Journal article 1279 views 430 downloads
Epitaxial graphene immunosensor for human chorionic gonadotropin
Sensors and Actuators B: Chemical, Volume: 190, Pages: 723 - 729
Swansea University Authors: Owen Guy , Steve Conlan , Deya Gonzalez , Sofia Rodrigues Teixeira
-
PDF | Accepted Manuscript
Download (519.73KB)
DOI (Published version): 10.1016/j.snb.2013.09.019
Abstract
Human chorionic gonadotropin (hCG), a 37 kDa glycoprotein hormone, is a key diagnostic marker of pregnancy and has been cited as an important biomarker in relation to cancerous tumors found in the prostate, ovaries and bladder.A novel chemically-modified epitaxial graphene diagnostic sensor has been...
Published in: | Sensors and Actuators B: Chemical |
---|---|
Published: |
2014
|
URI: | https://cronfa.swan.ac.uk/Record/cronfa28115 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
first_indexed |
2016-05-21T01:19:21Z |
---|---|
last_indexed |
2018-02-09T05:11:54Z |
id |
cronfa28115 |
recordtype |
SURis |
fullrecord |
<?xml version="1.0"?><rfc1807><datestamp>2018-01-19T14:23:50.8840025</datestamp><bib-version>v2</bib-version><id>28115</id><entry>2016-05-20</entry><title>Epitaxial graphene immunosensor for human chorionic gonadotropin</title><swanseaauthors><author><sid>c7fa5949b8528e048c5b978005f66794</sid><ORCID>0000-0002-6449-4033</ORCID><firstname>Owen</firstname><surname>Guy</surname><name>Owen Guy</name><active>true</active><ethesisStudent>false</ethesisStudent></author><author><sid>0bb6bd247e32fb4249de62c0013b51cb</sid><ORCID>0000-0002-2562-3461</ORCID><firstname>Steve</firstname><surname>Conlan</surname><name>Steve Conlan</name><active>true</active><ethesisStudent>false</ethesisStudent></author><author><sid>bafdf635eb81280304eedf4b18e65d4e</sid><ORCID>0000-0002-1838-6752</ORCID><firstname>Deya</firstname><surname>Gonzalez</surname><name>Deya Gonzalez</name><active>true</active><ethesisStudent>false</ethesisStudent></author><author><sid>cdbc4e7462ad09634638f5b3d7ecf2d3</sid><ORCID/><firstname>Sofia</firstname><surname>Rodrigues Teixeira</surname><name>Sofia Rodrigues Teixeira</name><active>true</active><ethesisStudent>false</ethesisStudent></author></swanseaauthors><date>2016-05-20</date><deptcode>CHEM</deptcode><abstract>Human chorionic gonadotropin (hCG), a 37 kDa glycoprotein hormone, is a key diagnostic marker of pregnancy and has been cited as an important biomarker in relation to cancerous tumors found in the prostate, ovaries and bladder.A novel chemically-modified epitaxial graphene diagnostic sensor has been developed for ultrasensitive detection of the biomarker hCG. Multi-layer epitaxial graphene (MEG), grown on silicon carbide substrates, was patterned using electron beam lithography to produce channel based devices. The MEG channels have been amine terminated using 3-Aminopropyl-triethoxysilane (APTES) in order to attach the anti-hCG antibody to the channel.Detection of binding of hCG with its graphene-bound antibody was monitored by measuring reduction of the channel current of the graphene biosensor. The sensitivity of the sensor device was investigated using varying concentrations of hCG, with changes in the channel resistance of the sensor observed upon exposure to hCG. The detection limit of the sensor was 0.62 ng/mL and the sensor showed a linear response to hCG in the range 0.62–5.62 ng/mL with a response of 142 Ω/ng/mL. At concentrations above 5.62 ng/mL the sensor begins to saturate.</abstract><type>Journal Article</type><journal>Sensors and Actuators B: Chemical</journal><volume>190</volume><paginationStart>723</paginationStart><paginationEnd>729</paginationEnd><publisher/><keywords/><publishedDay>31</publishedDay><publishedMonth>1</publishedMonth><publishedYear>2014</publishedYear><publishedDate>2014-01-31</publishedDate><doi>10.1016/j.snb.2013.09.019</doi><url/><notes/><college>COLLEGE NANME</college><department>Chemistry</department><CollegeCode>COLLEGE CODE</CollegeCode><DepartmentCode>CHEM</DepartmentCode><institution>Swansea University</institution><apcterm/><lastEdited>2018-01-19T14:23:50.8840025</lastEdited><Created>2016-05-20T11:02:11.6318106</Created><path><level id="1">Faculty of Science and Engineering</level><level id="2">School of Engineering and Applied Sciences - Chemistry</level></path><authors><author><firstname>Sofia</firstname><surname>Teixeira</surname><order>1</order></author><author><firstname>G.</firstname><surname>Burwell</surname><order>2</order></author><author><firstname>A.</firstname><surname>Castaing</surname><order>3</order></author><author><firstname>D.</firstname><surname>Gonzalez</surname><order>4</order></author><author><firstname>R.S.</firstname><surname>Conlan</surname><order>5</order></author><author><firstname>O.J.</firstname><surname>Guy</surname><order>6</order></author><author><firstname>Owen</firstname><surname>Guy</surname><orcid>0000-0002-6449-4033</orcid><order>7</order></author><author><firstname>Steve</firstname><surname>Conlan</surname><orcid>0000-0002-2562-3461</orcid><order>8</order></author><author><firstname>Deya</firstname><surname>Gonzalez</surname><orcid>0000-0002-1838-6752</orcid><order>9</order></author><author><firstname>Sofia</firstname><surname>Rodrigues Teixeira</surname><orcid/><order>10</order></author></authors><documents><document><filename>0028115-18072016153351.pdf</filename><originalFilename>Epitaxial_graphene_immunosensorv2.pdf</originalFilename><uploaded>2016-07-18T15:33:51.2070000</uploaded><type>Output</type><contentLength>526996</contentLength><contentType>application/pdf</contentType><version>Accepted Manuscript</version><cronfaStatus>true</cronfaStatus><embargoDate>2016-07-18T00:00:00.0000000</embargoDate><copyrightCorrect>false</copyrightCorrect></document></documents><OutputDurs/></rfc1807> |
spelling |
2018-01-19T14:23:50.8840025 v2 28115 2016-05-20 Epitaxial graphene immunosensor for human chorionic gonadotropin c7fa5949b8528e048c5b978005f66794 0000-0002-6449-4033 Owen Guy Owen Guy true false 0bb6bd247e32fb4249de62c0013b51cb 0000-0002-2562-3461 Steve Conlan Steve Conlan true false bafdf635eb81280304eedf4b18e65d4e 0000-0002-1838-6752 Deya Gonzalez Deya Gonzalez true false cdbc4e7462ad09634638f5b3d7ecf2d3 Sofia Rodrigues Teixeira Sofia Rodrigues Teixeira true false 2016-05-20 CHEM Human chorionic gonadotropin (hCG), a 37 kDa glycoprotein hormone, is a key diagnostic marker of pregnancy and has been cited as an important biomarker in relation to cancerous tumors found in the prostate, ovaries and bladder.A novel chemically-modified epitaxial graphene diagnostic sensor has been developed for ultrasensitive detection of the biomarker hCG. Multi-layer epitaxial graphene (MEG), grown on silicon carbide substrates, was patterned using electron beam lithography to produce channel based devices. The MEG channels have been amine terminated using 3-Aminopropyl-triethoxysilane (APTES) in order to attach the anti-hCG antibody to the channel.Detection of binding of hCG with its graphene-bound antibody was monitored by measuring reduction of the channel current of the graphene biosensor. The sensitivity of the sensor device was investigated using varying concentrations of hCG, with changes in the channel resistance of the sensor observed upon exposure to hCG. The detection limit of the sensor was 0.62 ng/mL and the sensor showed a linear response to hCG in the range 0.62–5.62 ng/mL with a response of 142 Ω/ng/mL. At concentrations above 5.62 ng/mL the sensor begins to saturate. Journal Article Sensors and Actuators B: Chemical 190 723 729 31 1 2014 2014-01-31 10.1016/j.snb.2013.09.019 COLLEGE NANME Chemistry COLLEGE CODE CHEM Swansea University 2018-01-19T14:23:50.8840025 2016-05-20T11:02:11.6318106 Faculty of Science and Engineering School of Engineering and Applied Sciences - Chemistry Sofia Teixeira 1 G. Burwell 2 A. Castaing 3 D. Gonzalez 4 R.S. Conlan 5 O.J. Guy 6 Owen Guy 0000-0002-6449-4033 7 Steve Conlan 0000-0002-2562-3461 8 Deya Gonzalez 0000-0002-1838-6752 9 Sofia Rodrigues Teixeira 10 0028115-18072016153351.pdf Epitaxial_graphene_immunosensorv2.pdf 2016-07-18T15:33:51.2070000 Output 526996 application/pdf Accepted Manuscript true 2016-07-18T00:00:00.0000000 false |
title |
Epitaxial graphene immunosensor for human chorionic gonadotropin |
spellingShingle |
Epitaxial graphene immunosensor for human chorionic gonadotropin Owen Guy Steve Conlan Deya Gonzalez Sofia Rodrigues Teixeira |
title_short |
Epitaxial graphene immunosensor for human chorionic gonadotropin |
title_full |
Epitaxial graphene immunosensor for human chorionic gonadotropin |
title_fullStr |
Epitaxial graphene immunosensor for human chorionic gonadotropin |
title_full_unstemmed |
Epitaxial graphene immunosensor for human chorionic gonadotropin |
title_sort |
Epitaxial graphene immunosensor for human chorionic gonadotropin |
author_id_str_mv |
c7fa5949b8528e048c5b978005f66794 0bb6bd247e32fb4249de62c0013b51cb bafdf635eb81280304eedf4b18e65d4e cdbc4e7462ad09634638f5b3d7ecf2d3 |
author_id_fullname_str_mv |
c7fa5949b8528e048c5b978005f66794_***_Owen Guy 0bb6bd247e32fb4249de62c0013b51cb_***_Steve Conlan bafdf635eb81280304eedf4b18e65d4e_***_Deya Gonzalez cdbc4e7462ad09634638f5b3d7ecf2d3_***_Sofia Rodrigues Teixeira |
author |
Owen Guy Steve Conlan Deya Gonzalez Sofia Rodrigues Teixeira |
author2 |
Sofia Teixeira G. Burwell A. Castaing D. Gonzalez R.S. Conlan O.J. Guy Owen Guy Steve Conlan Deya Gonzalez Sofia Rodrigues Teixeira |
format |
Journal article |
container_title |
Sensors and Actuators B: Chemical |
container_volume |
190 |
container_start_page |
723 |
publishDate |
2014 |
institution |
Swansea University |
doi_str_mv |
10.1016/j.snb.2013.09.019 |
college_str |
Faculty of Science and Engineering |
hierarchytype |
|
hierarchy_top_id |
facultyofscienceandengineering |
hierarchy_top_title |
Faculty of Science and Engineering |
hierarchy_parent_id |
facultyofscienceandengineering |
hierarchy_parent_title |
Faculty of Science and Engineering |
department_str |
School of Engineering and Applied Sciences - Chemistry{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Chemistry |
document_store_str |
1 |
active_str |
0 |
description |
Human chorionic gonadotropin (hCG), a 37 kDa glycoprotein hormone, is a key diagnostic marker of pregnancy and has been cited as an important biomarker in relation to cancerous tumors found in the prostate, ovaries and bladder.A novel chemically-modified epitaxial graphene diagnostic sensor has been developed for ultrasensitive detection of the biomarker hCG. Multi-layer epitaxial graphene (MEG), grown on silicon carbide substrates, was patterned using electron beam lithography to produce channel based devices. The MEG channels have been amine terminated using 3-Aminopropyl-triethoxysilane (APTES) in order to attach the anti-hCG antibody to the channel.Detection of binding of hCG with its graphene-bound antibody was monitored by measuring reduction of the channel current of the graphene biosensor. The sensitivity of the sensor device was investigated using varying concentrations of hCG, with changes in the channel resistance of the sensor observed upon exposure to hCG. The detection limit of the sensor was 0.62 ng/mL and the sensor showed a linear response to hCG in the range 0.62–5.62 ng/mL with a response of 142 Ω/ng/mL. At concentrations above 5.62 ng/mL the sensor begins to saturate. |
published_date |
2014-01-31T03:34:12Z |
_version_ |
1763751443407306752 |
score |
11.037581 |