ID | 110835 |
著者 |
Januszewski, Andrzej S
University of Melbourne, Department of Medicine, St Vincent’s Hospital
Thomas, Merlin C
Baker Institute
Karschimkus, Connie S
University of Melbourne, Department of Medicine, St Vincent’s Hospital
Chung, Jasmine S
University of Melbourne, Department of Medicine, St Vincent’s Hospital
Rowley, Kevin G
University of Melbourne, Department of Medicine, St Vincent’s Hospital
Nelson, Craig L
University of Melbourne, Department of Medicine, St Vincent’s Hospital
O’Neal, David N
University of Melbourne, Department of Medicine, St Vincent’s Hospital
Dragicevic, George
University of Melbourne, Department of Medicine, St Vincent’s Hospital
Harper, Colin A
Department of Ophthalmology, University of Melbourne
Best, James D
University of Melbourne, Department of Medicine, St Vincent’s Hospital
Jenkins, Alicia J
University of Melbourne, Department of Medicine, St Vincent’s Hospital
|
キーワード | advanced glycation end products
low molecular weight fluorophores
type 1 diabetes
renal function
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資料タイプ |
学術雑誌論文
|
抄録 | Objectives : Circulating low molecular weight (<10 kDa) fluorophores (LMW-F) measured by non-specific fluorescence spectroscopy may detect small advanced glycation end-products (AGEs) not recognized by other assays. This longitudinal study assessed correlates of LMW-F and predictive power of LMW-F levels for vascular health in Type 1 diabetes (T1DM) patients. Methods : Fasting patients with T1DM (n=37) were studied twice at intervals of 12-60 months (mean±SD, 33±15 months). LMW-F levels were also measured once in 112 healthy control subjects. Results : Relative to controls, LMW-F levels were higher in diabetic subjects at initial and final time points (mean±SD), 5.4±1.9 AU/ml and 4.5±1.8 AU/ml respectively vs. 3.8±2.1 AU/ml p=0.0001 and p=0.06). Baseline LMW-F levels predicted subsequent hs-CRP and oxLDL/LDL values. LMW-F levels decreased significantly over time in diabetes (5.4±1.9 vs. 4.5±1.8 AU/ml p=0.02). Rises in LMW-F levels in individual diabetic subjects correlated significantly with worsening renal function (BUN), glycemia (HbA1c) and with vascular dysfunction (systemic vascular resistance). Conclusions : LMW-F levels predict levels of inflammation and oxidation in T1DM. Changes in LMW-F levels in T1DM reflect variations in glycemia and renal function. Biochemical characterization of LMW-F would facilitate understanding of the potential utility of LMW-F as a therapeutic target.
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掲載誌名 |
The journal of medical investigation : JMI
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ISSN | 13431420
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cat書誌ID | AA11166929
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巻 | 55
|
号 | 1-2
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開始ページ | 29
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終了ページ | 36
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並び順 | 29
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発行日 | 2008-02
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出版社版DOI | |
出版社版URL | |
フルテキストファイル | |
言語 |
eng
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著者版フラグ |
出版社版
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