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Relative sensitivity of developmental and immune parameters in juvenile versus adult male rats after exposure to di(2-ethylhexyl) phthalate

机译:暴露于邻苯二甲酸二(2-乙基己基)酯的成年雄性和成年雄性大鼠发育和免疫参数的相对敏感性

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The developing immune system displays a relatively high sensitivity as compared to both general toxicity parameters and to the adult immune system. In this study we have performed such comparisons using di(2-ethylhexyl) phthalate (DEHP) as a model compound. DEHP is the most abundant phthalate in the environment and perinatal exposure to DEHP has been shown to disrupt male sexual differentiation. In addition, phthalate exposure has been associated with immune dysfunction as evidenced by effects on the expression of allergy. Male wistar rats were dosed with corn oil or DEHP by gavage from postnatal day (PND) 10-50 or PND 50-90 at doses between 1 and 1000. mg/kg/day. Androgen-dependent organ weights showed effects at lower dose levels in juvenile versus adult animals. Immune parameters affected included TDAR parameters in both age groups, NK activity in juvenile animals and TNF-α production by adherent splenocytes in adult animals. Immune parameters were affected at lower dose levels compared to developmental parameters. Overall, more immune parameters were affected in juvenile animals compared to adult animals and effects were observed at lower dose levels. The results of this study show a relatively higher sensitivity of juvenile versus adult rats. Furthermore, they illustrate the relative sensitivity of the developing immune system in juvenile animals as compared to general toxicity and developmental parameters. This study therefore provides further argumentation for performing dedicated developmental immune toxicity testing as a default in regulatory toxicology.
机译:与一般毒性参数和成人免疫系统相比,正在发育的免疫系统显示出相对较高的敏感性。在这项研究中,我们使用邻苯二甲酸二(2-乙基己基)酯(DEHP)作为模型化合物进行了此类比较。 DEHP是环境中最丰富的邻苯二甲酸盐,并且已证明围产期暴露于DEHP会破坏男性的性别分化。此外,邻苯二甲酸盐的暴露已与免疫功能障碍相关,如对变态反应表达的影响所证明。从出生后一天(PND)10-50或PND 50-90灌胃,对雄性wistar大鼠用玉米油或DEHP给药,剂量为1至1000. mg / kg / day。与成年动物相比,雄激素依赖性器官重量在较低剂量水平下显示出作用。受影响的免疫参数包括两个年龄段的TDAR参数,幼年动物的NK活性和成年动物粘附脾细胞产生的TNF-α。与发育参数相比,免疫参数在较低剂量水平上受到影响。总体而言,与成年动物相比,幼年动物受更多的免疫参数影响,并且在较低剂量水平下观察到效果。这项研究的结果表明,幼鼠与成年鼠的敏感性相对较高。此外,它们说明了与一般毒性和发育参数相比,幼年动物中正在发育的免疫系统的相对敏感性。因此,本研究为进行专门的发育性免疫毒性测试作为调节毒理学中的默认方法提供了进一步的论据。

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