Recent advancements in anti-leishmanial research: Synthetic strategies and structural activity relationships

European Journal of Medicinal Chemistry
2021.0

Abstract

Leishmaniasis is a parasitic neglected tropical disease caused by various species of Leishmania parasite. Despite tremendous advancements in the therapeutic sector and drug development strategies, still the existing anti-leishmanial agents are associated with some clinical issues like drug resistance, toxicity and selectivity. Therefore, several research groups are continuously working towards the development of new therapeutic candidates to overcome these issues. Many potential heterocyclic moieties have been explored for this purpose including triazoles, chalcones, chromone, thiazoles, thiosemicarbazones, indole, quinolines, etc. It is evident from the literature that the majority of anti-leishmanial agents act by interacting with key regulators including PTR-I, DHFR, LdMetAP1, MAPK, 14 α-demethylase and pteridine reductase-I, etc. Also, these tend to induce the production of ROS which causes damage to parasites. In the present compilation, authors have summarized various significant synthetic procedures for anti-leishmanial agents reported in recent years. A brief description of the pharmacological potentials of synthesized compounds along with important aspects related to structural activity relationship has been provided. Important docking outcomes highlighting the possible mode of interaction for the reported compounds have also been included. This review would be helpful to the scientific community to design newer strategies and also to develop novel therapeutic candidates against leishmaniasis.

Knowledge Graph

Similar Paper

Recent advancements in anti-leishmanial research: Synthetic strategies and structural activity relationships
European Journal of Medicinal Chemistry 2021.0
An update on small molecule strategies targeting leishmaniasis
European Journal of Medicinal Chemistry 2018.0
Discovery of Triazine Mimetics As Potent Antileishmanial Agents
ACS Medicinal Chemistry Letters 2013.0
Molecular Docking and in Vitro Antileishmanial Evaluation of Chromene-2-thione Analogues
ACS Medicinal Chemistry Letters 2012.0
Structure based medicinal chemistry-driven strategy to design substituted dihydropyrimidines as potential antileishmanial agents
European Journal of Medicinal Chemistry 2016.0
Design, synthesis, structure-activity relationship and mechanism of action studies of a series of 4-chloro-1-phthalazinyl hydrazones as a potent agent against Leishmania braziliensis
European Journal of Medicinal Chemistry 2017.0
Identification of chalcone-based antileishmanial agents targeting trypanothione reductase
European Journal of Medicinal Chemistry 2018.0
Synthesis, in vitro biological evaluation and in silico studies of certain arylnicotinic acids conjugated with aryl (thio)semicarbazides as a novel class of anti-leishmanial agents
European Journal of Medicinal Chemistry 2019.0
Natural and synthetic coumarins as antileishmanial agents: A review
European Journal of Medicinal Chemistry 2020.0
Structure-Based Selectivity Optimization of Piperidine–Pteridine Derivatives as Potent Leishmania Pteridine Reductase Inhibitors
Journal of Medicinal Chemistry 2012.0