Algadi Hend, Abdelfatah Alhoot Mohammed, Yaaqoob Laith A
Management & Science University, Postgraduate Center, Shah Alam, Selangor, Malaysia.
Management & Science University, School of Graduate Studies, Shah Alam, Selangor, Malaysia.
J Appl Biomed. 2025 Mar;23(1):1-11. doi: 10.32725/jab.2025.001. Epub 2025 Feb 10.
A substantial threat to worldwide health, the proliferation of antibiotic-resistant bacteria compels researchers to seek innovative antibacterial substances. This systematic review assesses the role of nanoparticles, particularly Calcium oxide and Silicon oxide nanoparticles, in infection control. The article examines the mechanisms by which these nanoparticles act against various bacteria and evaluates their potential as novel agents in infection control strategies. A systematic literature search from 2015 to 2024 encompassing Web of Science, PubMed, Wiley, Science Direct, and Google Scholar, yielded 70 publications meeting the review criteria. This comprehensive methodology provides a thorough understanding of the capabilities and limitations of Calcium oxide and Silicon oxide nanoparticles as antibacterial agents. The review aims to build a solid foundation for the utilization of nanoparticles in addressing the obstacles presented by antibiotic resistance by combining data from various investigations. Additionally, it aims to explore the safety and environmental implications associated with their use in clinical and environmental settings, providing a comprehensive analysis that may contribute to future studies and real-world applications in the field of antimicrobial technology.
抗生素耐药菌的扩散对全球健康构成了重大威胁,促使研究人员寻找创新的抗菌物质。本系统综述评估了纳米颗粒,特别是氧化钙和氧化硅纳米颗粒在感染控制中的作用。文章研究了这些纳米颗粒对抗各种细菌的作用机制,并评估了它们作为感染控制策略中新型药物的潜力。2015年至2024年在科学网、PubMed、威利、科学Direct和谷歌学术上进行的系统文献检索,产生了70篇符合综述标准的出版物。这种全面的方法提供了对氧化钙和氧化硅纳米颗粒作为抗菌剂的能力和局限性的透彻理解。该综述旨在通过整合来自各种调查的数据,为利用纳米颗粒解决抗生素耐药性带来的障碍奠定坚实基础。此外,它旨在探索在临床和环境环境中使用它们的安全性和环境影响,提供全面的分析,可能有助于抗菌技术领域的未来研究和实际应用。