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Discovery of new antimalarial chemotypes through chemical methodology and library development.


ABSTRACT: In an effort to expand the stereochemical and structural complexity of chemical libraries used in drug discovery, the Center for Chemical Methodology and Library Development at Boston University has established an infrastructure to translate methodologies accessing diverse chemotypes into arrayed libraries for biological evaluation. In a collaborative effort, the NIH Chemical Genomics Center determined IC(50)'s for Plasmodium falciparum viability for each of 2,070 members of the CMLD-BU compound collection using quantitative high-throughput screening across five parasite lines of distinct geographic origin. Three compound classes displaying either differential or comprehensive antimalarial activity across the lines were identified, and the nascent structure activity relationships (SAR) from this experiment used to initiate optimization of these chemotypes for further development.

SUBMITTER: Brown LE 

PROVIDER: S-EPMC3084078 | biostudies-literature | 2011 Apr

REPOSITORIES: biostudies-literature

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Discovery of new antimalarial chemotypes through chemical methodology and library development.

Brown Lauren E LE   Chih-Chien Cheng Ken K   Wei Wan-Guo WG   Yuan Pingwei P   Dai Peng P   Trilles Richard R   Ni Feng F   Yuan Jing J   MacArthur Ryan R   Guha Rajarshi R   Johnson Ronald L RL   Su Xin-zhuan XZ   Dominguez Melissa M MM   Snyder John K JK   Beeler Aaron B AB   Schaus Scott E SE   Inglese James J   Porco John A JA  

Proceedings of the National Academy of Sciences of the United States of America 20110415 17


In an effort to expand the stereochemical and structural complexity of chemical libraries used in drug discovery, the Center for Chemical Methodology and Library Development at Boston University has established an infrastructure to translate methodologies accessing diverse chemotypes into arrayed libraries for biological evaluation. In a collaborative effort, the NIH Chemical Genomics Center determined IC(50)'s for Plasmodium falciparum viability for each of 2,070 members of the CMLD-BU compound  ...[more]

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