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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Structure-phototoxicity relationship in Balb/c mice treated with fluoroquinolone derivatives, followed by ultraviolet-A irradiation.
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Structure-phototoxicity relationship in Balb/c mice treated with fluoroquinolone derivatives, followed by ultraviolet-A irradiation.

机译:在用氟喹诺酮衍生物处理的Balb / c小鼠中,其结构与光毒性的关系随后是紫外线A辐射。

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摘要

We examined the structure-phototoxicity relationship for fluoroquinolone antimicrobial agents (quinolones) using female albino Balb/c mice. First of all, to obtain an optimum dosage level for induction of phototoxicity, the prototype phototoxicant sparfloxacin was intravenously administered once at 10 mg/kg, 30 mg/kg or 100 mg/kg to female mice, followed immediately by ultraviolet-A (UVA) irradiation for 4 h (21.6J/cm2). The auricular thickness was measured at pre-dose (0 h), 4, 24, 48, 72 and 96 h post-dose, and then the histopathological examination of the auricle was performed. As results, the auricular thickness increased from 30 mg/kg, in conjunction with edema, cellular infiltration, epidermal necrosis and focal loss of the auricle. On the basis of these information, ciprofloxacin, enoxacin, fleroxacin, gatifloxacin, lomefloxacin, norfloxacin and ofloxacin were given intravenously to mice at a fixed dose of 100 mg/kg to compare their potential phototoxicities. Certain quinolones caused the auricular lesions in the following rank order (from lowest to highest): vehicle control (non-phototoxicity)=gatifloxacin=ofloxacin
机译:我们使用雌性白化病Balb / c小鼠检查了氟喹诺酮类抗菌剂(喹诺酮类)的结构-光毒性关系。首先,为了获得诱导光毒性的最佳剂量水平,将原型光毒性司帕沙星以10 mg / kg,30 mg / kg或100 mg / kg的剂量静脉内施用于雌性小鼠,然后立即进行紫外线A(UVA )照射4 h(21.6J / cm2)。在给药前(0 h),给药后4、24、48、72和96 h测量耳廓厚度,然后进行耳廓的组织病理学检查。结果,耳廓厚度从30 mg / kg增加,并伴有水肿,细胞浸润,表皮坏死和耳廓局灶性丧失。根据这些信息,以100 mg / kg的固定剂量向小鼠静脉内注射环丙沙星,依诺沙星,氟沙星,加替沙星,洛美沙星,诺氟沙星和氧氟沙星,以比较其潜在的光毒性。某些喹诺酮类药物按以下等级顺序(从最低到最高)引起耳廓病变:媒介物对照(非光毒性)=加替沙星=氧氟沙星<环丙沙星=诺氟沙星<依诺沙星=氟罗沙星<洛美沙星=司帕沙星。从结构-光毒性关系的观点来看,具有氟或氢的C-8取代基和1,8-萘啶衍生物的喹诺酮类在小鼠耳廓中引起光毒性。这些结果表明,喹诺酮引起的光毒性将与第八位的性质有关。

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