Lifetime-based sensing of glucose using energy transfer with a long lifetime donor

被引:0
|
作者
Center for Fluorescence Spectroscopy, Dept. of Biochem. and Molec. Biology, Univ. of Maryland School of Medicine, 725 West Lombard Street, Baltimore, MD 21201, United States [1 ]
不详 [2 ]
机构
来源
ANAL. BIOCHEM. | / 1卷 / 102-108期
基金
美国国家卫生研究院;
关键词
Ligands - Light sources - Binding energy - Insulin - Ruthenium compounds - Complexation - Energy transfer - Light;
D O I
暂无
中图分类号
学科分类号
摘要
We describe an optical assay for glucose based on the luminescence decay time of a long lifetime metal-ligand complex. Concanavalin A was covalently labeled with Ruthenium metal-ligand complex (RuCon A) which served as the donor. The acceptor was malachite green which was covalently linked to insulin. The malachite green insulin was also covalently labeled with maltose (MIMG) to provide binding affinity to RuCon A. Binding of RuCon A to MIMG resulted in a decreased intensity and decay time of RuCon A. Glucose was detected by competitive displacement of MIMG from RuCon A, resulting in increased intensity and decay time. This glucose assay has several favorable features. The long lifetime of RuCon A allows phase-modulation decay time measurements using an amplitude-modulated bluelight-emitting diode as the light source. Reversibility of the assay can be controlled by the extent of sugar labeling of the insulin. Finally, the glucose-sensitive range can be adjusted by selection of the sugar structure and extent of labeling of the insulin.
引用
收藏
相关论文
共 50 条
  • [41] A fluorescence lifetime-based fibre-optic glucose sensor using glucose/galactose-binding protein
    Saxl, Tania
    Khan, Faaizah
    Ferla, Matteo
    Birch, David
    Pickup, John
    ANALYST, 2011, 136 (05) : 968 - 972
  • [42] Lifetime-based nanothermometry in vivo with ultra-long-lived luminescence
    Su, Xianlong
    Wen, Yue
    Yuan, Wei
    Xu, Ming
    Liu, Qian
    Huang, Chunhui
    Li, Fuyou
    CHEMICAL COMMUNICATIONS, 2020, 56 (73) : 10694 - 10697
  • [43] PHOSPHORESCENCE LIFETIME-BASED SENSING OF SO2 IN THE GAS-PHASE
    PAPKOVSKY, DB
    DESYATERIK, IV
    PONOMAREV, GV
    KUROCHKIN, IN
    KORPELA, T
    ANALYTICAL LETTERS, 1995, 28 (11) : 2027 - 2040
  • [44] Energy transfer-based lifetime sensing of chloride using a luminescent transition metal complex
    Huber, C
    Werner, T
    Krause, C
    Klimant, I
    Wolfbeis, OS
    ANALYTICA CHIMICA ACTA, 1998, 364 (1-3) : 143 - 151
  • [45] Electronic Energy Transfer Modulation in a Dynamic Foldaxane: Proof-of-Principle of a Lifetime-Based Conformation Probe
    Denisov, Sergey A.
    Gan, Quan
    Wang, Xiang
    Scarpantonio, Luca
    Ferrand, Yann
    Kauffmann, Brice
    Jonusauskas, Gediminas
    Huc, Ivan
    McClenaghan, Nathan D.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2016, 55 (04) : 1328 - 1333
  • [46] A fluorescence lifetime-based solid sensor for water
    Chang, Q
    Murtaza, Z
    Lakowicz, JR
    Rao, G
    ANALYTICA CHIMICA ACTA, 1997, 350 (1-2) : 97 - 104
  • [47] Multicomponent lifetime-based pH sensors utilizing constant-lifetime probes
    Bare, WD
    Mack, NH
    Xu, WY
    Demas, JN
    DeGraff, BA
    ANALYTICAL CHEMISTRY, 2002, 74 (09) : 2198 - 2209
  • [48] Lifetime-based capillary waveguide sensor instrumentation
    Kieslinger, D.
    Draxler, S.
    Trznadel, K.
    Lippitsch, M.E.
    Sensors and Actuators, B: Chemical, 1997, B39 (1 -3 pt 2) : 300 - 304
  • [49] A Fluorescence Lifetime-Based Assay for Abelson Kinase
    Pritz, Stephan
    Meder, Gabriele
    Doering, Klaus
    Drueckes, Peter
    Woelcke, Julian
    Mayr, Lorenz M.
    Hasiepen, Ulrich
    JOURNAL OF BIOMOLECULAR SCREENING, 2011, 16 (01) : 65 - 72
  • [50] Lifetime-based capillary waveguide sensor instrumentation
    Kieslinger, D
    Draxler, S
    Trznadel, K
    Lippitsch, ME
    SENSORS AND ACTUATORS B-CHEMICAL, 1997, 39 (1-3) : 300 - 304