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首页> 外文期刊>Mutagenesis >The in vivo rat skin photomicronucleus assay: phototoxicity and photogenotoxicity evaluation of six fluoroquinolones
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The in vivo rat skin photomicronucleus assay: phototoxicity and photogenotoxicity evaluation of six fluoroquinolones

机译:体内大鼠皮肤光微核测定:六种氟喹诺酮类药物的光毒性和光遗传毒性评估

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摘要

An in vivo photomicronucleus test (MNT) using rat skin, the target organ for photoirritancy and carcinogenicity, was recently described. The assay was evaluated using fluoroquinolone (FQ) antibiotics with varying degrees of phototoxic potency (i.e. sparflocacin [SPFX], lomefloxacin [LOFX], ciprofloxacin [CIFX], levofloxacin [LEFX], gemifloxacin [GEFX] and gatifloxacin [GAFX]) using a solar simulator producing both UVA and UVB (ratio 23:1). Experiments were performed at The Netherlands Organisation for Applied Scientific Research (TNO) and GlaxoSmithKline (GSK) to investigate interlaboratory variability, including evaluation of phototoxicity (clinical signs), micronucleus induction and histopathology. The potency of micronuclei (MN) formation in rat skin induced by the FQs was SPFX = LOFX CIFX = LEFX, however, MN induction was only statistically significant for SPFX and LOFX. In both laboratories, GEFX and GAFX did not increase the MN frequencies compared to the irradiated vehicle control. Signs of phototoxicity, including clinical and histopathological changes, were observed with SPFX and LOFX to a similar degree as the positive control, 8-methoxypsoralen. In addition, there were some clinical signs of phototoxicity seen with CIFX, LEFX, GEFX and GAFX, but not always in both laboratories for CIFX, GEFX and GAFX and when observed, these were considered only mild. Of these, only LEFX also showed histopathological changes. In all studies, photogenotoxic potency correlated with photocarcinogenic potential and moreover, photogenotoxicity was not observed in the absence of phototoxicity. The results of the TNO/GSK study indicate that the in vivo rat skin photoMNT may be a promising tool for detection of photoclastogencity and photoirritancy in the skin/eye in the same animal. Given the association between the MNT and cancer, the skin photoMNT may also provide a promising tool for the early detection of photocarcinogenesis and help bridge the gap in the existing photosafety testing paradigm.
机译:最近描述了一种使用大鼠皮肤的体内光微核试验(MNT),该皮肤是光刺激性和致癌性的目标器官。使用具有不同光毒性的氟喹诺酮(FQ)抗生素(即司帕洛卡星[SPFX],洛美沙星[LOFX],环丙沙星[CIFX],左氧氟沙星[LEFX],吉非沙星[GEFX]和加替沙星[GAFX])对测定进行评估太阳模拟器同时产生UVA和UVB(比率23:1)。荷兰应用科学研究组织(TNO)和葛兰素史克(GSK)进行了实验,以研究实验室间的变异性,包括评估光毒性(临床体征),微核诱导和组织病理学。由FQ诱导的大鼠皮肤中微核(MN)形成的效力为SPFX = LOFX> CIFX = LEFX,但是,MN诱导对于SPFX和LOFX仅具有统计学意义。在两个实验室中,与辐照的车辆控制相比,GEFX和GAFX均未增加MN频率。用SPFX和LOFX观察到的光毒性迹象,包括临床和组织病理学变化,与阳性对照8-甲氧基补骨脂素相似。此外,在CIFX,LEFX,GEFX和GAFX中也观察到了一些光毒性的临床症状,但在CIFX,GEFX和GAFX的两个实验室中并非总是如此,观察时,这些仅被认为是轻度的。其中,只有LEFX也显示出组织病理学改变。在所有研究中,光遗传毒性效力与光致癌潜能相关,此外,在没有光毒性的情况下未观察到光遗传毒性。 TNO / GSK研究的结果表明,体内大鼠皮肤photoMNT可能是检测同一只动物的皮肤/眼睛中光破伤性和光刺激性的有前途的工具。考虑到MNT和癌症之间的联系,皮肤photoMNT可能也为早期检测光致癌性提供了有希望的工具,并有助于弥合现有光安全性测试范式的差距。

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