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March 22, 2026Current Protein and Peptide Science0 citations

Antimicrobial Peptides: Structure, Mechanisms, and Therapeutic Potentialin Combating Infectious Diseases

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SVSaurabh VermaRSRanu SinghMKManoj Kumawat

Key Points

  • To explore the structure, mechanisms, and therapeutic applications of antimicrobial peptides (AMPs) in combating infectious diseases.
  • Reviewed the classification of AMPs by structure and source.
  • Analyzed the mechanisms by which AMPs target pathogens.
  • Discussed the current clinical trials and market presence of AMP-based drugs.
  • AMPs demonstrate broad efficacy against bacteria, fungi, and viruses.
  • They show promise in treating infections and reducing antibiotic resistance.
  • Challenges include stability, toxicity, and production costs for AMPs.

Abstract

Antimicrobial peptides (AMPs) are small, naturally occurring molecules that play a key role in the immune defense of multicellular organisms. They show strong and broad activity against many harmful agents, including bacteria, viruses, fungi, and even cancer cells. Because of their unique ability to target pathogens in multiple ways, AMPs are being studied as promising alternatives to traditional antibiotics-especially important given the growing problem of antibiotic resistance. AMPs can be grouped based on their structure, such as α-helical, β-sheet, loop, or extended forms, and by their source or biological activity. Their main ways of fighting microbes include damaging microbial membranes, disrupting essential processes inside cells, and helping regulate the host’s immune system. These mechanisms make it difficult for pathogens to develop resistance, increasing their value in modern medicine. Therapeutically, AMPs are under investigation for a range of applications, including treatment of skin infections, respiratory diseases, sepsis, and some viral and cancer-related conditions. Several AMP-based drugs are in clinical trials, and a few have already reached the market. However, challenges remain, such as poor stability in the body, vulnerability to breakdown by enzymes, potential toxicity, and high production costs. Current research is focusing on improving their effectiveness through chemical modifications, smart design, and advanced delivery systems like nanoparticles. AMPs hold great potential in the search for nextgeneration anti-infective therapies.

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Cite This Study

Verma et al. (2026) studied this question.

synapsesocial.com/papers/69bf393dc7b3c90b18b43858https://doi.org/10.2174/0113892037412027251205075307
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