Cargando…

Pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (NTDs): identification of hit compounds towards development of potential treatment of Leishmania donovani

A rational-based process was adopted for repurposing pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs bearing variable acyl chains, different stereochemical configuration and/or positional relationships. Structural features were highly influential on activity. Amongst, enantiomer 1e havi...

Descripción completa

Detalles Bibliográficos
Autores principales: Hassan, Ahmed H. E., Phan, Trong-Nhat, Yoon, Seolmin, Lee, Cheol Jung, Jeon, Hye Rim, Kim, Seung-Hwan, No, Joo Hwan, Lee, Yong Sup
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8386730/
https://www.ncbi.nlm.nih.gov/pubmed/34425714
http://dx.doi.org/10.1080/14756366.2021.1969385
_version_ 1783742309731401728
author Hassan, Ahmed H. E.
Phan, Trong-Nhat
Yoon, Seolmin
Lee, Cheol Jung
Jeon, Hye Rim
Kim, Seung-Hwan
No, Joo Hwan
Lee, Yong Sup
author_facet Hassan, Ahmed H. E.
Phan, Trong-Nhat
Yoon, Seolmin
Lee, Cheol Jung
Jeon, Hye Rim
Kim, Seung-Hwan
No, Joo Hwan
Lee, Yong Sup
author_sort Hassan, Ahmed H. E.
collection PubMed
description A rational-based process was adopted for repurposing pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs bearing variable acyl chains, different stereochemical configuration and/or positional relationships. Structural features were highly influential on activity. Amongst, enantiomer 1e having 1,2-vicinal relationship for the -CH(2)O- and the N-acyl moieties, a saturated palmitoyl chain and an opposite stereochemical configuration to natural sphingolipids was the most potent hit compound against promastigotes showing IC(50) value of 28.32 µM. The corresponding enantiomer 1a was 2-fold less potent showing a eudismic ratio of 0.54 in promastigotes. Compounds 1a and 1e inhibited the growth of amastigotes more potently relative to promastigotes. Amongst, enantiomer 1a as the more selective and safer. In silico docking study using a homology model of Leishmania donovani inositol phosphoceramide synthase (IPCS) provided plausible reasoning for the molecular factors underlying the found activity. Collectively, this study suggests compounds 1a and 1e as potential hit compounds for further development of new antileishmanial agents.
format Online
Article
Text
id pubmed-8386730
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Taylor & Francis
record_format MEDLINE/PubMed
spelling pubmed-83867302021-08-25 Pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (NTDs): identification of hit compounds towards development of potential treatment of Leishmania donovani Hassan, Ahmed H. E. Phan, Trong-Nhat Yoon, Seolmin Lee, Cheol Jung Jeon, Hye Rim Kim, Seung-Hwan No, Joo Hwan Lee, Yong Sup J Enzyme Inhib Med Chem Research Paper A rational-based process was adopted for repurposing pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs bearing variable acyl chains, different stereochemical configuration and/or positional relationships. Structural features were highly influential on activity. Amongst, enantiomer 1e having 1,2-vicinal relationship for the -CH(2)O- and the N-acyl moieties, a saturated palmitoyl chain and an opposite stereochemical configuration to natural sphingolipids was the most potent hit compound against promastigotes showing IC(50) value of 28.32 µM. The corresponding enantiomer 1a was 2-fold less potent showing a eudismic ratio of 0.54 in promastigotes. Compounds 1a and 1e inhibited the growth of amastigotes more potently relative to promastigotes. Amongst, enantiomer 1a as the more selective and safer. In silico docking study using a homology model of Leishmania donovani inositol phosphoceramide synthase (IPCS) provided plausible reasoning for the molecular factors underlying the found activity. Collectively, this study suggests compounds 1a and 1e as potential hit compounds for further development of new antileishmanial agents. Taylor & Francis 2021-08-23 /pmc/articles/PMC8386730/ /pubmed/34425714 http://dx.doi.org/10.1080/14756366.2021.1969385 Text en © 2021 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Hassan, Ahmed H. E.
Phan, Trong-Nhat
Yoon, Seolmin
Lee, Cheol Jung
Jeon, Hye Rim
Kim, Seung-Hwan
No, Joo Hwan
Lee, Yong Sup
Pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (NTDs): identification of hit compounds towards development of potential treatment of Leishmania donovani
title Pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (NTDs): identification of hit compounds towards development of potential treatment of Leishmania donovani
title_full Pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (NTDs): identification of hit compounds towards development of potential treatment of Leishmania donovani
title_fullStr Pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (NTDs): identification of hit compounds towards development of potential treatment of Leishmania donovani
title_full_unstemmed Pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (NTDs): identification of hit compounds towards development of potential treatment of Leishmania donovani
title_short Pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (NTDs): identification of hit compounds towards development of potential treatment of Leishmania donovani
title_sort pyrrolidine-based 3-deoxysphingosylphosphorylcholine analogs as possible candidates against neglected tropical diseases (ntds): identification of hit compounds towards development of potential treatment of leishmania donovani
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8386730/
https://www.ncbi.nlm.nih.gov/pubmed/34425714
http://dx.doi.org/10.1080/14756366.2021.1969385
work_keys_str_mv AT hassanahmedhe pyrrolidinebased3deoxysphingosylphosphorylcholineanalogsaspossiblecandidatesagainstneglectedtropicaldiseasesntdsidentificationofhitcompoundstowardsdevelopmentofpotentialtreatmentofleishmaniadonovani
AT phantrongnhat pyrrolidinebased3deoxysphingosylphosphorylcholineanalogsaspossiblecandidatesagainstneglectedtropicaldiseasesntdsidentificationofhitcompoundstowardsdevelopmentofpotentialtreatmentofleishmaniadonovani
AT yoonseolmin pyrrolidinebased3deoxysphingosylphosphorylcholineanalogsaspossiblecandidatesagainstneglectedtropicaldiseasesntdsidentificationofhitcompoundstowardsdevelopmentofpotentialtreatmentofleishmaniadonovani
AT leecheoljung pyrrolidinebased3deoxysphingosylphosphorylcholineanalogsaspossiblecandidatesagainstneglectedtropicaldiseasesntdsidentificationofhitcompoundstowardsdevelopmentofpotentialtreatmentofleishmaniadonovani
AT jeonhyerim pyrrolidinebased3deoxysphingosylphosphorylcholineanalogsaspossiblecandidatesagainstneglectedtropicaldiseasesntdsidentificationofhitcompoundstowardsdevelopmentofpotentialtreatmentofleishmaniadonovani
AT kimseunghwan pyrrolidinebased3deoxysphingosylphosphorylcholineanalogsaspossiblecandidatesagainstneglectedtropicaldiseasesntdsidentificationofhitcompoundstowardsdevelopmentofpotentialtreatmentofleishmaniadonovani
AT nojoohwan pyrrolidinebased3deoxysphingosylphosphorylcholineanalogsaspossiblecandidatesagainstneglectedtropicaldiseasesntdsidentificationofhitcompoundstowardsdevelopmentofpotentialtreatmentofleishmaniadonovani
AT leeyongsup pyrrolidinebased3deoxysphingosylphosphorylcholineanalogsaspossiblecandidatesagainstneglectedtropicaldiseasesntdsidentificationofhitcompoundstowardsdevelopmentofpotentialtreatmentofleishmaniadonovani