Lipophilic efficient phenylthiazoles with potent undecaprenyl pyrophosphatase inhibitory activity

European Journal of Medicinal Chemistry
2019.0

Abstract

Antibiotic resistance remains a pressing medical challenge for which novel antibacterial agents are urgently needed. The phenylthiazole scaffold represents a promising platform to develop novel antibacterial agents for drug-resistant infections. However, enhancing the physicochemical profile of this class of compounds remains a challenging endeavor to address to successfully translate these molecules into novel antibacterial agents in the clinic. We extended our understanding of the SAR of the phenylthiazoles' lipophilic moiety by exploring its ability to accommodate a hydrophilic group or a smaller sized hetero-ring with the objective of enhancing the physicochemical properties of this class of novel antimicrobials. Overall, the 2-thienyl derivative 20 and the hydroxyl-containing derivative 31 emerged as the most promising antibacterial agents inhibiting growth of drug-resistant Staphylococcus aureus at a concentration as low as 1 μg/mL. Remarkably, compound 20 suppressed bacterial undecaprenyl pyrophosphatase (UppP), the molecular target of the phenylthiazole compounds, in a sub nano-molar concentration range (almost 20,000 times more potent than the lead compounds 1a and 1b). Compound 31 possessed the most balanced antibacterial and physicochemical profile. The compound exhibited rapid bactericidal activity against S. aureus, and successfully cleared intracellular S. aureus within infected macrophages. Furthermore, insertion of the hydroxyl group enhanced the aqueous solubility of 31 by more than 50-fold relative to the first-generation lead 1c.

Knowledge Graph

Similar Paper

Lipophilic efficient phenylthiazoles with potent undecaprenyl pyrophosphatase inhibitory activity
European Journal of Medicinal Chemistry 2019.0
Phenylthiazoles with nitrogenous side chain: An approach to overcome molecular obesity
European Journal of Medicinal Chemistry 2019.0
Modifying the lipophilic part of phenylthiazole antibiotics to control their drug-likeness
European Journal of Medicinal Chemistry 2020.0
From Phenylthiazoles to Phenylpyrazoles: Broadening the Antibacterial Spectrum toward Carbapenem-Resistant Bacteria
Journal of Medicinal Chemistry 2019.0
Investigating the Antibacterial Activity of Biphenylthiazoles against Methicillin- and Vancomycin-Resistant Staphylococcus aureus (MRSA and VRSA)
Journal of Medicinal Chemistry 2017.0
Phenylthiazole Antibacterial Agents Targeting Cell Wall Synthesis Exhibit Potent Activity in Vitro and in Vivo against Vancomycin-Resistant Enterococci
Journal of Medicinal Chemistry 2017.0
Design, synthesis and bioactivity evaluation of novel pyrazole linked phenylthiazole derivatives in context of antibacterial activity
Bioorganic & Medicinal Chemistry Letters 2021.0
Phenylthiazoles with tert-Butyl side chain: Metabolically stable with anti-biofilm activity
European Journal of Medicinal Chemistry 2018.0
Phenylthiazole antibiotics: A metabolism-guided approach to overcome short duration of action
European Journal of Medicinal Chemistry 2017.0
Design, synthesis and evaluation of phenylthiazole and phenylthiophene pyrimidindiamine derivatives targeting the bacterial membrane
European Journal of Medicinal Chemistry 2020.0