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Real-time measurement of tumour hypoxia using an implantable microfabricated oxygen sensor

Authors :
Jamie R.K. Marland
Mark E. Gray
Camelia Dunare
Ewen O. Blair
Andreas Tsiamis
Paul Sullivan
Eva González-Fernández
Stephen N. Greenhalgh
Rachael Gregson
R. Eddie Clutton
Magdalena M. Parys
Alex Dyson
Mervyn Singer
Ian H. Kunkler
Mark A. Potter
Srinjoy Mitra
Jonathan G. Terry
Stewart Smith
Andrew R. Mount
Ian Underwood
Anthony J. Walton
David J. Argyle
Alan F. Murray
Source :
Sensing and Bio-Sensing Research, Vol 30, Iss , Pp 100375- (2020)
Publication Year :
2020
Publisher :
Elsevier, 2020.

Abstract

Hypoxia commonly occurs within tumours and is a major cause of radiotherapy resistance. Clinical outcomes could be improved by locating and selectively increasing the dose delivered to hypoxic regions. Here we describe a miniature implantable sensor for real-time monitoring of tissue oxygenation that could enable this novel treatment approach to be implemented. The sensor uses a solid-state electrochemical cell that was microfabricated at wafer level on a silicon substrate, and includes an integrated reference electrode and electrolyte membrane. It gave a linear response to oxygen concentration, and was unaffected by sterilisation and irradiation, but showed susceptibility to biofouling. Oxygen selectivity was also evaluated against various clinically relevant electroactive compounds. We investigated its robustness and functionality under realistic clinical conditions using a sheep model of lung cancer. The sensor remained functional following CT-guided tumour implantation, and was sufficiently sensitive to track acute changes in oxygenation within tumour tissue.

Details

Language :
English
ISSN :
22141804
Volume :
30
Issue :
100375-
Database :
Directory of Open Access Journals
Journal :
Sensing and Bio-Sensing Research
Publication Type :
Academic Journal
Accession number :
edsdoj.4d575ed143ff4ab788ad2253711af3ac
Document Type :
article
Full Text :
https://doi.org/10.1016/j.sbsr.2020.100375