Ghaith Eslam A, Ali Hajar A, Ismail Mohamed A, Fouda Abd El-Aziz S, Abd El Salam M
Chemistry Department, Faculty of Science, Mansoura University, Mansoura, 35516, Egypt.
Plant Protection Research Institute, ARC, Dokki, Giza, Egypt.
BMC Chem. 2023 Oct 27;17(1):144. doi: 10.1186/s13065-023-01050-w.
The emergence of pest resistance of Spodoptera littoralis (order; Lepidoptera, family; Noctuidae) towards the large scale of different classes of insecticides necessitates the development of some new poly-functionalized biphenyl and azabiphenyl with highly anticipated insecticidal bioresponse. Four new biphenyl carboxamidines 4a-d and four aza-analogue picolinamidine derivatives 8a-d were designed and prepared via the treatment of their corresponding carbonitriles with lithium-bis trimethylsilylamide [LiN(TMS)], followed by hydrolysis with hydrogen chloride. Furthermore, these compounds were elucidated by spectral data, and their toxicity and insecticidal activity were screened against Spodoptera littoralis. Whereby, toxicological and biochemical aspects of the inventively synthesized biphenyl and azabiphenyl derivatives against the cotton leafworm, Spodoptera littoralis were inspected. As regards the indomitable LC and LC values, biphenyl and aza-analogues 8d, 8a, 4b, and 8b, revealed the furthermost forceful toxic effects with LC values of 113.860, 146.265, 216.624, and 289.879 ppm, respectively. Whereby, their LC values are 1235.108, 1679.044, 2656.296, and 3381.256 ppm, respectively, and toxicity index being 22.31%, 17.36%, 11.72%, and 8.76%, respectively, comparing with the already recommended, methomyl insecticide, lannate 90% SP (LC, 25.396 and LC, 57.860 and toxicity index, 100%). Additionally, electrochemical parameters via DFT studies were carried out for demonstrating and elucidation of structure-activity relationship (SAR) according to highly motived compounds descriptors, and the in vivo insecticidal activities.
滨海夜蛾(目:鳞翅目,科:夜蛾科)对大规模不同种类杀虫剂产生害虫抗性,这就需要研发一些具有高度预期杀虫生物反应的新型多功能联苯和氮杂联苯。通过用双(三甲基硅基)氨基锂[LiN(TMS)]处理相应的腈,然后用氯化氢水解,设计并制备了四种新型联苯甲脒4a - d和四种氮杂类似物吡啶甲脒衍生物8a - d。此外,通过光谱数据对这些化合物进行了阐明,并针对滨海夜蛾对它们的毒性和杀虫活性进行了筛选。据此,对创造性合成的联苯和氮杂联苯衍生物针对棉铃虫滨海夜蛾的毒理学和生化方面进行了研究。关于难以克服的LC和LC值,联苯和氮杂类似物8d、8a、4b和8b分别显示出最强的毒性作用,LC值分别为113.860、146.265、216.624和289.879 ppm。据此,它们的LC值分别为1235.108、'1679.044、2656.296和3381.256 ppm,毒性指数分别为22.31%、17.36%、11.72%和8.76%,与已推荐的灭多威杀虫剂(90%SP兰纳特,LC为25.396,LC为57.860,毒性指数为100%)相比。此外,通过DFT研究进行了电化学参数测定,以便根据高度活跃的化合物描述符以及体内杀虫活性来证明和阐明构效关系(SAR)。