Department of Biotechnology, National Institute of Technology Raipur, Raipur, Chhattisgarh, India.
Future Microbiol. 2024;19(11):1003-1016. doi: 10.1080/17460913.2024.2350285. Epub 2024 Jun 21.
Microbial biofilms, complex assemblies enveloped in extracellular matrices, are significant contributors to various infections. Traditional biofilm characterization methods, though informative, often disrupt the biofilm structure. The need to address biofilm-related infections urgently emphasizes the importance of continuous monitoring and timely interventions. This review provides a focused examination of advancements in real-time biofilm detection techniques, specifically in electrochemical, optical and mechanical systems. The potential applications of real-time detection in managing and monitoring biofilm growth in industrial settings, preventing medical infections, comprehending biofilm dynamics and evaluating control strategies highlight the necessity for it. Crucially, the review emphasizes the importance of evaluating these methods for their accuracy and reliability in real-time biofilm detection, offering valuable insights for precise interventions across various applications.
微生物生物膜是由细胞外基质包裹的复杂组装体,是多种感染的重要贡献者。传统的生物膜表征方法虽然提供了信息,但往往会破坏生物膜的结构。迫切需要解决与生物膜相关的感染问题,这强调了持续监测和及时干预的重要性。本综述重点介绍了实时生物膜检测技术的进展,特别是电化学、光学和机械系统。实时检测在管理和监测工业环境中生物膜生长、预防医疗感染、理解生物膜动力学和评估控制策略方面的潜在应用,突出了其必要性。至关重要的是,该综述强调了评估这些方法在实时生物膜检测中的准确性和可靠性的重要性,为各种应用中的精确干预提供了有价值的见解。