Glucose-dependent changes in NAD(P)H-related fluorescence lifetime of adipocytes and fibroblasts in vitro: Potential for non-invasive glucose sensing in diabetes mellitus

被引:43
作者
Evans, ND
Gnudi, L
Rolinski, OJ
Birch, DJS
Pickup, JC [1 ]
机构
[1] Kings Coll London, Guys Kings & St Thomas Sch Med, Dept Chem Pathol, London SE1 9RT, England
[2] Kings Coll London, Guys Kings & St Tomas Sch Med, Dept Diabet Endocrinol & Internal Med, London SE1 9RT, England
[3] Univ Strathclyde, Dept Phys, Glasgow G4 0NG, Lanark, Scotland
基金
英国工程与自然科学研究理事会;
关键词
fluorescence; glucose; diabetes mellitus; time-resolved fluorescence; time-correlated single-photon counting; non-invasive monitoring;
D O I
10.1016/j.jphotobiol.2005.04.001
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
The aim of this study was to test the hypothesis that glucose can be monitored non-invasively by measuring NAD(P)H-related fluorescence lifetime of cells in an in vitro cell culture model. Autofluorescence decay functions were measured in 3T3-L1 adipocytes by time-correlated single-photon counting (excitation 370 nm, emission 420-480 nm). Free NADH had a two-exponential decay but cell autofluorescence fitted best to a three-exponential decay. Addition of 30 mM glucose caused a 29% increase in autofluorescence intensity, a significantly shortened mean lifetime (from 7.23 to 6.73 ns), and an increase in the relative amplitude and fractional intensity of the short-lifetime component at the expense of the two longer-lifetime components. Similar effects were seen with rotenone, an agent that maximizes mitochondrial NADH. 3T3-L1 fibroblasts stained with the fluorescent mitochondrial marker, rhodamine 123 showed a 16% quenching of fluorescence intensity when exposed to 30 mm glucose, and an increase in the relative amplitude and fractional intensity of the short lifetime at the expense of the longer lifetime component. We conclude that, though the effect size is relatively small, glucose can be measured non-invasively in cells by monitoring changes in the lifetimes of cell autofluorescence or of a dye marker of mitochondrial metabolism. Further investigation and development of fluorescence intensity and lifetime sensing is therefore indicated for possible non-invasive metabolic monitoring in human diabetes. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:122 / 129
页数:8
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