A Simple Image Analysis Method for Determination of Glucose by using Glucose Oxidase CdTe/TGA Quantum Dots

Publish Year: 1393
نوع سند: مقاله ژورنالی
زبان: English
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JR_ANALCH-1-2_005

تاریخ نمایه سازی: 13 بهمن 1401

Abstract:

Glucose, as the major energy source in cellular metabolism, plays an important role in the natural growth of cells. Herein, a simple, rapid and low-cost method for the glucose determination by utilizing glucose oxidase and CdTe/thioglycolic acid (TGA) quantum dots (QDs) on a thin layer chromatography (TLC) plate has been described. The detection was based on the combination of the glucose enzymatic reaction and the quenching effect of H۲O۲ on the CdTe/TGA quantum dots photoluminescence. This QDs-based assay exhibits several advantages. Enzyme immobilization and QDs modification process are not required and the high stability of the QDs towards photobleaching is beneficial to this sensing system. The proposed method is linear in concentration range of ۱.۰۰ × ۱۰-۱-۳.۰۰ × ۱۰-۵ M of glucose and has a detection limit of ۱.۲۵ × ۱۰-۸ M. The results of real sample analysis show that the glucose oxidase CdTe/TGA QDs system would be a promising glucose-biosensing system.

Authors

Javad Tashkhourian

Chemistry Department, Shiraz University

Morteza Akhond

Chemistry Department, Shiraz University

S. Hooshmand

Chemistry Department, Shiraz University

T. Khosousi

Chemistry Department, Shiraz University

B. Hemmateenejad

Chemistry Department, Shiraz University

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  • T. E. Edmonds, Ed.; Chemical Sensors, Chapman and Hall; New ...
  • D.M.G. Preethichandra and E.M.I. Mala Ekanayake, Nano-Biosensor Development for Biomedical ...
  • A. Sadanandom, R. M. Napier, Biosensors in plants, Curr. Opin. ...
  • I. L. Justino, A. Teresa, R. Santos, C. A. Duarte, ...
  • L. Su, W. Jia, C. Hou, Y. Lei, Microbial biosensors: ...
  • D. Ahuja, D. Parande, Optical sensors and their applications, J. ...
  • X. Wu, H. Liu, J. Liu, K. N. Haley, J. ...
  • K. Grieve, P. Mulvaney, F. Grieser, Synthesis and electronic properties ...
  • P. Alivisatos, The use of nanocrystals in biological detection, Nat. ...
  • M. Nirmal, L. Brus, Luminescence photophysics in semiconductor nanocrystals, Acc. ...
  • R. Gill, M. Zayats, I. Willner, Semiconductor quantum dots for ...
  • M. A. Jhonsi, R. Renganathan, Investigations on the photoinduced interaction ...
  • J. Duan, L. Song, J. Zhan, One-pot synthesis of highly ...
  • J. Tashkhourian, M.R. Hormozi Nezhad, J. Khodaveisi, R. Dashti, A ...
  • L. Qingwen, L. Guoan, W. Yiming, Z. Xingrong, Immobilization of ...
  • E. A. Moschou, B. V. Sharma, S. K. Deo, S. ...
  • M. Ben-Moshe, V. L. Alexeev, S. A. Asher, Fast responsive ...
  • T. Zhang, E. V. Anslyn, Using an indicator displacement assay ...
  • M.C. Lee, S. Kabilan, A. Hussain, X. Yang, J. Blyth, ...
  • X. D. Ge, L. Tolosa, G. Rao, Dual-labeled glucose binding ...
  • D.M. Porterfield, Measuring metabolism and biophysical flux in the tissue, ...
  • F. Rolland, E. Baena-Gonzalez, J. Sheen, Sugar sensing and signaling ...
  • K. Ai, B. Zhang, L. Lu, Europium-based fluorescence nanoparticle sensor ...
  • A. Heller, B. Feldman, Electrochemical glucose sensors and their applications ...
  • L.A. Terry, S.F. White, L.J. Tigwell, The application of biosensors ...
  • L.C. Clark, C. Lyons, Ann. N.Y. Electrode systems for continuous ...
  • M. Hu, J. Tian, H. T. Lu, L. X. Weng, ...
  • S. Lee, V. H. Perez-Luna, Dextran-gold nanoparticle hybrid material for ...
  • K. Aslan, J. R. Lakowicz, C. D. Geddes, Nanogold plasmon-resonance-based ...
  • G. Blagoi, N. Rosenzweig, Z. Rosenzweig, Design, Synthesis and application ...
  • P. W. Barone, R. S. Parker, M. S. Strano, In ...
  • B. L. Ibey, H. T. Beier, R. M. Rounds, G. ...
  • W. Chen, H. Yao, C. H. Tzang, J. Zhu, M. ...
  • T. Chen, K. A. Friedman, I. Lei, A. Heller, In ...
  • A. Abbaspour, M. A. Mehrgardi, M. A. Noori, A. Kamyabi, ...
  • Y. Zhang, Y. Li, X.P. Yan, Photoactivated CdTe/CdSe quantum dots ...
  • M. A. Jhonsi, R. Renganathan, Study on the photoinduced interaction ...
  • J. N. Tian, R. J. Liu, Y. C. Zhao, Q. ...
  • T. Khosousi, PhD Thesis, Shiraz University, Shiraz, Iran (۲۰۱۲) ...
  • M. Hu, J. Tian, H. T. Lu, L. X. Weng, ...
  • Y. C. Shiang, C.C. Huang, H.T. Chang, Gold nanodot-based luminescent ...
  • L. H. Cao, J. Ye, L. L. Tong, B. Tang, ...
  • M. Gao, S. Kirstein, H. Mhwald, A.L. Rogach, A. Kornowski, ...
  • S. Chutipongtanate, V. Thongboonkerd, Systematic comparisons of artificial urine formulas ...
  • M. V. Martinez-Ortega, M. C. Garcia-Parrilla, Ana M. Troncoso, Comparison ...
  • F. M. Lopesi, K. D. A. Batistai, G. L. A. ...
  • A. W. Martinez, S. T. Phillips, M. J. Butte, G. ...
  • Y. Ni, C. Huang, S. Kokot, A kinetic spectrophotometric method ...
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