Haq Tahayya, Jaswani Samriddhi, Roohi Roohi
Department of Bioengineering, Integral University, Lucknow, Uttar Pradesh, India.
Appl Biochem Biotechnol. 2025 Sep 3. doi: 10.1007/s12010-025-05361-7.
Biofilm formation poses challenges across various sectors, such as healthcare facilities, food safety, and in industrial processes, owing to the resilience of microbial communities encased in protective extracellular matrices. This paper delves into the strategies for biofilm control, highlighting recent/novel chemical, biological, and nanotechnological approaches. Chemical methods exploit the potential of natural compounds, such as phenolic antioxidants and nanoparticles, to disrupt biofilms, thereby boosting the effectiveness of antimicrobial treatments. In parallel, biological strategies involve the use of predatory bacteria and biosurfactants and offer eco-friendly alternatives. In nanotechnology, particularly the nanoflowers, due to their unique morphology and high surface area, show greater promise in efficiently targeting biofilms by enabling enhanced bacterial interaction and precise drug delivery. The implications of these approaches are far-reaching, extending to the food industry, where biofilm formation can result in spoilage and foodborne illnesses, as well as in biomedical applications aimed at preventing infections related to medical devices. This paper underscores the potential of integrating these approaches to develop more effective and sustainable solutions for biofilm management, contributing to enhanced health and safety across multiple domains.
生物膜的形成在各个领域都带来了挑战,如医疗设施、食品安全以及工业生产过程等,这是因为包裹在保护性细胞外基质中的微生物群落具有很强的复原能力。本文深入探讨了生物膜控制策略,重点介绍了最新的/新颖的化学、生物和纳米技术方法。化学方法利用天然化合物的潜力,如酚类抗氧化剂和纳米颗粒,来破坏生物膜,从而提高抗菌治疗的效果。与此同时,生物策略包括使用捕食性细菌和生物表面活性剂,并提供了环保的替代方案。在纳米技术领域,特别是纳米花,由于其独特的形态和高比表面积,通过增强细菌相互作用和精确药物递送,在有效靶向生物膜方面显示出更大的潜力。这些方法的影响是深远的,延伸到食品工业,在那里生物膜的形成会导致食品变质和食源性疾病,以及在旨在预防与医疗设备相关感染的生物医学应用中。本文强调了整合这些方法以开发更有效和可持续的生物膜管理解决方案的潜力,这有助于在多个领域提高健康和安全水平。