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Chalcone scaffolds as anti-infective agents: structural and molecular target perspectives.

Abstract
In recent years, widespread outbreak of numerous infectious diseases across the globe has created havoc among the population. Particularly, the inhabitants of tropical and sub-tropical regions are mainly affected by these pathogens. Several natural and (semi) synthetic chalcones deserve the credit of being potential anti-infective candidates that inhibit various parasitic, malarial, bacterial, viral, and fungal targets like cruzain-1/2, trypanopain-Tb, trans-sialidase, glyceraldehyde-3-phosphate dehydrogenase (GAPDH), fumarate reductase, falcipain-1/2, β-hematin, topoisomerase-II, plasmepsin-II, lactate dehydrogenase, protein kinases (Pfmrk and PfPK5), and sorbitol-induced hemolysis, DEN-1 NS3, H1N1, HIV (Integrase/Protease), protein tyrosine phosphatase A/B (Ptp-A/B), FtsZ, FAS-II, lactate/isocitrate dehydrogenase, NorA efflux pump, DNA gyrase, fatty acid synthase, chitin synthase, and β-(1,3)-glucan synthase. In this review, a comprehensive study (from Jan. 1982 to May 2015) of the structural features of anti-infective chalcones, their mechanism of actions (MOAs) and structure activity relationships (SARs) have been highlighted. With the knowledge of molecular targets, structural insights and SARs, this review may be helpful for (medicinal) chemists to design more potent, safe, selective and cost effective anti-infective agents.
AuthorsDebarshi Kar Mahapatra, Sanjay Kumar Bharti, Vivek Asati
JournalEuropean journal of medicinal chemistry (Eur J Med Chem) Vol. 101 Pg. 496-524 (Aug 28 2015) ISSN: 1768-3254 [Electronic] France
PMID26188621 (Publication Type: Journal Article, Review)
CopyrightCopyright © 2015 Elsevier Masson SAS. All rights reserved.
Chemical References
  • Anti-Infective Agents
  • Enzymes
  • Chalcone
Topics
  • Animals
  • Anti-Infective Agents (chemical synthesis, chemistry, pharmacology)
  • Chalcone (chemical synthesis, chemistry, pharmacology)
  • Drug Design
  • Enzymes (metabolism)
  • Humans
  • Molecular Structure
  • Structure-Activity Relationship

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