2017
DOI: 10.1021/acs.jcim.7b00072
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Cheminformatic Analysis of Antimalarial Chemical Space Illuminates Therapeutic Mechanisms and Offers Strategies for Therapy Development

Abstract: The clear and present danger of malaria, which has been amplified in recent years by climate change, and the progressive thinning of our drug arsenal over the past two decades raise uncomfortable questions about the current state and future of antimalarial drug development. Besides suffering from many of the same technical challenges that affect drug development in other disease areas, the quest for new antimalarial therapies is also hindered by the complex, dynamic life cycle of the malaria parasite, P. falci… Show more

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Cited by 4 publications
(2 citation statements)
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“…Nanoinformatics is concerned with acquiring information in the field of nanotechnology and developing tools for the efficient use of this information ( Nanoinformatics 2020 Roadmap , 2011). Chemical and drug information has collaborated with cheminformatics over the past decades (Gasteiger, 2006; Varela et al, 2017). Cheminformatics tools and techniques help chemists better understand the complex structures of chemical compounds.…”
Section: Cheminformatic Industrymentioning
confidence: 99%
“…Nanoinformatics is concerned with acquiring information in the field of nanotechnology and developing tools for the efficient use of this information ( Nanoinformatics 2020 Roadmap , 2011). Chemical and drug information has collaborated with cheminformatics over the past decades (Gasteiger, 2006; Varela et al, 2017). Cheminformatics tools and techniques help chemists better understand the complex structures of chemical compounds.…”
Section: Cheminformatic Industrymentioning
confidence: 99%
“…In conclusion, although both are valid paradigms, historically, target-based screening has been the method of choice to identify best-in-class drugs, whereas phenotypic screens have served to identify first-in-class drugs [171]. Once the most promising hits are identified, new simulation-based computational analyses [172] and mammalian cell toxicity tests [173] are performed with a threefold objective: (i) to avoid toxic compounds, (ii) to perform QSAR analysis in order to introduce chemical modifications that improve the pharmacokinetic and pharmacodynamic properties of the compounds, and (iii) to avoid compounds which require complex synthesis at the pilot or industrial plant scales.…”
Section: Current Tools For Drug Screeningmentioning
confidence: 99%