Drug Design and Discovery Lab, Zewail City of Science and Technology, Cairo, 12578, Egypt; Biomedical Sciences Program, University of Science and Technology, Zewail City of Science and Technology, Cairo, 12578, Egypt.
Department of Chemistry, Faculty of Science, Mansoura University, Mansoura, 35516, Egypt.
Eur J Med Chem. 2021 Oct 15;222:113625. doi: 10.1016/j.ejmech.2021.113625. Epub 2021 Jun 9.
Dicationic diamidines have been well established as potent antiparasitic agents with proven activity against tropical diseases like trypanosomiasis and malaria. This work presents the synthesis of new mono and diflexible triaryl amidines (6a-c, 13a,b and 17), their aza analogues (23 and 27) and respective methoxyamidine prodrugs (5, 7, 12a,b, 22 and 26). All diamidines were assessed in vitro against Trypanosoma brucei rhodesiense (T. b. r.) and Plasmodium falciparum (P. f.) where they displayed potent to moderate activities at the nanomolar level with ICs = 11-378 nM for T. b. r. and 4-323 nM against P. f.. In vivo efficacy testing against T. b. r. STIB900 has shown the monoflexible diamidine 6c as the most potent derivative in this study eliciting 4/4 cures of infected mice for a treatment period of >60 days upon a 4 × 5 mg/kg dose i. p. treatment. Moreover, thermal melting analysis measurement ΔT for this series of diamidines/poly (dA-dT) complexes fell between 0.5 and 19 °C with 6c showing the highest binding to the DNA minor groove. Finally, a 50 ns molecular dynamics study of an AT-rich DNA dodecamer with compound 6c revealed a strong binding complex supported by vdW and electrostatic interactions.
二价双胍已被证明是有效的抗寄生虫药物,对热带疾病如锥虫病和疟疾具有显著的活性。本工作合成了新型单和双柔性三芳基脒(6a-c、13a、b 和 17)、它们的氮杂类似物(23 和 27)和相应的甲氧基脒前药(5、7、12a、b、22 和 26)。所有脒类化合物均在体外对非洲锥虫(T. b. r.)和恶性疟原虫(P. f.)进行了评估,在纳摩尔水平上表现出较强至中等的活性,IC 50 为 11-378 nM 对 T. b. r. 和 4-323 nM 对 P. f.。在体内对 T. b. r. STIB900 的疗效测试表明,单柔性脒 6c 是本研究中最有效的衍生物,在 4×5mg/kg 剂量 i.p.治疗后,4/4 只感染小鼠被治愈,治疗期超过 60 天。此外,该系列脒类化合物/聚(dA-dT)复合物的热融解分析测量 ΔT 在 0.5-19°C 之间,6c 显示与 DNA 小沟的结合最强。最后,对含有化合物 6c 的富含 AT 的 DNA 十二聚体进行了 50ns 分子动力学研究,结果表明该复合物与 DNA 有很强的结合,这一结合是由范德华力和静电相互作用支撑的。