Regio- and Stereoselective Epoxidation and Acidic Epoxide Opening of Antibacterial and Antiplasmodial Chlorotonils Yield Highly Potent Derivatives

Abstract

The rise of antimicrobial resistance poses a severe threat to public health. The natural product chlorotonil was identified as a new antibiotic targeting multidrug resistant Gram-positive pathogens and Plasmodium falciparum. Although chlorotonil shows promising activities, the scaffold is highly lipophilic and displays potential biological instabilities. Therefore, we strived towards improving its pharmaceutical properties by semisynthesis. We demonstrated stereoselective epoxidation of chlorotonils and epoxide ring opening in moderate to good yields providing derivatives with significantly enhanced solubility. Furthermore, in vivo stability of the derivatives was improved while retaining their nanomolar activity against critical human pathogens (e.g. methicillin-resistant Staphylococcus aureus and P. falciparum). Intriguingly, we showed further superb activity for the frontrunner molecule in a mouse model of S. aureus infection. © 2022 The Authors. Angewandte Chemie International Edition published by Wiley-VCH GmbH.

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Keywords

Anti-infectives, Chlorotonil, Epoxidation, Natural products, Pharmacokinetics, Animals, Anti-bacterial agents, Antimalarials, Epoxy compounds, Humans, Malaria, falciparum, Methicillin-resistant staphylococcus aureus, Mice, Microbial sensitivity tests, Staphylococcus aureus, Bacteria, Health risks, Scaffolds, Antiinfective agent, Antimalarial agent, Epoxide, Antibacterials, Antimicrobial resistances, Epoxide openings, Gram-positive pathogens, Multidrug resistants, Regio-selective, Stereo-selective, Animal, Human, Malaria falciparum, Methicillin resistant staphylococcus aureus, Microbial sensitivity test, Mouse, Stereoselectivity

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