Chemistry of Heterocycles &Natural Product Research Laboratory, Department of Chemistry, School of Advanced Sciences, VIT University, Vellore-632014, Tamil Nadu, India.
Department of Botany and Microbiology, Addiriyah Chair for Environmental Studies, College of Science, King Saud University, P. O. Box 2455, Riyadh, 11451, Saudi Arabia.
Sci Rep. 2017 Jan 6;7:39753. doi: 10.1038/srep39753.
A serious Mosquito borne yellow fever is one of the grave diseases which affect the major population. Since there is no specific treatment for yellow fever, there is a necessity to develop an effective agent. The series of acridinone analogues 3 to 5 were synthesized with help of non-conventional microwave heating and confirmed by respective spectral characterization. 5c and 3b showed highest activity to kill 90% of larvae against A. aegypti and C. quinquefasciatus, respectively. Also the active products were treated to check the mortality of non-target aquatic species. Through the reports of the larvicidal bioassay, compounds 3b against C. quinquefasciatus whereas 5c against A. aegypti were found to be more active. By keeping this as a platform, further extension of the work can be done to find out a valuable drug for controlling disease vectors.
一种严重的蚊媒黄热病是影响主要人群的严重疾病之一。由于目前没有针对黄热病的特效治疗方法,因此有必要开发一种有效的药物。在非传统微波加热的帮助下,合成了一系列吖啶酮类似物 3 到 5,并通过各自的光谱特征进行了确认。5c 和 3b 对埃及伊蚊和致倦库蚊的幼虫杀灭率最高,分别达到 90%。同时,还对活性产物进行了处理,以检查非目标水生物种的死亡率。通过幼虫生物测定报告,化合物 3b 对致倦库蚊,而 5c 对埃及伊蚊的活性更高。以此为平台,可以进一步扩展工作,寻找有价值的药物来控制病媒。