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Bestatin analogs-4-quinolinone hybrids as antileishmanial hits: Design, repurposing rational, synthesis, in vitro and in silico studies.

Authors :
Hassan, Ahmed H.E.
Mahmoud, Kazem
Phan, Trong-Nhat
Shaldam, Moataz A.
Lee, Chae Hyeon
Kim, Yeon Ju
Cho, Soo Bin
Bayoumi, Waleed A.
El-Sayed, Selwan M.
Choi, Yeonwoo
Moon, Suyeon
No, Joo Hwan
Lee, Yong Sup
Source :
European Journal of Medicinal Chemistry. Mar2023, Vol. 250, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Amongst different forms of leishmaniasis, visceral leishmaniasis caused by L. donovani is highly mortal. Identification of new hit compounds might afford new starting points to develop novel therapeutics. In this lieu, a rationally designed small library of bestatin analogs-4-quinolone hybrids were prepared and evaluated. Analysis of SAR unveiled distinct profiles for hybrids type 1 and type 2, which might arise from their different molecular targets. Amongst type 1 bestatin analog-4-quinolone hybrids, hybrid 1e was identified as potential hit inhibiting growth of L. donovani promastigotes by 91 and 53% at 50 and 25 μM concentrations, respectively. Meanwhile, hybrid 2j was identified amongst type 2 bestatin analog-4-quinolone hybrids as potential hit compound inhibiting growth of L. donovani promastigotes by 50 and 38% at 50 and 25 μM concentrations, respectively. Preliminary safety evaluation of the promising hit compounds showed that they are 50–100 folds safer against human derived monocytic THP-1 cells relative to the drug erufosine. In silico study was conducted to predict the possible binding of hybrid 1e with methionine aminopeptidases 1 and 2 of L. donovani. Molecular dynamic simulations verified the predicted binding modes and provide more in depth understanding of the impact of hybrid 1e on Ld MetAP-1 and Ld MetAP-2. [Display omitted] • Design and synthesis and evaluation of bestatin analogs-4-quinolinone hybrids as antileishmanial agents. • Hybrid 1e was identified as a potential hit against of L. donovani. • Hybrid 1e was safe against used human cells. • In silico studies of hybrid 1e to get molecular insights. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02235234
Volume :
250
Database :
Academic Search Index
Journal :
European Journal of Medicinal Chemistry
Publication Type :
Academic Journal
Accession number :
162391875
Full Text :
https://doi.org/10.1016/j.ejmech.2023.115211