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53. Johner SA, Libuda L, Shi L, Retzlaff A, Joslowski G, Remer T (2010) Urinary fructose: a
potential biomarker for dietary fructose intake in children. Eur J Clin Nutr 64(11):1365 - 1370.
doi: 10.1038/ejcn.2010.160
54. Tasevska N, Runswick SA, Welch AA, McTaggart A, Bingham SA (2009) Urinary sugars
biomarker relates better to extrinsic than to intrinsic sugars intake in a metabolic study with
volunteers consuming their normal diet. Eur J Clin Nutr 63(5):653
659. doi: 10.1038/ejcn.
-
2008.21
55. Richterich R, Dauwalder H (1971) Determination of plasma glucose by hexokinase-glucose-6-
phosphate dehydrogenase method. Schweiz Med Wochenschr 101(17):615
618
56. Booklet, Glucose Assay, Dimension Clinical Chemistry System, Siemens (2014)
57. Marbach EP, Weil MH (1967) Rapid enzymatic measurement of blood lactate and pyruvate
use and signi cance of metaphosphoric acid as a common precipitant. Clin Chem 13
(4):314
-
325
58. Protocol, Fructose Assay Kit (ab83380), Abcam (2014)
59. Jin LJ, Li SF (1999) Screening of carbohydrates in urine by capillary electrophoresis.
Electrophoresis
-
20(17):3450 - 3454.
doi: 10.1002/(SICI)1522-2683(19991101)20:17<3450:
AID-ELPS3450>3.0.CO;2-G
60. Wu Q, Wang L, Yu H, Wang J, Chen Z (2011) Organization of glucose-responsive systems
and their properties. Chem Rev 111(12):7855 - 7875. doi: 10.1021/cr200027j
61. Bankar SB, Bule MV, Singhal RS, Ananthanarayan L (2009) Glucose oxidase an overview.
Biotechnol Adv 27(4):489 - 501. doi: 10.1016/j.biotechadv.2009.04.003
62. Liu Y, Deng C, Tang L, Qin A, Hu R, Sun JZ, Tang BZ (2011) Specific detection of
D-glucose by a tetraphenylethene-based
fl
uorescent sensor. J Am Chem Soc 133(4):660
663.
-
doi: 10.1021/ja107086y
63. Cummins BM, Garza JT, Cote GL (2013) Optimization of a Concanavalin A-based glucose
sensor using
5404. doi: 10.1021/ac303689j
64. Zhai D, Liu B, Shi Y, Pan L, Wang Y, Li W, Zhang R, Yu G (2013) Highly sensitive glucose
sensor based on pt nanoparticle/polyaniline hydrogel heterostructures. ACS Nano 7(4):
3540
fl
fluorescence anisotropy. Anal Chem 85(11):5397
-
3546. doi: 10.1021/nn400482d
65. Invernale MA, Tang BC, York RL, Le L, Hou DY, Anderson DG (2014) Microneedle
electrodes toward an amperometric glucose-sensing smart patch. Adv healthc mater 3
(3):338
-
342. doi: 10.1002/adhm.201300142
66. Guo C, Huo H, Han X, Xu C, Li H (2014) Ni/CdS bifunctional Ti@TiO2 core-shell nanowire
electrode for high-performance nonenzymatic glucose sensing. Anal Chem 86(1):876 - 883.
doi: 10.1021/ac4034467
67. Wooten M, Karra S, Zhang M, Gorski W (2014) On the direct electron transfer, sensing, and
enzyme activity in the glucose oxidase/carbon nanotubes system. Anal Chem 86(1):752 - 757.
doi: 10.1021/ac403250w
68. Steiner MS, Duerkop A, Wolfbeis OS (2011) Optical methods for sensing glucose. Chem Soc
Rev 40(9):4805 - 4839. doi: 10.1039/c1cs15063d
69. He H, Xu X, Wu H, Jin Y (2012) Enzymatic plasmonic engineering of Ag/Au bimetallic
nanoshells and their use for sensitive optical glucose sensing. Adv Mater 24(13):1736
-
1740.
-
doi: 10.1002/adma.201104678
70. Wu W, Mitra N, Yan EC, Zhou S (2010) Multifunctional hybrid nanogel for integration of
optical glucose sensing and self-regulated insulin release at physiological pH. ACS Nano 4
(8):4831
4839. doi: 10.1021/nn1008319
71. Muscatello MM, Stunja LE, Asher SA (2009) Polymerized crystalline colloidal array sensing
of high glucose concentrations. Anal Chem 81(12):4978
-
4986. doi: 10.1021/ac900006x
72. Honda M, Kataoka K, Seki T, Takeoka Y (2009) Con ned stimuli-responsive polymer gel in
inverse opal polymer membrane for colorimetric glucose sensor. Langmuir 25(14):8349
-
8356.
-
doi: 10.1021/la804262b
73. Lee YJ, Pruzinsky SA, Braun PV (2004) Glucose-sensitive inverse opal hydrogels: analysis of
optical diffraction response. Langmuir 20(8):3096 - 3106. doi: 10.1021/la035555x
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