Antibiotics of the future are prone to resistance in Gram-negative pathogens

Author:

Daruka LejlaORCID,Czikkely Márton SimonORCID,Szili PetraORCID,Farkas ZoltánORCID,Balogh DávidORCID,Maharramov Elvin,Vu Thu-Hien,Sipos LeventeORCID,Vincze Botond DávidORCID,Grézal GáborORCID,Juhász Szilvia,Dunai Anett,Daraba AndreeaORCID,Számel Mónika,Sári Tóbiás,Stirling TamásORCID,Vásárhelyi Bálint MárkORCID,Ari EszterORCID,Christodoulou Chryso,Manczinger MátéORCID,Enyedi Márton Zsolt,Jaksa Gábor,Houte Stineke vanORCID,Pursey Elizabeth,Papp Csaba Gergő,Szilovics Zóra,Pintér LajosORCID,Haracska Lajos,Gácser Attila,Kintses BálintORCID,Papp BalázsORCID,Pál CsabaORCID

Abstract

AbstractDespite the ongoing development of new antibiotics, the future evolution of bacterial resistance may render them ineffective. We demonstrate that antibiotic candidates currently under development are as prone to resistance evolution in Gram-negative pathogens as clinically employed antibiotics. Resistance generally stems from both genomic mutations and the transfer of antibiotic resistance genes from microbiomes associated with humans, both factors carrying equal significance. The molecular mechanisms of resistance overlap with those found in commonly used antibiotics. Therefore, these mechanisms are already prevalent in natural populations of pathogens, indicating that resistance can rapidly emerge through selection of pre-existing bacterial variants. Additionally, resistance to new peptide-based antibiotics enhances bacterial virulence, raising concerns. However, certain combinations of antibiotics and bacterial strains are less prone to developing resistance, emphasizing the potential of narrow-spectrum antibacterial therapies that could remain effective. Our comprehensive framework allows for predicting future health risks associated with bacterial resistance to new antibiotics.

Publisher

Cold Spring Harbor Laboratory

Reference101 articles.

1. Global burden of bacterial antimicrobial resistance in 2019: a systematic analysis

2. O’Neill, J . Tackling Drug-Resistant Infections Globally: Final Report and Recommendations https://amr-review.org/sites/default/files/160525_Final%20paper_with%20cover.pdf (2016).

3. Towards the sustainable discovery and development of new antibiotics;Nat Rev Chem,2021

4. Drugs for bad bugs: confronting the challenges of antibacterial discovery

5. Trends in Antimicrobial Drug Development: Implications for the Future

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