مؤسسة الشرق الأوسط للنشر العلمي
عادةً ما يتم الرد في غضون خمس دقائق
The escalating global challenge of antibiotic resistance poses a significant threat to public health, demanding the urgent exploration and development of innovative antimicrobial strategies. Conventional antibiotics are increasingly losing their effectiveness against emerging drug-resistant bacteria, leading to prolonged illnesses, increased mortality rates, and a substantial burden on healthcare systems. In this context, the synergistic combination of laser technology, antimicrobial agents, and nanotechnology has emerged as a promising avenue to combat microbial infections, including recalcitrant drug-resistant strains and persistent biofilms.1 This interdisciplinary field harnesses the unique properties of nanomaterials and the precise control offered by laser technology to develop novel approaches for preventing and treating infections. This report aims to provide a detailed overview of the current research landscape in laser-assisted antimicrobial nanotechnology, highlighting key findings, emerging trends, and potential future directions in this rapidly evolving area. The scope of this review encompasses various synthesis methods for antimicrobial nanoparticles using lasers, the diverse mechanisms of action through which these technologies combat microbes, and their wide-ranging applications in medical devices, wound healing, and the fight against antibiotic resistance and biofilms.