Department of Research and Innovation, Fundació Privada Hospital Asil de Granollers, 08402 Granollers, Spain.
Department of Signal Theory and Communications, Universitat Politècnica de Catalunya-BarcelonaTech, 08034 Barcelona, Spain.
Sensors (Basel). 2021 May 14;21(10):3420. doi: 10.3390/s21103420.
The investigation of the electromagnetic properties of biological particles in microfluidic platforms may enable microwave wireless monitoring and interaction with the functional activity of microorganisms. Of high relevance are the action and membrane potentials as they are some of the most important parameters of living cells. In particular, the complex mechanisms of a cell's action potential are comparable to the dynamics of bacterial membranes, and consequently focusing on the latter provides a simplified framework for advancing the current techniques and knowledge of general bacterial dynamics. In this work, we provide a theoretical analysis and experimental results on the microwave detection of microorganisms within a microfluidic-based platform for sensing the membrane potential of bacteria. The results further advance the state of microwave bacteria sensing and microfluidic control and their implications for measuring and interacting with cells and their membrane potentials, which is of great importance for developing new biotechnologically engineered systems and solutions.
在微流控平台中研究生物颗粒的电磁特性,可以实现对微生物功能活性的微波无线监测和相互作用。作用和膜电位非常重要,因为它们是活细胞最重要的参数之一。特别是,细胞动作电位的复杂机制与细菌膜的动力学相当,因此关注后者为推进当前技术和一般细菌动力学知识提供了一个简化的框架。在这项工作中,我们在基于微流控的平台中提供了关于微生物微波检测的理论分析和实验结果,该平台用于感测细菌的膜电位。这些结果进一步推进了微波细菌感应和微流控控制的现状及其对细胞及其膜电位的测量和相互作用的意义,这对于开发新的生物技术工程系统和解决方案非常重要。