Literature DB >> 25096329

Low cost referenced luminescent imaging of oxygen and pH with a 2-CCD colour near infrared camera.

Josef Ehgartner1, Helmar Wiltsche, Sergey M Borisov, Torsten Mayr.   

Abstract

A low cost imaging set-up for optical chemical sensors based on NIR-emitting dyes is presented. It is based on a commercially available 2-CCD colour near infrared camera, LEDs and tailor-made optical sensing materials for oxygen and pH. The set-up extends common ratiometric RGB imaging based on the red, green and blue channels of colour cameras by an additional NIR channel. The hardware and software of the camera were adapted to perform ratiometric imaging. A series of new planar sensing foils were introduced to image oxygen, pH and both parameters simultaneously. The used NIR-emitting indicators are based on benzoporphyrins and aza-BODIPYs for oxygen and pH, respectively. Moreover, a wide dynamic range oxygen sensor is presented. It allows accurate imaging of oxygen from trace levels up to ambient air concentrations. The imaging set-up in combination with the normal range ratiometric oxygen sensor showed a resolution of 4-5 hPa at low oxygen concentrations (<50 hPa) and 10-15 hPa at ambient air oxygen concentrations; the trace range oxygen sensor (<20 hPa) revealed a resolution of about 0.5-1.8 hPa. The working range of the pH-sensor was in the physiological region from pH 6.0 up to pH 8.0 and showed an apparent pKa-value of 7.3 with a resolution of about 0.1 pH units. The performance of the dual parameter oxygen/pH sensor was comparable to the single analyte pH and normal range oxygen sensors.

Entities:  

Year:  2014        PMID: 25096329     DOI: 10.1039/c4an00783b

Source DB:  PubMed          Journal:  Analyst        ISSN: 0003-2654            Impact factor:   4.616


  5 in total

1.  Optical Sensing and Imaging of pH Values: Spectroscopies, Materials, and Applications.

Authors:  Andreas Steinegger; Otto S Wolfbeis; Sergey M Borisov
Journal:  Chem Rev       Date:  2020-11-04       Impact factor: 60.622

2.  Oxygen Sensing Difluoroboron Dinaphthoylmethane Polylactide.

Authors:  Christopher A DeRosa; Jelena Samonina-Kosicka; Ziyi Fan; Hansford C Hendargo; Douglas H Weitzel; Gregory M Palmer; Cassandra L Fraser
Journal:  Macromolecules       Date:  2015-05-12       Impact factor: 5.985

3.  Long-wavelength analyte-sensitive luminescent probes and optical (bio)sensors.

Authors:  Christoph Staudinger; Sergey M Borisov
Journal:  Methods Appl Fluoresc       Date:  2015-10-22       Impact factor: 3.009

4.  Designing a Microfluidic Device with Integrated Ratiometric Oxygen Sensors for the Long-Term Control and Monitoring of Chronic and Cyclic Hypoxia.

Authors:  Samantha M Grist; Jonathan C Schmok; Meng-Chi Andy Liu; Lukas Chrostowski; Karen C Cheung
Journal:  Sensors (Basel)       Date:  2015-08-14       Impact factor: 3.576

5.  Every Breath You Take: Non-invasive Real-Time Oxygen Biosensing in Two- and Three-Dimensional Microfluidic Cell Models.

Authors:  Helene Zirath; Mario Rothbauer; Sarah Spitz; Barbara Bachmann; Christian Jordan; Bernhard Müller; Josef Ehgartner; Eleni Priglinger; Severin Mühleder; Heinz Redl; Wolfgang Holnthoner; Michael Harasek; Torsten Mayr; Peter Ertl
Journal:  Front Physiol       Date:  2018-07-03       Impact factor: 4.566

  5 in total

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