An Insight into Rational Drug Design: The Development of In-House Azole Compounds with Antimicrobial Activity

Author:

Ungureanu Daniel123ORCID,Oniga Ovidiu1,Moldovan Cristina1ORCID,Ionuț Ioana1,Marc Gabriel1ORCID,Stana Anca1ORCID,Pele Raluca1ORCID,Duma Mihaela4ORCID,Tiperciuc Brîndușa1ORCID

Affiliation:

1. Department of Pharmaceutical Chemistry, “Iuliu Hațieganu” University of Medicine and Pharmacy, 41 Victor Babeș Street, 400012 Cluj-Napoca, Romania

2. “Prof. Dr. Ion Chiricuță” Oncology Institute, 34-36 Republicii Street, 400015 Cluj-Napoca, Romania

3. Department of Clinical Pharmacy, “Iuliu Hațieganu” University of Medicine and Pharmacy, 12 Ion Creangă Street, 400010 Cluj-Napoca, Romania

4. State Veterinary Laboratory for Animal Health and Safety, 1 Piața Mărăști Street, 400609 Cluj-Napoca, Romania

Abstract

Antimicrobial resistance poses a major threat to global health as the number of efficient antimicrobials decreases and the number of resistant pathogens rises. Our research group has been actively involved in the design of novel antimicrobial drugs. The blueprints of these compounds were azolic heterocycles, particularly thiazole. Starting with oxadiazolines, our research group explored, one by one, the other five-membered heterocycles, developing more or less potent compounds. An overview of this research activity conducted by our research group allowed us to observe an evolution in the methodology used (from inhibition zone diameters to minimal inhibitory concentrations and antibiofilm potential determination) correlated with the design of azole compounds based on results obtained from molecular modeling. The purpose of this review is to present the development of in-house azole compounds with antimicrobial activity, designed over the years by this research group from the departments of Pharmaceutical and Therapeutical Chemistry in Cluj-Napoca.

Funder

University of Medicine and Pharmacy

Publisher

MDPI AG

Reference201 articles.

1. Global Antimicrobial-Resistance Drivers: An Ecological Country-Level Study at the Human–Animal Interface;Allel;Lancet Planet. Health,2023

2. (2024, August 02). WHO Global Antimicrobial Resistance and Use Surveillance System (GLASS) Report: 2022. Available online: https://www.who.int/publications/i/item/9789240062702.

3. (2024, August 02). WHO Antimicrobial Resistance. Available online: https://www.who.int/news-room/fact-sheets/detail/antimicrobial-resistance.

4. Global Burden of Bacterial Antimicrobial Resistance in 2019: A Systematic Analysis;Murray;Lancet,2022

5. The Multi-Faceted Potential of Plant-Derived Metabolites as Antimicrobial Agents against Multidrug-Resistant Pathogens;Shin;Microb. Pathog.,2018

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