@inbook{6fde522ea7b846688b7aa2136ca03fc4,
title = "Bacterial detection using peptide-based platform and impedance spectroscopy",
abstract = "Antimicrobial peptides have the ability to function as bio-recognition elements in the detection of bacteria. For instance, we showed that Leucocin A, an antimicrobial peptide from class IIa bacteriocins, binds grampositive Listeria monocytogenes with higher affinity than other gram-positive bacteria like S. aureus, L. innocua, and E. faecalis. The binding was detected using impedance spectroscopy when Leucocin A immobilized on impedance electrodes binds bacteria from a sample. Here we highlight the strength of utilizing Leucocin A as a bio-recognition probe in biosensor platforms and provide details on its application in real-time bacterial detection using electrochemical impedance spectroscopy. A simple new generation impedance array analyzer is utilized that works at very low frequencies to identify interactions between peptide and the target bacteria.",
keywords = "Antimicrobial peptide, Bacterial detection, Impedance spectroscopy, Leucocin A, Listeria monocytogenes, Peptide-based biosensors",
author = "Hashem Etayash and Thomas Thundat and Kamaljit Kaur",
note = "Publisher Copyright: {\textcopyright} Springer Science+Business Media LLC 2017.",
year = "2017",
doi = "10.1007/978-1-4939-6911-1\_8",
language = "English",
series = "Methods in Molecular Biology",
publisher = "Humana Press Inc.",
pages = "113--124",
booktitle = "Methods in Molecular Biology",
}