Synthesis, Biological Evaluation, Structure-Activity Relationship, and Mechanism of Action Studies of Quinoline-Metronidazole Derivatives Against Experimental Visceral Leishmaniasis

التفاصيل البيبلوغرافية
العنوان: Synthesis, Biological Evaluation, Structure-Activity Relationship, and Mechanism of Action Studies of Quinoline-Metronidazole Derivatives Against Experimental Visceral Leishmaniasis
المؤلفون: Naveen Parmar, Muhammad Wahajuddin, Sampa Gupta, Susanta Kar, Akanksha Upadhyay, Pragati Kushwaha, Pragya Chandrakar, Mamunur Rashid, Koneni V. Sashidhara, Sandeep Kumar Singh
المصدر: Journal of medicinal chemistry. 62(11)
سنة النشر: 2019
مصطلحات موضوعية: Leishmania donovani, Antiprotozoal Agents, Chemistry Techniques, Synthetic, Pharmacology, 01 natural sciences, 03 medical and health sciences, Structure-Activity Relationship, Metronidazole, Drug Discovery, Chlorocebus aethiops, medicine, Structure–activity relationship, Animals, Tissue Distribution, Cytotoxicity, Amastigote, Vero Cells, 030304 developmental biology, 0303 health sciences, biology, Chemistry, Leishmaniasis, biology.organism_classification, medicine.disease, 0104 chemical sciences, Rats, 010404 medicinal & biomolecular chemistry, Disease Models, Animal, Visceral leishmaniasis, Mechanism of action, Vero cell, Quinolines, Molecular Medicine, Leishmaniasis, Visceral, medicine.symptom
الوصف: In our efforts to identify novel chemical scaffolds for the development of antileishmanial agents, a series of quinoline-metronidazole hybrid compounds was synthesized and tested against the murine model of visceral leishmaniasis. Among all synthesized derivatives, 15b and 15i showed significant antileishmanial efficacy against both extracellular promastigote (IC50 9.54 and 5.42 μM, respectively) and intracellular amastigote (IC50 9.81 and 3.75 μM, respectively) forms of Leishmania donovani with negligible cytotoxicity toward the host (J774 macrophages, Vero cells). However, compound 15i effectively inhibited the parasite burden in the liver and spleen (>80%) of infected BALB/c mice. Mechanistic studies revealed that 15i triggers oxidative stress which induces bioenergetic collapse and apoptosis of the parasite by decreasing ATP production and mitochondrial membrane potential. Structure-activity analyses and pharmacokinetic studies suggest 15i as a promising antileishmanial lead and emphasize the importance of quinoline-metronidazole series as a suitable platform for the future development of antileishmanial agents.
تدمد: 1520-4804
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::825841f1c269d099c7c633676b6055cd
https://pubmed.ncbi.nlm.nih.gov/31124675
Rights: CLOSED
رقم الانضمام: edsair.doi.dedup.....825841f1c269d099c7c633676b6055cd
قاعدة البيانات: OpenAIRE