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      KCI등재 SCOPUS SCIE

      Recent Applications of Point‑of‑Care Devices for Glucose Detection on the Basis of Stimuli‑Responsive Volume Phase Transition of Hydrogel

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      https://www.riss.kr/link?id=A107316328

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      Diabetes is a serious global disease that threatens more than 400 million people’s health. Therefore, timely detection of body’s glucose level becomes extremely important for control, diagnosis and treatment of diabetes. Based on the feature of stimuli-responsive volume phase transition of hydrogel materials, this review will provide a systematic summary of glucose detection devices in recent years, including hydrogel preparation methods based on glucose-sensitive pattern, detection mechanisms based on signal transduction, current and emerging devices based on different body fluids and discuss the challenge, prospect the future development trend in the end.
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      Diabetes is a serious global disease that threatens more than 400 million people’s health. Therefore, timely detection of body’s glucose level becomes extremely important for control, diagnosis and treatment of diabetes. Based on the feature of st...

      Diabetes is a serious global disease that threatens more than 400 million people’s health. Therefore, timely detection of body’s glucose level becomes extremely important for control, diagnosis and treatment of diabetes. Based on the feature of stimuli-responsive volume phase transition of hydrogel materials, this review will provide a systematic summary of glucose detection devices in recent years, including hydrogel preparation methods based on glucose-sensitive pattern, detection mechanisms based on signal transduction, current and emerging devices based on different body fluids and discuss the challenge, prospect the future development trend in the end.

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      참고문헌 (Reference)

      1 Wiskur, S. L., "pKa values and geometries of secondary and tertiary amines complexed to boronic acids implications for sensor design" 3 : 1311-1314, 2001

      2 Elsherif, M., "Wearable contact lens biosensors for continuous glucose monitoring using smartphones" 12 : 5452-5462, 2018

      3 Feng, X., "Visual sensors of an inverse opal hydrogel for the colorimetric detection of glucose" 7 : 3576-3581, 2019

      4 Li, Q., "Thin hydrogel flms based on lectin-saccharide biospecifc interaction for label-free optical glucose sensing" 272 : 243-251, 2018

      5 Pinyou, P., "Thermoresponsive amperometric glucose biosensor" 11 : 011001-, 2015

      6 Scognamiglio, V., "The technology tree in the design of glucose biosensors" 120 : 115642-, 2019

      7 Singh, N., "The spectral measurement of a high repetition rate tunable dye laser output using Fabry–Perot fringe" 39 : 733-737, 2007

      8 Li, Z., "The imaging of local glucose levels in tumor periphery via peroxyoxalate chemiluminescent nanoparticle-glucose oxidase-oped alginate hydrogel" 11 : 2763-2768, 2019

      9 Huang, J., "Temperature controlling fber optic glucose sensor based on hydrogel-immobilized GOD complex" 237 : 24-29, 2016

      10 Ma, Y., "Target-responsive DNA hydrogel for non-enzymatic and visual detection of glucose" 143 : 1679-1684, 2018

      1 Wiskur, S. L., "pKa values and geometries of secondary and tertiary amines complexed to boronic acids implications for sensor design" 3 : 1311-1314, 2001

      2 Elsherif, M., "Wearable contact lens biosensors for continuous glucose monitoring using smartphones" 12 : 5452-5462, 2018

      3 Feng, X., "Visual sensors of an inverse opal hydrogel for the colorimetric detection of glucose" 7 : 3576-3581, 2019

      4 Li, Q., "Thin hydrogel flms based on lectin-saccharide biospecifc interaction for label-free optical glucose sensing" 272 : 243-251, 2018

      5 Pinyou, P., "Thermoresponsive amperometric glucose biosensor" 11 : 011001-, 2015

      6 Scognamiglio, V., "The technology tree in the design of glucose biosensors" 120 : 115642-, 2019

      7 Singh, N., "The spectral measurement of a high repetition rate tunable dye laser output using Fabry–Perot fringe" 39 : 733-737, 2007

      8 Li, Z., "The imaging of local glucose levels in tumor periphery via peroxyoxalate chemiluminescent nanoparticle-glucose oxidase-oped alginate hydrogel" 11 : 2763-2768, 2019

      9 Huang, J., "Temperature controlling fber optic glucose sensor based on hydrogel-immobilized GOD complex" 237 : 24-29, 2016

      10 Ma, Y., "Target-responsive DNA hydrogel for non-enzymatic and visual detection of glucose" 143 : 1679-1684, 2018

      11 Xu, W., "Synthesis of polymer macrogels with rapid and signifcant response to glucose concentration changes" 7 : 55945-55956, 2017

      12 Zhu, Q., "Synthesis of molecularly imprinted polymer via visible light activated RAFT polymerization in aqueous media at room temperature for highly selective electrochemical assay of glucose" 218 : 1700141-, 2017

      13 Elshaarani, T., "Synthesis of hydrogel-bearing phenylboronic acid moieties and their applications in glucose sensing and insulin delivery" 6 : 3831-3854, 2018

      14 Kim, Y., "Synthesis of a glucose oxidase-conjugated, polyacrylamide-based, fuorescent hydrogel for a reusable, ratiometric glucose sensor" 7 : 6655-6661, 2016

      15 Hervas Perez, J. P., "Synthesis and characterization of microparticles based on polymethacrylic acid with glucose oxidase for biosensor applications" 149 : 310-318, 2016

      16 Brooks, W. L. A., "Synthesis and applications of boronic acid-containing polymers: from materials to medicine" 116 : 1375-1397, 2016

      17 Vyas, N. K., "Sugar and signal-transducer binding-sites of the Escherichia coli galactose chemoreceptor protein" 242 : 1290-1295, 1988

      18 Wang, Y., "Structurally coloured contact lens sensor for point-of-care ophthalmic health monitoring" 8 : 3519-3526, 2020

      19 Lim, H. L., "Smart hydrogels as functional biomimetic systems" 2 : 603-618, 2014

      20 Park, H. I., "Smart fuorescent hydrogel glucose biosensing microdroplets with dual-mode fuorescence quenching and size reduction" 10 : 30172-30179, 2018

      21 Shen, M., "Site-selective orientated immobilization of antibodies and conjugates for immunodiagnostics development" 116 : 95-111, 2017

      22 Zhang, Y., "Response of photonic crystal hydrogels to carbohydrate and polyhydroxy alcohols" 148 : 104504-, 2020

      23 Marquez, A., "Reconfgurable multiplexed point of care system for monitoring type 1 diabetes patients" 136 : 38-46, 2019

      24 Li, W., "Rapidly separable microneedle patch for the sustained release of a contraceptive" 3 : 220-229, 2019

      25 Ghobashy, M. M., "Radiation crosslinking of acrylic acid/acrylonitrile–silver nitrate hydrogel as a sensitive glucose nanosensor" 76 : 6245-6255, 2019

      26 Smith, S. K., "Quantitative comparison of enzyme immobilization strategies for glucose biosensing in real-time using fast-scan cyclic voltammetry coupled with carbon-fber microelectrodes" 19 : 1197-1204, 2018

      27 Benson, K., "Protein biophosphors: biodegradable, multifunctional, protein-based hydrogel for white emission, sensing, and pH detection" 27 : 1702955-, 2017

      28 Homola, J., "Present and future of surface plasmon resonance biosensors" 377 : 528-539, 2003

      29 Wang, B., "Preparation of nickel nanoparticle/graphene composites for non-enzymatic electrochemical glucose biosensor applications" 49 : 521-524, 2014

      30 Li, W., "Porous structured cellulose microsphere acts as biosensor for glucose detection with “signal-and-color” output" 205 : 295-301, 2019

      31 Muscatello, M. M. W., "Polymerized crystalline colloidal array sensing of high glucose concentrations" 81 : 4978-4986, 2009

      32 Dhanjai, "Polymer hydrogel interfaces in electrochemical sensing strategies: a review" 118 : 488-501, 2019

      33 Inan, H., "Photonic crystals: emerging biosensors and their promise for point-of-care applications" 46 : 366-388, 2017

      34 Cai, Z., "Photonic crystal protein hydrogel sensor materials enabled by conformationally induced volume phase transition" 7 : 4557-4562, 2016

      35 Alexeev, V. L., "Photonic crystal glucose-sensing material for noninvasive monitoring of glucose in tear fuid" 50 : 2353-2360, 2004

      36 Asher, S.A., "Photonic crystal carbohydrate sensors: low ionic strength sugar sensing" 125 : 3322-3329, 2003

      37 Liu, X., "Peroxidase-like activity of smart nanomaterials and their advanced application in colorimetric glucose biosensors" 15 : e1900133-, 2019

      38 Song, S., "Peroxidase mimetic activity of Fe3O4 nanoparticle prepared based on magnetic hydrogels for hydrogen peroxide and glucose detection" 506 : 46-57, 2017

      39 Munir, S., "Patterned photonic array based on an intertwined polymer network functionalized with a nonenzymatic moiety for the visual detection of glucose" 11 : 37434-37441, 2019

      40 Dautta, M., "Passive and wireless, implantable glucose sensing with phenylboronic acid hydrogel-interlayer RF resonators" 151 : 112004-, 2020

      41 He, R.-Y., "Paper-based microfuidic devices based on 3D network polymer hydrogel for the determination of glucose in human whole blood" 9 : 32367-32374, 2019

      42 Kumar, A., "PVA-based hydrogels for tissue engineering: a review" 66 : 159-182, 2016

      43 Li, X., "PNIPAM-based colloidal photonic crystals above phase transition temperature and its application in naked-eye glucose-detection" 120 : 2019

      44 Wu, Q., "Organization of glucose-responsive systems and their properties" 111 : 7855-7875, 2011

      45 Jia, S., "Order-disorder transition in doped microgel colloidal crystals and its application for optical sensing" 10 : 14254-14258, 2018

      46 MacConaghy, K. I., "Optically difracting hydrogels for screening kinase activity in vitro and in cell lysate: impact of material and solution properties" 87 : 3467-3475, 2015

      47 Steiner, M. S., "Optical methods for sensing glucose" 40 : 4805-4839, 2011

      48 Vinita, N. N. R., "One step synthesis of AuNPs@MoS 2—QDs composite as a robust peroxidase—mimetic for instant unaided eye detection of glucose in serum, saliva and tear" 263 : 109-119, 2018

      49 Le, L.V., "Near-infrared optical nanosensors for continuous detection of glucose" 14 : 204-211, 2020

      50 Wang, H., "NIR upconversion fuorescence glucose sensing and glucose-responsive insulin release of carbon dot-immobilized hybrid microgels at physiological pH" 9 : 509-516, 2017

      51 Sun, X. T., "Multitarget sensing of glucose and cholesterol based on Janus hydrogel microparticles" 92 : 81-86, 2017

      52 Li, Y., "Multifunctional biosensor based on self-assembled multi-walled carbon nanotubes sponge" 27 : 6911-6917, 2016

      53 Comba, F. N., "Mucin and carbon nanotube-based biosensor for detection of glucose in human plasma" 550 : 34-40, 2018

      54 Li, M., "Motion-based glucose sensing based on a fsh-like enzymeless motor" 5 : 4400-4407, 2017

      55 Vasapollo, G., "Molecularly imprinted polymers: present and future prospective" 12 : 5908-5945, 2011

      56 Rico-Yuste, A., "Molecularly imprinted polymerbased hybrid materials for the development of optical sensors" 11 : 1173-, 2019

      57 Kim, J. J., "Modulated insulin delivery from glucosesensitive hydrogel dosage forms" 77 : 39-47, 2001

      58 Wang, P. M., "Minimally invasive extraction of dermal interstitial fuid for glucose monitoring using microneedles" 7 : 131-141, 2005

      59 Xie, X., "Microfuidic fabrication of colloidal nanomaterials-encapsulated microcapsules for biomolecular sensing" 17 : 2015-2020, 2017

      60 Haq, M. A., "Mechanical properties of PNIPAM based hydrogels: a review" 70 : 842-855, 2017

      61 Jiang, N., "Laser interference lithography for the nanofabrication of stimuli-responsive Bragg stacks" 28 : 1702715-, 2017

      62 Choi, E., "Label-free specifc detection of immunoglobulin G antibody using nanoporous hydrogel photonic crystals" 180 : 107-113, 2013

      63 Kim, D., "Inverse opal photonic gel containing charge stabilized boronate anions for glucose sensing at physiological pH" 13 : 1800416-, 2019

      64 Mac Kenna, N., "Impedimetric transduction of swelling in pH-responsive hydrogels" 140 : 3003-3011, 2015

      65 Daikuzono, C.M., "Impedance spectroscopy for monosaccharides detection using responsive hydrogel modifed paperbased electrodes" 142 : 1133-1139, 2017

      66 Wichterle, O., "Hydrophilic GELS FOR BIOLOGICAL USE" 185 : 117-118, 1960

      67 Ahmed, E.M., "Hydrogel: preparation, characterization, and applications: a review" 6 : 105-121, 2015

      68 Cafarel-Salvador, E., "Hydrogel-forming microneedle arrays allow detection of drugs and glucose in vivo: potential for use in diagnosis and therapeutic drug monitoring" 10 : e0145644-, 2015

      69 Zhang, C., "Hydrogel-based glucose sensors: efects of phenylboronic acid chemical structure on response" 25 : 3239-3250, 2013

      70 Deligkaris, K., "Hydrogel-based devices for biomedical applications" 147 : 765-774, 2010

      71 Tang, W., "Hydrogel-based colloidal photonic crystal devices for glucose sensing" 12 : 625-, 2020

      72 Elsayed, M.M., "Hydrogel preparation technologies: relevance kinetics, thermodynamics and scaling up aspects" 27 : 871-891, 2019

      73 Jung, I. Y., "Hydrogel based biosensors for in vitro diagnostics of biochemicals, proteins, and genes" 6 : 1601475-, 2017

      74 Cao, Z., "Highly water-soluble monoboronic acid probes that show optical sensitivity to glucose based on 4-sulfo-1, 8-naphthalic anhydride" 74 : 3544-3546, 2009

      75 Dou, Q., "High performance boronic acid-containing hydrogel for biocompatible continuous glucose monitoring" 7 : 41384-41390, 2017

      76 Lopez-Gallego, F., "Glutaraldehydemediated protein immobilization" 1051 : 33-41, 2013

      77 Hisamitsu, I., "Glucoseresponsive gel from phenylborate polymer and poly(vinyl alcohol): prompt response at physiological pH through the interaction of borate with amine group in the gel" 14 : 289-293, 1997

      78 Kost, J., "Glucose-sensitive membranes containing glucose-oxidase—activity, swelling, and permeability studies" 19 : 1117-1133, 1985

      79 Matsumoto, A., "Glucose-responsive polymer gel bearing phenylborate derivative as a glucose-sensing moiety operating at the physiological pH" 5 : 1038-1045, 2004

      80 Kim, G. J., "Glucose-responsive poly(vinyl alcohol)/β-cyclodextrin hydrogel with glucose oxidase immobilization" 54 : 12806-12817, 2019

      81 Kajisa, T., "Glucose-responsive hydrogel electrode for biocompatible glucose transistor" 18 : 26-33, 2017

      82 Brownlee, M., "Glucose-controlled insulin-delivery system—semi-synthetic insulin bound to lectin" 206 : 1190-1191, 1979

      83 Elsherif, M., "Glucose sensing with phenylboronic acid functionalized hydrogel-based optical difusers" 12 : 2283-2291, 2018

      84 Ehrick, J. D., "Glucose responsive hydrogel networks based on protein recognition" 9 : 864-868, 2009

      85 Yin, R., "Glucose and pH dualresponsive concanavalin A based microhydrogels for insulin delivery" 49 : 1137-1142, 2011

      86 World Health Organization (WHO), "Global Report on Diabetes 2016" WHO 2016

      87 Mesch, M., "Functionalized hydrogel on plasmonic nanoantennas for noninvasive glucose sensing" 2 : 475-480, 2015

      88 Bruen, D., "Fluorescent probes for sugar detection" 10 : 38431-38437, 2018

      89 Odaci, D., "Fluorescence sensing of glucose using glucose oxidase modifed by PVA-Pyrene prepared via “Click” chemistry" 10 : 2928-2934, 2009

      90 Chen, Y. -A., "Fast and efective turn-on paper-based phosphorescence biosensor for detection of glucose in serum" 63 : 424-431, 2016

      91 Yang, J. M., "Fabrication of hydrogel materials for biomedical applications" 1077 : 197-224, 2018

      92 Xu, Y., "Emerging barcode particles for multiplex bioassays" 62 : 289-324, 2018

      93 Marquez, A., "Electrodepositable alginate membranes for enzymatic sensors: an amperometric glucose biosensor for whole blood analysis" 97 : 136-142, 2017

      94 Guiseppi-Elie, A., "Electroconductive hydrogels: synthesis, characterization and biomedical applications" 31 : 2701-2716, 2010

      95 Dilusha Cooray, M. C., "Efcient enzymatic oxidation of glucose mediated by ferrocene covalently attached to polyethylenimine stabilized gold nanoparticles" 28 : 2728-2736, 2016

      96 Norrild, J. C., "Design, synthesis and structure of new potential electrochemically active boronic acid-based glucose sensors" 2 (2): 303-311, 2002

      97 Chen, C., "Current and emerging technology for continuous glucose monitoring" 17 : 182-, 2017

      98 Riccardi, C. M., "Covalent interlocking of glucose oxidase and peroxidase in the voids of paper: enzyme-polymer “spider webs.”" 52 : 2593-2596, 2016

      99 Borrok, M. J., "Conformational changes of glucose/galactose-binding protein illuminated by open, unliganded, and ultra-high-resolution ligand-bound structures" 16 : 1032-1041, 2007

      100 Huang, J., "Complex of hydrogel with magnetic immobilized GOD for temperature controlling fber optic glucose sensor" 114 : 262-267, 2016

      101 Thennadil, S. N., "Comparison of glucose concentration in interstitial fuid, and capillary and venous blood during rapid changes in blood glucose levels" 3 : 357-365, 2001

      102 Liang, H., "Co-immobilization of multiple enzymes by metal coordinated nucleotide hydrogel nanofbers: improved stability and an enzyme cascade for glucose detection" 8 : 6071-6078, 2016

      103 Lan, Y., "Clinical evaluation of a photonic crystal sensor for glucose monitoring in urine" 4 : 6547-6551, 2019

      104 Sengupta, P., "Chemically modifed carbon nitride-chitin-acetic acid hybrid as a metalfree bifunctional nanozyme cascade of glucose oxidase-peroxidase for “click of” colorimetric detection of peroxide and glucose" 154 : 112072-, 2020

      105 van Enter, B. J., "Challenges and perspectives in continuous glucose monitoring" 54 : 5032-5045, 2018

      106 Guan, Y., "Boronic acid-containing hydrogels: synthesis and their applications" 42 : 8106-8121, 2013

      107 Miyata, T., "Biomolecule-sensitive hydrogels" 54 : 79-98, 2002

      108 Sanjay, S.T., "Biomarker detection for disease diagnosis using cost-efective microfuidic platforms" 140 : 7062-7081, 2015

      109 Schmidt, U., "Biochemical piezoresistive sensors based on pH- and glucose-sensitive hydrogels for medical applications" 2 : 117-121, 2016

      110 Lu, Z., "Bifunctional and highly sensitive electrochemical non-enzymatic glucose and hydrogen peroxide biosensor based on NiCo2O4 nanofowers decorated 3D nitrogen doped holey graphene hydrogel" 102 : 708-717, 2019

      111 Kojima, J., "An integrated glucose sensor with an all-solidstate sodium ion-selective electrode for a minimally invasive glucose monitoring system" 6 : 831-841, 2015

      112 Al-Sagur, H., "Amperometric glucose biosensing performance of a novel graphene nanoplatelets-iron phthalocyanine incorporated conducting hydrogel" 139 : 111323-, 2019

      113 George, S. M., "Advancements in hydrogel-functionalized immunosensing platforms" 5 : 2060-2068, 2020

      114 Zhao, J., "Adjustable tribological behavior of glucose-sensitive hydrogels" 34 : 7479-7487, 2018

      115 Huang, J., "A temperature-triggered fber optic biosensor based on hydrogel-magnetic immobilized enzyme complex for sequential determination of cholesterol and glucose" 125 : 123-128, 2017

      116 Wu, M., "A smart hydrogel system for visual detection of glucose" 142 : 111547-, 2019

      117 Liu, S., "A review on microfuidic paper-based analytical devices for glucose detection" 16 : 2086-, 2016

      118 Al-Sagur, H., "A novel glucose sensor using lutetium phthalocyanine as redox mediator in reduced graphene oxide conducting polymer multifunctional hydrogel" 92 : 638-645, 2017

      119 Yan, Z., "A non-enzymatic urine glucose sensor with 2-D photonic crystal hydrogel" 408 : 8317-8323, 2016

      120 Vezouviou, E., "A near infrared holographic glucose sensor" 68 : 371-381, 2015

      121 He, R., "A hydrogel microneedle patch for point-of-care testing based on skin interstitial fuid" 9 : e1901201-, 2020

      122 James, T. D., "A glucose-selective molecular fuorescence sensor" 33 : 2207-2209, 1994

      123 Ruan, J. L., "A gelated colloidal crystal attached lens for noninvasive continuous monitoring of tear glucose" 9 : 125-, 2017

      124 Lin, H., "A fber optic biosensor based on hydrogel-immobilized enzyme complex for continuous determination of cholesterol and glucose" 187 : 1569-1580, 2019

      125 Zhao, J., "A facile gold nanoparticles embeded hydrogel for non-enzymatic sensing of glucose" 183 : 110404-, 2019

      126 Zhang, Z., "A dielectric afnity glucose microsensor using hydrogel-functionalized coplanar electrodes" 21 : 93-, 2017

      127 Geng, C., "3D hybrid plasmonic photonic crystals by colloidal-crystal templating and hydrogel-assisted conformal metal etching" 7 : 1900599-, 2019

      128 Chen, C., "2D photonic crystal hydrogel sensor for tear glucose monitoring" 3 : 3211-3217, 2018

      129 Li, W., "2D Au nanosphere arrays/PVA-PBA-modifed-hydrogel composite flm for glucose detection with strong difraction intensity and linear response" 9 : 140-, 2019

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