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Two Fluorescent Wavelengths, 440ex/520emnm and 370ex/440emnm, Reflect Advanced Glycation and Oxidation End Products in Human Skin Without Diabetes

Authors :
Hugo Corstjens
Neelam Muizzuddin
Scott K. Howell
Paul J. Beisswenger
Todd Mackenzie
Mary S. Matsui
Source :
Diabetes Technology & Therapeutics. 14:285-292
Publication Year :
2012
Publisher :
Mary Ann Liebert Inc, 2012.

Abstract

Advanced glycation end products (AGEs) and oxidation products (OPs) play an important role in diabetes complications, aging, and damage from sun exposure. Measurement of skin autofluorescence (SAF) has been promoted as a noninvasive technique to measure skin AGEs, but the actual products quantified are uncertain. We have compared specific SAF measurements with analytically determined AGEs and oxidative biomarkers in skin collagen and determined if these measurements can be correlated with chronological aging and actinic exposure.SAF at four excitation (ex)/emission (em) intensities was measured on the upper inner arm ("sun protected") and dorsal forearm ("sun exposed") in 40 subjects without diabetes 20-60 years old. Skin collagen from the same sites was analyzed by liquid chromatography-tandem mass spectrometry for three AGEs-pentosidine, carboxymethyllysine (CML), and carboxyethyllysine (CEL)-and the OP methionine sulfoxide (MetSO).There was poor correlation of AGE-associated fluorescence spectra with AGEs and OP in collagen, with only pentosidine correlating with fluorescence at 370(ex)/440(em) nm. A little-studied SAF (440(ex)/520(em) nm), possibly reflecting elastin cross-links, correlated with all AGEs and OPs. Levels of CML, pentosidine, and MetSO, but not SAF, were significantly higher in sun-exposed skin. These AGEs and OPs, as well as SAF at 370(ex)/440(em) nm and 440(ex)/520(em) nm, increased with chronological aging.SAF measurements at 370(ex)/440(em) nm and 335(ex)/385(em) nm, except for pentosidine, which correlated with fluorescence at 370(ex)/440(em), correlate poorly with glycated and oxidatively modified protein in human skin and do not reflect actinic modification. A new fluorescence measurement (440(ex)/520(em) nm) appears to reflect AGEs and OPs in skin.

Details

ISSN :
15578593 and 15209156
Volume :
14
Database :
OpenAIRE
Journal :
Diabetes Technology & Therapeutics
Accession number :
edsair.doi.dedup.....3a43a3009c95af2ff96d660ef39c1072
Full Text :
https://doi.org/10.1089/dia.2011.0108