Title :
Water toxicity detection using cell-based hybrid biosensors
Author :
Fei Liu ; Voiculescu, Ioana ; Nordin, A.N. ; Fang Li
Author_Institution :
Mech. Eng. Dept., City Coll. of New York, New York, NY, USA
Abstract :
This paper presents a novel cell-based biosensor device that contains a quartz crystal microbalance (QCM), integrated with the electric cell-substrate impedance sensing (ECIS) technique. Bovine aortic endothelial cells (BAECs) are cultivated on the sensors and monitored in parallel by both sensors. When two different sensors monitors the same BAECs monolayer cultures on these sensors the information provided by these sensors is more accurate. Cell culturing microwells were fabricated and glued on this biosensor device for minimizing media and reagent demands and potential automation. The microwells were designed in a manner that can eliminate the fluid shear stress and allow laminar flow for the media and other fluids introduced in the cell-culturing chamber during testing. We demonstrated that BAECS cells could be cultured in these microwells. Resonant frequency and impedance spectroscopy measurements were performed during a time interval. It was demonstrated that this cell-based sensor could be used for toxicity experiments.
Keywords :
biosensors; cellular biophysics; electric impedance measurement; laminar flow; quartz crystal microbalances; toxicology; water; bovine aortic endothelial cells; cell culturing microwells; cell-based hybrid biosensors; electric cell-substrate impedance sensing technique; fluid shear stress; impedance spectroscopy; laminar flow; quartz crystal microbalance; resonant frequency; water toxicity detection; Biosensors; Cells (biology); Electrodes; Impedance; Impedance measurement; Resonant frequency;
Conference_Titel :
SENSORS, 2013 IEEE
Conference_Location :
Baltimore, MD
DOI :
10.1109/ICSENS.2013.6688374