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April 27, 2026SHILAP Revista de lepidopterología4 citationsOpen Access

Targeting biofilm-driven antibiotic resistance: emerging mechanisms and next-generation therapeutic interventions

AMAbdulkarim MbarakaRMRitu Raj MeenaEMEkta Menghani

Key Points

  • The aim is to explore how biofilms enhance antibiotic resistance and identify innovative therapeutic strategies.
  • Review of existing literature on biofilm-mediated antimicrobial resistance and its treatment
  • Discussion of new therapeutic options such as nanotechnology and CRISPR-based tools
  • Analysis of the role of microbial biofilms in chronic infections and device-associated complications.
  • Biofilms can increase antibiotic tolerance by up to 1,000 times, complicating treatment outcomes.
  • A lack of FDA-approved anti-biofilm drugs underscores the urgent need for novel therapeutic strategies.
  • Emerging interventions include nanotechnology, antimicrobial peptides, and AI-driven drug discovery to combat biofilm-associated infections.

Abstract

Biofilm mediated antimicrobial resistance (AMR) has become a critical global health and economic challenge, affecting both community and healthcare settings. Microbial Biofilms significantly enhance the antibiotic tolerance and cause the persistent and device-associated infections via limited drug penetration, degradation of antibiotics, and assist horizontal gene transfer. Biofilm-mediated antimicrobial resistance remains a major obstacle to treating infectious diseases today. Biofilms can boost antibiotic tolerance by up to 1,000 times and lead to chronic, persistent, and device-associated infections. The lack of FDA-approved anti-biofilm drugs highlights the urgent need for new therapeutic strategies and mechanistic insights. Redefining the treatment landscape and improving outcomes for resistant infections could be achieved through a multi-platform therapeutic approach. This review summarizes recent developments in our knowledge of how biofilms contribute to antibiotic resistance and highlights new therapeutic strategies, such as nanotechnology, antimicrobial peptides, bacteriophage-derived enzymes, quorum-sensing inhibitors, CRISPR-based tools, microbiome engineering, and AI-driven drug discovery.

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Cite This Study

Mbaraka et al. (2026) studied this question.

synapsesocial.com/papers/69eefc23fede9185760d34a8https://doi.org/10.3389/fmicb.2026.1823476
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