A New Approach for On-Demand Generation of Various Oxygen Tensions for In Vitro Hypoxia Models

The development of in vitro disease models closely mimicking the functions of human disease has captured increasing attention in recent years. Oxygen tensions and gradients play essential roles in modulating biological systems in both physiologic and pathologic events. Thus, controlling oxygen tensi...

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Veröffentlicht in:PloS one 2016-05, Vol.11 (5), p.e0155921-e0155921
Hauptverfasser: Li, Chunyan, Chaung, Wayne, Mozayan, Cameron, Chabra, Ranjeev, Wang, Ping, Narayan, Raj K
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Sprache:eng
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Zusammenfassung:The development of in vitro disease models closely mimicking the functions of human disease has captured increasing attention in recent years. Oxygen tensions and gradients play essential roles in modulating biological systems in both physiologic and pathologic events. Thus, controlling oxygen tension is critical for mimicking physiologically relevant in vivo environments for cell, tissue and organ research. We present a new approach for on-demand generation of various oxygen tensions for in vitro hypoxia models. Proof-of-concept prototypes have been developed for conventional cell culture microplate by immobilizing a novel oxygen-consuming biomaterial on the 3D-printed insert. For the first time, rapid (~3.8 minutes to reach 0.5% O2 from 20.9% O2) and precisely controlled oxygen tensions/gradients (2.68 mmHg per 50 μm distance) were generated by exposing the biocompatible biomaterial to the different depth of cell culture media. In addition, changing the position of 3D-printed inserts with immobilized biomaterials relative to the cultured cells resulted in controllable and rapid changes in oxygen tensions (
ISSN:1932-6203
1932-6203
DOI:10.1371/journal.pone.0155921