Design, Synthesis and Bioactivities of Novel Isoxazole-Containing Pyrazole Oxime Derivatives
作者:Hong Dai、Wei Yao、Yuan Fang、Siyu Sun、Yujun Shi、Jia Chen、Guoqing Jiang、Jian Shi
DOI:10.3390/molecules22122000
日期:——
In this study, in order to find novel biologically active pyrazole oxime derivatives, twenty-eight new pyrazole oxime compoundscontaining a substituted isoxazole ring were synthesized and evaluated for their acaricidaland insecticidal activities. Bioassays exhibited that some target compounds indicated good acaricidal and insecticidal activities against Tetranychus cinnabarinus, Aphis medicaginis
Novel N-Substituted oseltamivir derivatives as potent influenza neuraminidase inhibitors: Design, synthesis, biological evaluation, ADME prediction and molecular docking studies
作者:Jiqing Ye、Xiao Yang、Min Xu、Paul Kay-sheung Chan、Cong Ma
DOI:10.1016/j.ejmech.2019.111635
日期:2019.11
strain. Moreover, the in silico ADMEpredictions showed that the selected compounds had comparable properties with oseltamivir carboxylate, which demonstrated the druggablity of these derivatives. Furthermore, moleculardocking studies showed that the most potent compound 6f and 10i could adopt different modes of binding interaction with NA, which may provide novel solutions for treating oseltamivir-resistant
Exploring rhodanine linked enamine–carbohydrazide derivatives as mycobacterial carbonic anhydrase inhibitors: Design, synthesis, biological evaluation, and molecular docking studies
作者:Sarvan Maddipatla、Bulti Bakchi、Rutuja Rama Gadhave、Andrea Ammara、Shashikanta Sau、Bandela Rani、Srinivas Nanduri、Nitin Pal Kalia、Claudiu T. Supuran、Venkata Madhavi Yaddanapudi
DOI:10.1002/ardp.202400064
日期:——
exploring their potential as inhibitors of mycobacterial carbonic anhydrase. The findings reveal their efficacy, displaying notable selectivity toward the mycobacterial carbonic anhydrase 2 (mtCA 2) enzyme. While exhibiting moderate activity against human carbonic anhydrase isoforms, this series demonstrates promising selectivity, positioning these compounds as potential antitubercular agents. Compound 6d