Cargando…

Portable Microfluidic Biosensing System for Real-Time Analysis of Microdialysate in Transplant Kidneys

[Image: see text] Currently, there is a severe shortage of donor kidneys that are fit for transplantation, due in part to a lack of adequate viability assessment tools for transplant organs. This work presents the integration of a novel wireless two-channel amperometric potentiostat with microneedle...

Descripción completa

Detalles Bibliográficos
Autores principales: Samper, Isabelle C., Gowers, Sally A. N., Booth, Marsilea A., Wang, Chu, Watts, Thomas, Phairatana, Tonghathai, Vallant, Natalie, Sandhu, Bynvant, Papalois, Vassilios, Boutelle, Martyn G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7110273/
https://www.ncbi.nlm.nih.gov/pubmed/31647870
http://dx.doi.org/10.1021/acs.analchem.9b03774
_version_ 1783513022020452352
author Samper, Isabelle C.
Gowers, Sally A. N.
Booth, Marsilea A.
Wang, Chu
Watts, Thomas
Phairatana, Tonghathai
Vallant, Natalie
Sandhu, Bynvant
Papalois, Vassilios
Boutelle, Martyn G.
author_facet Samper, Isabelle C.
Gowers, Sally A. N.
Booth, Marsilea A.
Wang, Chu
Watts, Thomas
Phairatana, Tonghathai
Vallant, Natalie
Sandhu, Bynvant
Papalois, Vassilios
Boutelle, Martyn G.
author_sort Samper, Isabelle C.
collection PubMed
description [Image: see text] Currently, there is a severe shortage of donor kidneys that are fit for transplantation, due in part to a lack of adequate viability assessment tools for transplant organs. This work presents the integration of a novel wireless two-channel amperometric potentiostat with microneedle-based glucose and lactate biosensors housed in a 3D printed chip to create a microfluidic biosensing system that is genuinely portable. The wireless potentiostat transmits data via Bluetooth to an Android app running on a tablet. The whole miniaturized system is fully enclosed and can be integrated with microdialysis to allow continuous monitoring of tissue metabolite levels in real time. We have also developed a wireless portable automated calibration platform so that biosensors can be calibrated away from the laboratory and in transit. As a proof of concept, we have demonstrated the use of this portable analysis system to monitor porcine kidneys for the first time from organ retrieval, through warm ischemia, transportation on ice, right through to cold preservation and reperfusion. The portable system is robust and reliable in the challenging conditions of the abattoir and during kidney transportation and can detect clear physiological changes in the organ associated with clinical interventions.
format Online
Article
Text
id pubmed-7110273
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-71102732020-04-02 Portable Microfluidic Biosensing System for Real-Time Analysis of Microdialysate in Transplant Kidneys Samper, Isabelle C. Gowers, Sally A. N. Booth, Marsilea A. Wang, Chu Watts, Thomas Phairatana, Tonghathai Vallant, Natalie Sandhu, Bynvant Papalois, Vassilios Boutelle, Martyn G. Anal Chem [Image: see text] Currently, there is a severe shortage of donor kidneys that are fit for transplantation, due in part to a lack of adequate viability assessment tools for transplant organs. This work presents the integration of a novel wireless two-channel amperometric potentiostat with microneedle-based glucose and lactate biosensors housed in a 3D printed chip to create a microfluidic biosensing system that is genuinely portable. The wireless potentiostat transmits data via Bluetooth to an Android app running on a tablet. The whole miniaturized system is fully enclosed and can be integrated with microdialysis to allow continuous monitoring of tissue metabolite levels in real time. We have also developed a wireless portable automated calibration platform so that biosensors can be calibrated away from the laboratory and in transit. As a proof of concept, we have demonstrated the use of this portable analysis system to monitor porcine kidneys for the first time from organ retrieval, through warm ischemia, transportation on ice, right through to cold preservation and reperfusion. The portable system is robust and reliable in the challenging conditions of the abattoir and during kidney transportation and can detect clear physiological changes in the organ associated with clinical interventions. American Chemical Society 2019-10-24 2019-11-19 /pmc/articles/PMC7110273/ /pubmed/31647870 http://dx.doi.org/10.1021/acs.analchem.9b03774 Text en Copyright © 2019 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Samper, Isabelle C.
Gowers, Sally A. N.
Booth, Marsilea A.
Wang, Chu
Watts, Thomas
Phairatana, Tonghathai
Vallant, Natalie
Sandhu, Bynvant
Papalois, Vassilios
Boutelle, Martyn G.
Portable Microfluidic Biosensing System for Real-Time Analysis of Microdialysate in Transplant Kidneys
title Portable Microfluidic Biosensing System for Real-Time Analysis of Microdialysate in Transplant Kidneys
title_full Portable Microfluidic Biosensing System for Real-Time Analysis of Microdialysate in Transplant Kidneys
title_fullStr Portable Microfluidic Biosensing System for Real-Time Analysis of Microdialysate in Transplant Kidneys
title_full_unstemmed Portable Microfluidic Biosensing System for Real-Time Analysis of Microdialysate in Transplant Kidneys
title_short Portable Microfluidic Biosensing System for Real-Time Analysis of Microdialysate in Transplant Kidneys
title_sort portable microfluidic biosensing system for real-time analysis of microdialysate in transplant kidneys
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7110273/
https://www.ncbi.nlm.nih.gov/pubmed/31647870
http://dx.doi.org/10.1021/acs.analchem.9b03774
work_keys_str_mv AT samperisabellec portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT gowerssallyan portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT boothmarsileaa portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT wangchu portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT wattsthomas portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT phairatanatonghathai portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT vallantnatalie portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT sandhubynvant portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT papaloisvassilios portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys
AT boutellemartyng portablemicrofluidicbiosensingsystemforrealtimeanalysisofmicrodialysateintransplantkidneys