@inbook{c3b775c4f995469a8fd6518ee3dcb875,
title = "Screening for host factors directly interacting with RSV protein: Microfluidics",
abstract = "We present a high-throughput microfluidics platform to identify novel host cell binding partners of respiratory syncytial virus (RSV) matrix (M) protein. The device consists of thousands of reaction chambers controlled by micro-mechanical valves. The microfluidic device is mated to a microarray-printed custommade gene library. These genes are then transcribed and translated on-chip, resulting in a protein array ready for binding to RSV M protein. Even small viral proteome, such as that of RSV, presents a challenge due to the fact that viral proteins are usually multifunctional and thus their interaction with the host is complex. Protein microarrays technology allows the interrogation of protein-protein interactions, which could possibly overcome obstacles by using conventional high throughput methods. Using microfluidics platform we have identified new host interactors of M involved in various cellular pathways. A number of microfluidics based assays have already provided novel insights into the virus-host interactome, and the results have important implications for future antiviral strategies aimed at targets of viral protein interactions with the host.",
keywords = "Integrated microfluidics, Protein arrays, RSV-host interaction, Virus-host interactions",
author = "Sarit Kipper and Dorit Avrahami and Monika Bajorek and Doron Gerber",
note = "Publisher Copyright: {\textcopyright} Springer Science+Business Media New York 2016.",
year = "2016",
doi = "10.1007/978-1-4939-3687-8_12",
language = "الإنجليزيّة",
series = "Methods in Molecular Biology",
pages = "165--174",
booktitle = "Methods in Molecular Biology",
}