Related Experiment Video
Updated: Aug 18, 2026

A Microfluidic Chip for the Versatile Chemical Analysis of Single Cells
Published on: October 15, 2013
Advances in the Analysis of Water and Wastewater Samples Using Various Sensing Protocols and Microfluidic Devices
Krzysztof Piaskowski1, Renata Świderska-Dąbrowska1, Aleksandra Kaleniecka1
1Koszalin University of Technology, Faculty of Civil Engineering, Environmental, and Geodetic Sciences, Department of Environmental Technologies and Bioanalytics, Sniadeckich 2, 75-453 Koszalin, Poland.
Abstract:
The main goal of this review is to summarize practical approaches concerning the application of microfluidic systems for the analysis of various biomarkers and pollutants, as well as microbes, in water and wastewater matrixes. This problem involves multidisciplinary expertise combining research knowledge from various areas, including wet chemistry, biochemistry, physical chemistry, molecular biology, genetics, signal processing, microelectronics material science, and separation science. It has been documented that fairly primitive but fast and inexpensive screening methods involving paper-based analytical devices (PADs) and micro total analytical systems (μTAS) can be considered as serious alternatives to their more advanced counterparts such as GC, HPLC, and capillary electrophoresis coupled to various sophisticated detectors (e.g., multiwavelength spectrophotometers such as UV-Vis/DAD and mass spectrometers). The main advantage of PAD- and μTAS-driven technology is that such sensing devices may work under on-site and real-time conditions and measure a number of physical parameters and chemical factors simultaneously. Moreover, hybrid miniaturized analytical systems may combine sensing and data acquisition modules with common mobile phones and electronic devices working with global positioning systems and communicating through the Internet.
Related Concept Videos
Microbial Biosensors
Automated Microbial Diagnostics

