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预测氟喹诺酮类药物光毒性潜力的体外方法。

In vitro method for prediction of the phototoxic potentials of fluoroquinolones.

作者信息

Yamamoto T, Tsurumaki Y, Takei M, Hosaka M, Oomori Y

机构信息

Central Research Laboratories, Kyorin Pharmaceutical Co., Ltd, 2399-1, Nogi-Mitarai, Shimotsuga-gun, 329-0114, Tochigi, Japan.

出版信息

Toxicol In Vitro. 2001 Dec;15(6):721-7. doi: 10.1016/s0887-2333(01)00089-3.

Abstract

The phototoxic potential of eight fluoroquinolones (norfloxacin, ofloxacin, enoxacin, ciprofloxacin, lomefloxacin, tosufloxacin, sparfloxacin and gatifloxacin) was evaluated by using three in vitro methods of cytotoxicity against mammalian cells, erythrocyte lysis and DNA strand breakage. All fluoroquinolones tested with the exception of gatifloxacin, an 8-methoxy quinolone, showed DNA strand breaking activities under UV-A irradiation. Their cytotoxicity against HeLa cells was also enhanced by UV-A irradiation. In particular, the phototoxic potential of sparfloxacin, enoxacin and lomefloxacin was high in both methods. Ofloxacin is very photocytotoxic against HeLa cells, while it has low potential to cause DNA strand breakage. Norfloxacin, ciprofloxacin and enoxacin were very photohemolytic, but sparfloxacin was not, indicating that the in vivo phototoxic potencies of fluoroquinolones might not be predictable by the photohemolysis study. Gatifloxacin, a non-phototoxic quinolone, showed no phototoxic potential in any of these three in vitro tests. These results suggest that determination of DNA strand breaking activity, combined with cytotoxicity against mammalian cells, is available to predict the phototoxic potential of fluoroquinolones without laboratory animals.

摘要

通过三种针对哺乳动物细胞的体外细胞毒性方法、红细胞裂解和DNA链断裂法,评估了8种氟喹诺酮类药物(诺氟沙星、氧氟沙星、依诺沙星、环丙沙星、洛美沙星、妥舒沙星、司帕沙星和加替沙星)的光毒性潜力。除8-甲氧基喹诺酮类药物加替沙星外,所有测试的氟喹诺酮类药物在UV-A照射下均表现出DNA链断裂活性。UV-A照射也增强了它们对HeLa细胞的细胞毒性。特别是,司帕沙星、依诺沙星和洛美沙星在这两种方法中的光毒性潜力都很高。氧氟沙星对HeLa细胞具有很强的光细胞毒性,而其导致DNA链断裂的潜力较低。诺氟沙星、环丙沙星和依诺沙星具有很强的光溶血作用,但司帕沙星没有,这表明氟喹诺酮类药物的体内光毒性潜力可能无法通过光溶血研究来预测。加替沙星是一种无光毒性的喹诺酮类药物,在这三种体外试验中的任何一种中均未表现出光毒性潜力。这些结果表明,结合对哺乳动物细胞的细胞毒性来测定DNA链断裂活性,可用于在无需实验动物的情况下预测氟喹诺酮类药物的光毒性潜力。

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