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C21 OMICS IN LUNG DISEASE: Human Small Airway-On-A-Chip: A Novel Microphysiological System To Model Lung Inflammation, Accelerate Drug Development And Enable Inhalational Toxico-Analysis
Importantly, by connecting the small airway chip to a custom-designed electromechanical instrument that 'breathes' whole cigarette smoke in and out of the chip microchannels, we successfully recreated smoke-induced oxidative stress, identified new ciliary micropathologies, and discovered u...
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Published in: | American journal of respiratory and critical care medicine 2017-01, Vol.195 |
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container_title | American journal of respiratory and critical care medicine |
container_volume | 195 |
creator | Benam, K Novak, R Villenave, R Lucchesi, C Hubeau, C Nawroth, J Hirano-Kobayashi, M Ferrante, T C Choe, Y Prantil-Baun, R Weaver, J C Hamilton, G A Bahinski, A Parker, K K Ingber, D E |
description | Importantly, by connecting the small airway chip to a custom-designed electromechanical instrument that 'breathes' whole cigarette smoke in and out of the chip microchannels, we successfully recreated smoke-induced oxidative stress, identified new ciliary micropathologies, and discovered unique COPD-specific molecular signatures. [...]this platform revealed a subtle ciliary damage triggered by acute exposure to electronic cigarette. [...]the human small airway-on-a-chip offers a powerful complement to animal models for studying human lung pathophysiology. |
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[...]this platform revealed a subtle ciliary damage triggered by acute exposure to electronic cigarette. 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language | eng |
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source | Freely Accessible Science Journals; EZB-FREE-00999 freely available EZB journals |
subjects | Chronic obstructive pulmonary disease Cytokines |
title | C21 OMICS IN LUNG DISEASE: Human Small Airway-On-A-Chip: A Novel Microphysiological System To Model Lung Inflammation, Accelerate Drug Development And Enable Inhalational Toxico-Analysis |
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