School of Biotechnology and Bioinformatics, D Y Patil Deemed to be University, Navi Mumbai, Plot no 50, Sector 15, CBD Belapur, 400614, Maharashtra, India.
School of Biotechnology and Bioinformatics, D Y Patil Deemed to be University, Navi Mumbai, Plot no 50, Sector 15, CBD Belapur, 400614, Maharashtra, India.
Microb Pathog. 2024 Jul;192:106722. doi: 10.1016/j.micpath.2024.106722. Epub 2024 May 28.
The escalating threat of antimicrobial resistance (AMR) poses a grave concern to global public health, exacerbated by the alarming shortage of effective antibiotics in the pipeline. Biofilms, intricate populations of bacteria encased in self-produced matrices, pose a significant challenge to treatment, as they enhance resistance to antibiotics and contribute to the persistence of organisms. Amid these challenges, nanotechnology emerges as a promising domain in the fight against biofilms. Nanomaterials, with their unique properties at the nanoscale, offer innovative antibacterial modalities not present in traditional defensive mechanisms. This comprehensive review focuses on the potential of nanotechnology in combating biofilms, focusing on green-synthesized nanoparticles and their associated anti-biofilm potential. The review encompasses various aspects of nanoparticle-mediated biofilm inhibition, including mechanisms of action. The diverse mechanisms of action of green-synthesized nanoparticles offer valuable insights into their potential applications in addressing AMR and improving treatment outcomes, highlighting novel strategies in the ongoing battle against infectious diseases.
抗菌药物耐药性(AMR)的不断升级对全球公共卫生构成严重威胁,而令人担忧的是,新抗生素的研发严重短缺。生物膜是由细菌自身产生的基质包裹而成的复杂细菌群体,这给治疗带来了巨大的挑战,因为它们增强了细菌对抗生素的耐药性,并促进了生物的持久性。在这些挑战中,纳米技术在对抗生物膜方面展现出了广阔的前景。纳米材料在纳米尺度上具有独特的性质,提供了传统防御机制中所没有的创新型抗菌模式。本综述重点关注纳米技术在对抗生物膜方面的潜力,特别关注绿色合成纳米颗粒及其相关的抗生物膜潜力。本综述涵盖了纳米颗粒介导的生物膜抑制的各个方面,包括作用机制。绿色合成纳米颗粒的多种作用机制为其在解决 AMR 和改善治疗效果方面的潜在应用提供了有价值的见解,强调了在与传染病的持续斗争中采用新策略的必要性。