In vivo Raman spectroscopic analysis of the influence of UV radiation on carotenoid antioxidant substance degradation of the human skin

被引:49
作者
Darvin, M. E. [1 ]
Gersonde, I.
Albrecht, H.
Sterry, W.
Lademann, J.
机构
[1] Charite Univ Med Berlin, Ctr Expt & Appl Cutaneous Physiol, Berlin, Germany
[2] Laser & Med Technol GmbH, Berlin, Germany
关键词
D O I
10.1134/S1054660X06050148
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
It is well known from the literature that carotenoid antioxidant substances decrease after the irradiation of the skin with UV light. Available literature has shown no information about the response time and total dynamics of degradation of carotenoid antioxidants after UV irradiation. The measurements were made with the HPLC method, which is time-consuming and does not give relevant information about the dynamics of degradation of carotenoids in the skin after UV irradiation. With the introduction of new noninvasive spectroscopic methods, it became possible to measure in vivo the behavior of carotenoid antioxidant substances, such as beta-carotene and lycopene in the skin after UV light exposure. In the present study, the resonance Raman spectroscopy method was used as a fast and noninvasive optical method to measure the dynamics of degradation of beta-carotene and lycopene in living human skin after UV exposure. It was found that the beta-carotene and lycopene concentration in the skin does not decrease immediately after UV irradiation. There is a time delay, which varies from 30 up to 90 min for beta-carotene and from 0 up to 30 min for lycopene. A strong nonlinear correlation between the individual antioxidant level of volunteers and the magnitude of destruction of antioxidants in the skin was found.
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收藏
页码:833 / 837
页数:5
相关论文
共 15 条
[1]   Effects of controlled exposure of sunlight on plasma and skin levels of beta-carotene [J].
Biesalski, HK ;
Hemmes, C ;
Hopfenmuller, W ;
Schmid, C ;
Gollnick, HPM .
FREE RADICAL RESEARCH, 1996, 24 (03) :215-224
[2]  
Darvin ME, 2004, LASER PHYS, V14, P231
[3]   Non-invasive in vivo determination of the carotenoids beta-carotene and lycopene concentrations in the human skin using the Raman spectroscopic method [J].
Darvin, ME ;
Gersonde, I ;
Meinke, M ;
Sterry, W ;
Lademann, J .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2005, 38 (15) :2696-2700
[4]   LYCOPENE AS THE MOST EFFICIENT BIOLOGICAL CAROTENOID SINGLET OXYGEN QUENCHER [J].
DI MASCIO, P ;
KAISER, S ;
SIES, H .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1989, 274 (02) :532-538
[5]   Ultraviolet AI exposure of human skin results in Langerhans cell depletion and reduction of epidermal antigen-presenting cell function: partial protection by a broad-spectrum sunscreen [J].
Dumay, O ;
Karam, A ;
Vian, L ;
Moyal, D ;
Hourseau, C ;
Stoebner, P ;
Peyron, JL ;
Meynadier, J ;
Cano, JP ;
Meunier, L .
BRITISH JOURNAL OF DERMATOLOGY, 2001, 144 (06) :1161-1168
[6]   Non-invasive Raman spectroscopic detection of carotenoids in human skin [J].
Hata, TR ;
Scholz, TA ;
Ermakov, IV ;
McClane, RW ;
Khachik, F ;
Gellermann, W ;
Pershing, LK .
JOURNAL OF INVESTIGATIVE DERMATOLOGY, 2000, 115 (03) :441-448
[7]   Inhibitorische Wirkung von Lichtschutzexterna auf die Entwicklung von Hautkrebs [J].
J. Krutmann .
Der Hautarzt, 2001, 52 (1) :62-63
[8]  
Krutmann J, 2001, Praxis (Bern 1994), V90, P297
[9]   Solar damage in skin tumors: Quantification of elastotic material [J].
Moon, JS ;
Oh, CH .
DERMATOLOGY, 2001, 202 (04) :289-292
[10]   Effect of daily versus intermittent sunscreen application on solar simulated UV radiation-induced skin response in humans [J].
Phillips, TJ ;
Bhawan, J ;
Yaar, M ;
Bello, Y ;
LoPiccolo, D ;
Nash, JF .
JOURNAL OF THE AMERICAN ACADEMY OF DERMATOLOGY, 2000, 43 (04) :610-618