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September 20, 2025Microorganisms31 citationsOpen Access

An Overview of the Epidemiology of Multidrug Resistance and Bacterial Resistance Mechanisms: What Solutions Are Available? A Comprehensive Review

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VBVictoria BîrluțiuRBRareş Mircea Bîrluţiu

Key Points

  • Antimicrobial resistance could lead to over 10 million deaths annually by 2050, emphasizing the global health crisis.
  • In 2019, bacterial infections caused 13.6% of global deaths, primarily from pathogens like Staphylococcus aureus and Escherichia coli.
  • Resistance mechanisms include biofilm formation and efflux pump overexpression, contributing to multidrug-resistant types.
  • Emerging therapeutic solutions include novel antibiotics and natural compounds to address the AMR crisis effectively.

Abstract

Antimicrobial resistance has emerged as one of the most critical public health challenges of the 21st century, threatening to undermine the foundations of modern medicine. In 2019, bacterial infections accounted for 13.6% of all global deaths, with more than 7.7 million fatalities directly attributable to 33 bacterial pathogens, most prominently Staphylococcus aureus, Streptococcus pneumoniae, Escherichia coli, Klebsiella pneumoniae, and Pseudomonas aeruginosa. Resistance mechanisms are multifactorial, encompassing enzymatic degradation, target modification, efflux pump overexpression, reduced membrane permeability, and biofilm formation, often in combination, leading to multidrug-resistant, extensively drug-resistant, and pandrug-resistant phenotypes. Alarmingly, projections estimate that by 2050 AMR could result in over 10 million deaths annually. This comprehensive review synthesizes global epidemiological data, insights into bacterial resistance mechanisms, and emerging therapeutic solutions, including novel antibiotics such as lasso peptides and macrocyclic peptides (e.g., zosurabalpin), naturally derived compounds (e.g., corallopyronin, clovibactin, chlorotonil A), and targeted inhibitors (e.g., Debio 1453 for Neisseria gonorrhoeae). Addressing the AMR crisis requires coordinated international efforts, accelerated drug discovery, and the integration of innovative non-antibiotic approaches to preserve the efficacy of existing therapies and ensure preparedness against future bacterial threats.

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Cite This Study

Bîrluțiu et al. (2025) studied this question.

synapsesocial.com/papers/68d469ce31b076d99fa66a80https://doi.org/10.3390/microorganisms13092194
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