TY - JOUR
T1 - Real-Time Monitoring of Post-Surgical and Post-Traumatic Eye Injuries Using Multilayered Electrical Biosensor Chip
AU - Khan, Muhammad S.
AU - Misra, Santosh K.
AU - Schwartz-Duval, Aaron S.
AU - Daza, Enrique
AU - Ostadhossein, Fatemeh
AU - Bowman, Matthew
AU - Jain, Akshay
AU - Taylor, Gina
AU - McDonagh, Deana
AU - Labriola, Leanne T.
AU - Pan, Dipanjan
N1 - Funding Information:
SEM, AFM, XRD, XPS, and Raman images/data were acquired at Frederick Seitz Materials Research Laboratory (MRL) Central research facilities, UIUC. Fabrication of μ-electrodes was performed at Micro-Nanotechnology Laboratory (MNTL) facility, UIUC. NMR experiment was done at Rogers Adam Laboratory at UIUC. LC-HRMS was demonstrated at Noyes Laboratory, School of Chemical Sciences (SCS) at UIUC. Authors specially acknowledge Mr. Simpson Burt, a graduate student at SCS, UIUC for his help in arranging the CH Instruments 760E biopotentiostat to do initial electrical measurements. All clinical samples (tear film and aqueous humor) were collected at Eye Clinic of Carle Foundation Hospital, Urbana, IL. Authors gratefully acknowledge funding from NSF Award 1548915, University of Illinois at Urbana−Champaign, Children’s Discovery Institute and Institute of Sustainability in Energy and Environment.
Publisher Copyright:
© 2017 American Chemical Society.
PY - 2017/3/15
Y1 - 2017/3/15
N2 - Lack of current techniques for the early monitoring of bleb leaks and other post-traumatic or post-surgical ocular injury has posed an unmet clinical need for the development of new techniques. Present evaluation techniques use either subjective or nonquantitative approaches. At present, there are no FDA approved ocular devices that can directly measure ascorbic acid (AA) concentration levels for both tear film (TF) and aqueous humor (AH) at point-of-care (POC) level. Toward this aim, we present a novel POC quantitative assay, called the ocular biosensor device, which can be used to evaluate the integrity of the anterior surface of the eye by measuring the concentration of AA in TF and AH. Herein, we utilize a novel scientific engineering approach for the development of a disposable paper based POC ocular biosensor strip. A grafted poly(styrene)-block-poly(acrylic acid) (PS-b-PAA) and graphene platelet composite with contour based μ-electrodes design (CBμE) exhibit a highly sensitive platform to perform electrochemical immunosensing technique to study clinical samples that have small volumes like tear fluid. Samples used in this study were collected clinically from subjects undergoing therapeutic anterior chamber paracentesis. The proposed biosensor reports the level of AA concentration on an electronic screen, making the results easy to read, efficient, and reliable.
AB - Lack of current techniques for the early monitoring of bleb leaks and other post-traumatic or post-surgical ocular injury has posed an unmet clinical need for the development of new techniques. Present evaluation techniques use either subjective or nonquantitative approaches. At present, there are no FDA approved ocular devices that can directly measure ascorbic acid (AA) concentration levels for both tear film (TF) and aqueous humor (AH) at point-of-care (POC) level. Toward this aim, we present a novel POC quantitative assay, called the ocular biosensor device, which can be used to evaluate the integrity of the anterior surface of the eye by measuring the concentration of AA in TF and AH. Herein, we utilize a novel scientific engineering approach for the development of a disposable paper based POC ocular biosensor strip. A grafted poly(styrene)-block-poly(acrylic acid) (PS-b-PAA) and graphene platelet composite with contour based μ-electrodes design (CBμE) exhibit a highly sensitive platform to perform electrochemical immunosensing technique to study clinical samples that have small volumes like tear fluid. Samples used in this study were collected clinically from subjects undergoing therapeutic anterior chamber paracentesis. The proposed biosensor reports the level of AA concentration on an electronic screen, making the results easy to read, efficient, and reliable.
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U2 - 10.1021/acsami.7b01675
DO - 10.1021/acsami.7b01675
M3 - Article
C2 - 28207238
AN - SCOPUS:85015454185
SN - 1944-8244
VL - 9
SP - 8609
EP - 8622
JO - ACS applied materials & interfaces
JF - ACS applied materials & interfaces
IS - 10
ER -