOC2 H5 at C-3 position is the best substituent for the maintenance of antimicrobial activities.
按照生物活性亚结构叠加原理,通过将1,5 - 苯二氮䓬、吡啶(苯基)和酯基相结合,合理设计并合成了一系列新型1,5 - 苯二氮䓬衍生物。通过¹H NMR、¹³C NMR、MS、IR和元素分析确定了目标化合物的结构。对所有合成化合物进行了体外抗菌活性评估,测试对象包括真菌新型隐球菌、新型隐球菌临床分离株(ATCC 32264)、白色念珠菌(ATCC 10231)、革兰氏阴性菌大肠杆菌(ATCC 44752)和革兰氏阳性菌金黄色葡萄球菌(ATCC 25923)。生物活性测定结果表明,大多数测试化合物对测试微生物的生长表现出不同程度的抑制作用。所有活性化合物的抗真菌活性均优于抗菌活性。值得注意的是,化合物2b对新型隐球菌显示出最高活性(MIC = 30 μg/mL),对新型隐球菌临床分离株的活性为(MIC = 31 μg/mL)。此外,化合物2a对新型隐球菌和新型隐球菌临床分离株也显示出优异活性,最低抑菌浓度分别为35和36 μg/mL。通过评估化合物2a和2b的细胞毒性进行了进一步研究,结果表明它们对BV2和293T细胞的细胞毒性相对较低。对1,5 - 苯二氮䓬的三个不同位置集(C - 2、C - 3和C - 8位)进行了初步构效关系研究。结果表明,C - 8位存在-CH₃基团对这些化合物的抑制活性有积极影响。此外,C - 2位的2 - 吡啶基可能是药效团,C - 3位的-COOC₂H₅是维持抗菌活性的最佳取代基。