(SYSTEMIC) PHOTOTOXICITY OF DRUGS AND OTHER XENOBIOTICS

被引:39
作者
VANHENEGOUWEN, GMJB
机构
[1] Center for Bio-Pharmaceutical Sciences, University of Leiden, 2300 RA Leiden, P.O. Box 9502, NL
关键词
PHOTOTOXICITY; PHOTOALLERGY; TRICYCLIC DIBENZOCYCLOHEPTADIENES; DIPHENHYDRAMINE; CONTRACEPTIVE STEROIDS; NORETHISTERONE; ETHINYLESTRADIOL; PHENOTHIAZINES; THIORIDAZINE; MESORIDAZINE; CHLORPROMAZINE; NIFEDIPINE; MUSK AMBRETTE; CHLORAMPHENICOL; NITROFURANTOIN; CHLORDIAZEPOXIDE; OLAQUINDOX; METHAQUALONE-N-OXIDE;
D O I
10.1016/1011-1344(91)85002-X
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
Xenobiotics extensively used in drugs, cosmetics, food and agricultural chemicals can produce adverse biological effects. These toxic effects are separated into classes, e.g. hepatotoxicity, genotoxicity and neurotoxicity. Skin allergy, part of immunotoxicity, is also a subdivision of toxicology. When light is an essential condition for toxicity, the xenobiotic is called phototoxic. Thus it fits into the logic of toxicology that photoallergic compounds are a subdivision of phototoxic compounds. Phototoxicons as a group do not differ from the group of phototherapeutics with regard to their eventual biological effects. The primary photoreactions, secondary molecular processes, biomolecules involved and cellular and tissue damage are similar. The difference between the two groups is in the appreciation of the photobiological effects: adverse vs. desired. The aim of research is to determine the part of the molecular structure which makes a given compound phototoxic. With that knowledge the structure of the phototoxicon can be changed. This can result in a derivative which still has the desired properties of the parent compound, but is no longer phototoxic. This aim can be reached by combining data from both in vitro and in vivo research. The variety and number of phototoxic compounds is large. This, together with the limited research effort devoted to this subject so far, means that for most phototoxic xenobiotics a relationship between structure and in vivo photoreactivity is not available. In this review, emphasis is placed on xenobiotics whose in vitro and in vivo photochemistry have been studied. Furthermore, possible phototoxic effects which do not concern the skin but involve inner organs (systemic effects) are considered. References in this review mostly concern investigations over the last 10 years. For older literature or for additional information, references to other reviews are given. Important groups of phototoxic xenobiotics not dealt with in this article were already sufficiently covered in the reviews referred to.
引用
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页码:183 / 210
页数:28
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