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January 22, 2026International Journal of Molecular Sciences58 citationsOpen Access

Silver Nanoparticles in Antibacterial Research: Mechanisms, Applications, and Emerging Perspectives

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YEYüksel ErkinFEFurkan EkerEAEmir Akdaşçi

Key Points

  • The research aims to explore the antibacterial potential, mechanisms, and applications of silver nanoparticles (AgNPs) across various fields.
  • Reviewed recent literature on silver nanoparticles' antibacterial properties
  • Analyzed mechanisms of action including cytotoxic effects and cell membrane disruption
  • Discussed applications in agriculture, biomedical, and environmental fields
  • Silver nanoparticles effectively disrupt bacterial cell membranes and inhibit DNA replication
  • Demonstrated potential against antibiotic-resistant strains
  • Highlighted variations in shape, size, and surface properties influencing efficacy
  • Identified toxicity risks associated with inappropriate dosages of AgNPs

Abstract

Silver nanoparticles (AgNPs) possess distinct physicochemical characteristics and demonstrate high antibacterial potential that highlights them as promising alternatives against a wide range of pathogens. The immense antibacterial potential of AgNPs is primarily attributed to the release of silver ions that lead to the disruption of bacterial cell membrane, generation of reactive oxygen species (ROS), inhibition of protein synthesis and interference with DNA replication. Variations in AgNPs’ shape, size, and surface characteristics are also considered key factors determining their effectivity as well as specificity. AgNPs are considered potent antibacterial agents, including against antibiotic- and drug-resistant strains. However, inappropriate dosages or unoptimized application of may result in potential toxicity, consisting one of the main drawbacks of the AgNPs’ safer administration. This article reviews the recent literature on the antibacterial potential of AgNPs, focusing on their broad mechanisms of action, applicability, especially in agriculture, biomedical and environmental fields, toxicity and future perspectives.

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Cite This Study

Erkin et al. (2026) studied this question.

synapsesocial.com/papers/6971be50642b1836717e2f74https://doi.org/10.3390/ijms27020927
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