Can skin cancer in humans be prevented by alleviation of oxidative stress?

被引:4
作者
Parsons, PG
机构
[1] Queensland Cancer Fund Laboratories, Queensland Inst. of Medical Research, Herston, QLD
[2] Queensland Cancer Fund Laboratories, Queensland Inst. of Medical Research, Herston, QLD
关键词
D O I
10.1080/13510002.1997.11747094
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The range of photon energies in solar radiation and the diverse cell and molecular targets in skin allow for participation of oxygen radicals and oxidative stress at several levels in the development of skin cancer: DNA damage and mutation, membrane damage, and intracellular signalling. The intense UVA component of sunlight (315-400 nm) is of particular interest because of deep penetration, generation of oxidative damage and having a mutational spectrum which overlaps that of the more carcinogenic UVB (280-315 nm). Many UV-induced mutagenic and signalling events are now understood at the molecular level, and significant protection from UV carcinogenesis has been obtained with antioxidants in experimental animals. There is little evidence to suggest, however, that similar results have been achieved in humans although the converse effect has been established, of elevated skin cancer risk following simultaneous exposure to sunlight and precursors of the pro-oxidant paraquat. The present difficulty in translating these findings to prevent human skin cancer may arise from deficiencies in the models used and incomplete information about the specific responses of the target cells relevant to solar UV.
引用
收藏
页码:77 / 83
页数:7
相关论文
共 66 条
[1]   Chemoprevention of photocarcinogenesis [J].
Agarwal, R ;
Mukhtar, H .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1996, 63 (04) :440-444
[2]  
ALSALEEM T, 1980, LANCET, V2, P264
[3]   2 GENES CONTRIBUTE TO DIFFERENT EXTENTS TO THE HEME OXYGENASE ENZYME-ACTIVITY MEASURED IN CULTURED HUMAN SKIN FIBROBLASTS AND KERATINOCYTES - IMPLICATIONS FOR PROTECTION AGAINST OXIDANT STRESS [J].
APPLEGATE, LA ;
NOEL, A ;
VILE, G ;
FRENK, E ;
TYRRELL, RM .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1995, 61 (03) :285-291
[4]   Lipid metabolite involvement in the activation of the human heme oxygenase-1 gene [J].
BasuModak, S ;
Luscher, P ;
Tyrrell, RM .
FREE RADICAL BIOLOGY AND MEDICINE, 1996, 20 (07) :887-897
[5]  
BISSETT DL, 1990, PHOTODERMATOL PHOTO, V7, P56
[6]   EFFECT OF A LOW-FAT DIET ON THE INCIDENCE OF ACTINIC KERATOSIS [J].
BLACK, HS ;
HERD, JA ;
GOLDBERG, LH ;
WOLF, JE ;
THORNBY, JI ;
ROSEN, T ;
BRUCE, S ;
TSCHEN, JA ;
FOREYT, JP ;
SCOTT, LW ;
JAAX, S ;
ANDREWS, K .
NEW ENGLAND JOURNAL OF MEDICINE, 1994, 330 (18) :1272-1275
[7]   PROTECTIVE ROLE OF BUTYLATED HYDROXYTOLUENE AND CERTAIN CAROTENOIDS IN PHOTOCARCINOGENESIS [J].
BLACK, HS ;
MATHEWSROTH, MM .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1991, 53 (05) :707-716
[8]   A ROLE FOR SUNLIGHT IN SKIN-CANCER - UV-INDUCED P53 MUTATIONS IN SQUAMOUS-CELL CARCINOMA [J].
BRASH, DE ;
RUDOLPH, JA ;
SIMON, JA ;
LIN, A ;
MCKENNA, GJ ;
BADEN, HP ;
HALPERIN, AJ ;
PONTEN, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (22) :10124-10128
[9]   TRANSMISSION OF HUMAN-EPIDERMIS AND STRATUM-CORNEUM AS A FUNCTION OF THICKNESS IN THE ULTRAVIOLET AND VISIBLE WAVELENGTHS [J].
BRULS, WAG ;
SLAPER, H ;
VANDERLEUN, JC ;
BERRENS, L .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1984, 40 (04) :485-494
[10]   THE ROLE OF THE CELLULAR ANTIOXIDANT DEFENSE IN OXIDANT CARCINOGENESIS [J].
CERUTTI, P ;
GHOSH, R ;
OYA, Y ;
AMSTAD, P .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1994, 102 :123-129