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Anti-malarial activity of a non-piperidine library of next-generation quinoline methanols

BACKGROUND: The clinical utility for mefloquine has been eroded due to its association with adverse neurological effects. Better-tolerated alternatives are required. The objective of the present study was the identification of lead compounds that are as effective as mefloquine, but exhibit physioche...

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Autores principales: Milner, Erin, McCalmont, William, Bhonsle, Jayendra, Caridha, Diana, Cobar, Jose, Gardner, Sean, Gerena, Lucia, Goodine, Duane, Lanteri, Charlotte, Melendez, Victor, Roncal, Norma, Sousa, Jason, Wipf, Peter, Dow, Geoffrey Stuart
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2833169/
https://www.ncbi.nlm.nih.gov/pubmed/20149249
http://dx.doi.org/10.1186/1475-2875-9-51
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author Milner, Erin
McCalmont, William
Bhonsle, Jayendra
Caridha, Diana
Cobar, Jose
Gardner, Sean
Gerena, Lucia
Goodine, Duane
Lanteri, Charlotte
Melendez, Victor
Roncal, Norma
Sousa, Jason
Wipf, Peter
Dow, Geoffrey Stuart
author_facet Milner, Erin
McCalmont, William
Bhonsle, Jayendra
Caridha, Diana
Cobar, Jose
Gardner, Sean
Gerena, Lucia
Goodine, Duane
Lanteri, Charlotte
Melendez, Victor
Roncal, Norma
Sousa, Jason
Wipf, Peter
Dow, Geoffrey Stuart
author_sort Milner, Erin
collection PubMed
description BACKGROUND: The clinical utility for mefloquine has been eroded due to its association with adverse neurological effects. Better-tolerated alternatives are required. The objective of the present study was the identification of lead compounds that are as effective as mefloquine, but exhibit physiochemical properties likely to render them less susceptible to passage across the blood-brain barrier. METHODS: A library of drug-like non-piperidine analogs of mefloquine was synthesized. These compounds are diverse in structure and physiochemical properties. They were screened in appropriate in vitro assays and evaluated in terms of their potential as lead compounds. The correlation of specific structural attributes and physiochemical properties with activity was assessed. RESULTS: The most potent analogs were low molecular weight unconjugated secondary amines with no heteroatoms in their side-chains. However, these compounds were more metabolically labile and permeable than mefloquine. In terms of physiochemical properties, lower polar surface area, lower molecular weight, more freely rotatable bonds and fewer H-bond acceptors were associated with greater potency. There was no such relationship between activity and LogP, LogD or the number of hydrogen bond donors (HBDs). The addition of an H-bond donor to the side-chain yielded a series of active diamines, which were as metabolically stable as mefloquine but showed reduced permeability. CONCLUSIONS: A drug-like library of non-piperidine analogs of mefloquine was synthesized. From amongst this library an active lead series of less permeable, but metabolically stable, diamines was identified.
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spelling pubmed-28331692010-03-06 Anti-malarial activity of a non-piperidine library of next-generation quinoline methanols Milner, Erin McCalmont, William Bhonsle, Jayendra Caridha, Diana Cobar, Jose Gardner, Sean Gerena, Lucia Goodine, Duane Lanteri, Charlotte Melendez, Victor Roncal, Norma Sousa, Jason Wipf, Peter Dow, Geoffrey Stuart Malar J Research BACKGROUND: The clinical utility for mefloquine has been eroded due to its association with adverse neurological effects. Better-tolerated alternatives are required. The objective of the present study was the identification of lead compounds that are as effective as mefloquine, but exhibit physiochemical properties likely to render them less susceptible to passage across the blood-brain barrier. METHODS: A library of drug-like non-piperidine analogs of mefloquine was synthesized. These compounds are diverse in structure and physiochemical properties. They were screened in appropriate in vitro assays and evaluated in terms of their potential as lead compounds. The correlation of specific structural attributes and physiochemical properties with activity was assessed. RESULTS: The most potent analogs were low molecular weight unconjugated secondary amines with no heteroatoms in their side-chains. However, these compounds were more metabolically labile and permeable than mefloquine. In terms of physiochemical properties, lower polar surface area, lower molecular weight, more freely rotatable bonds and fewer H-bond acceptors were associated with greater potency. There was no such relationship between activity and LogP, LogD or the number of hydrogen bond donors (HBDs). The addition of an H-bond donor to the side-chain yielded a series of active diamines, which were as metabolically stable as mefloquine but showed reduced permeability. CONCLUSIONS: A drug-like library of non-piperidine analogs of mefloquine was synthesized. From amongst this library an active lead series of less permeable, but metabolically stable, diamines was identified. BioMed Central 2010-02-11 /pmc/articles/PMC2833169/ /pubmed/20149249 http://dx.doi.org/10.1186/1475-2875-9-51 Text en Copyright ©2010 Milner et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Milner, Erin
McCalmont, William
Bhonsle, Jayendra
Caridha, Diana
Cobar, Jose
Gardner, Sean
Gerena, Lucia
Goodine, Duane
Lanteri, Charlotte
Melendez, Victor
Roncal, Norma
Sousa, Jason
Wipf, Peter
Dow, Geoffrey Stuart
Anti-malarial activity of a non-piperidine library of next-generation quinoline methanols
title Anti-malarial activity of a non-piperidine library of next-generation quinoline methanols
title_full Anti-malarial activity of a non-piperidine library of next-generation quinoline methanols
title_fullStr Anti-malarial activity of a non-piperidine library of next-generation quinoline methanols
title_full_unstemmed Anti-malarial activity of a non-piperidine library of next-generation quinoline methanols
title_short Anti-malarial activity of a non-piperidine library of next-generation quinoline methanols
title_sort anti-malarial activity of a non-piperidine library of next-generation quinoline methanols
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2833169/
https://www.ncbi.nlm.nih.gov/pubmed/20149249
http://dx.doi.org/10.1186/1475-2875-9-51
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