Chen Xi, Wang Chen, Zheng Qing Yin, Hu Wen-Chao, Xia Xing-Hua
School of Special Education and Rehabilitation, School of Stomatology, Binzhou Medical University, Yantai, 264003, China.
School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, China.
Anal Bioanal Chem. 2025 Jan;417(1):33-50. doi: 10.1007/s00216-024-05659-1. Epub 2024 Nov 29.
Quorum sensing is a physiological phenomenon of microbial cell-to-cell information exchange, which relies on the quorum sensing signal molecules (QSSMs) to communicate and coordinate collective processes. Quorum sensing enables bacteria to alter their behavior as the population density and species composition of the bacterial community change. Effective detection of QSSMs is paramount for regulating microbial community behavior. However, traditional detection methods face the shortcomings of complex operation, high costs, and lack of portability. By combining the advantage of biosensing and nanomaterials, the biosensors play a pivotal significance in QSSM detection. In this review, we first briefly describe the QSSM classification and common detection techniques. Then, we provide a comprehensive summary of research progress in biosensor-based QSSM detection according to the transduction mechanism. Finally, challenges and development trends of biosensors for QSSM detection are discussed. We believe it offers valuable insights into this burgeoning research area.
群体感应是微生物细胞间信息交换的一种生理现象,它依靠群体感应信号分子(QSSMs)来进行交流并协调集体活动。随着细菌群落的种群密度和物种组成发生变化,群体感应使细菌能够改变其行为。有效检测QSSMs对于调节微生物群落行为至关重要。然而,传统检测方法面临操作复杂、成本高和缺乏便携性等缺点。通过结合生物传感和纳米材料的优势,生物传感器在QSSM检测中发挥着关键作用。在本综述中,我们首先简要描述QSSM的分类和常见检测技术。然后,我们根据转导机制对基于生物传感器的QSSM检测的研究进展进行全面总结。最后,讨论了用于QSSM检测的生物传感器面临的挑战和发展趋势。我们相信它为这个新兴的研究领域提供了有价值的见解。