| Literature DB >> 28685468 |
Natalie A Wisniewski1, Scott P Nichols2,3, Soya J Gamsey2, Steve Pullins2, Kit Y Au-Yeung2, Bruce Klitzman3, Kristen L Helton2.
Abstract
We describe a simple method of tracking oxygen in real-time with injectable, tissue-integrating microsensors. The sensors are small (500 μm × 500 μm × 5 mm), soft, flexible, tissue-like, biocompatible hydrogel s that have been shown to overcome the foreign body response for long-term sensing. The sensors are engineered to change luminescence in the presence of oxygen or other analytes and function for months to years in the body. A single injection followed by non-invasive monitoring with a hand-held or wearable Bluetooth optical reader enables intermittent or continuous measurements. Proof of concept for applications in high altitude, exercise physiology, vascular disease, stroke, tumors, and other disease states have been shown in mouse, rat and porcine models. Over 90 sensors have been studied to date in humans. These novel tissue-integrating sensors yield real-time insights in tissue oxygen fluctuations for research and clinical applications.Entities:
Keywords: Biosensor; Fluorescence; Hydrogel; Luminescence; Metabolism
Mesh:
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Year: 2017 PMID: 28685468 PMCID: PMC5657483 DOI: 10.1007/978-3-319-55231-6_49
Source DB: PubMed Journal: Adv Exp Med Biol ISSN: 0065-2598 Impact factor: 2.622