高胆红素血症大鼠幼崽脑胆红素含量的性别特异性区域。

Biology of the neonate Pub Date : 2006-01-01 Epub Date: 2006-03-03 DOI:10.1159/000091843
Carrie Cannon, Monica J Daood, Terrence L O'Day, Jon F Watchko
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引用次数: 21

摘要

背景:高胆红素血症大鼠j/j Gunn经常被用来研究新生儿高胆红素血症对发育中的中枢神经系统(CNS)的影响。尽管有证据表明,在这种动物模型中,小脑区域和雄性容易发生胆红素诱导的脑损伤,但区域和性别特异性的脑胆红素含量数据有限。目的/方法:对高胆红素血症j/j大鼠幼仔和年龄匹配(15-19天)的非黄疸j/j大鼠进行区域(皮质、脑干、小脑)和性别特异性中枢神经系统胆红素含量的表征和比较。献祭前24 h注射磺胺二甲氧嘧啶(200mg /kg i.p)以提高中枢神经系统胆红素含量。结果:黄疸j/j幼犬中枢神经系统各区域胆红素含量和血清总胆红素水平显著高于非黄疸j/j幼犬。在磺胺二甲氧嘧啶处理的雄性j/j队列中,平均脑胆红素含量在小脑中最高(18.9 +/- 7.8微克/g),在脑干中居中(10.7 +/- 8.0微克/g),在皮层中最低(4.7 +/- 3.0微克/g) (F = 11.31,方差分析p < 0.001),小脑胆红素水平显著高于与同伴配对的磺胺二甲氧嘧啶处理的j/j雌性幼崽(p < 0.02)。j/j公犬和j/j母犬血清白蛋白水平无显著性差异。结论:高胆红素血症j/j Gunn大鼠幼崽的脑胆红素含量高于非黄疸j/j大鼠幼崽,并随中枢神经系统区域和性别的变化而变化。我们推测,较高的小脑胆红素含量可能优先倾向于雄性j/j Gunn大鼠幼崽胆红素诱导的神经毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sex-specific regional brain bilirubin content in hyperbilirubinemic Gunn rat pups.

Background: The hyperbilirubinemic j/j Gunn rat is frequently used to study the effects of neonatal hyperbilirubinemia on the developing central nervous system (CNS). Despite evidence that the cerebellar region and males are predisposed to bilirubin-induced brain injury in this animal model, there are limited regional and no sex-specific brain bilirubin content data.

Objective/methods: To characterize and contrast the regional (cortex, brainstem, cerebellum) and sex-specific CNS bilirubin contents of hyperbilirubinemic j/j Gunn rat pups and their age-matched (15-19 days) nonjaundiced J/j counterparts. Pups were injected 24 h prior to sacrifice with sulfadimethoxine (200 mg/kg i.p.) to enhance the CNS bilirubin content.

Results: The CNS bilirubin contents in each region and total serum bilirubin levels were significantly greater in jaundiced j/j pups versus nonjaundiced J/j pups. Within the sulfadimethoxine-treated male j/j cohort, the mean brain bilirubin content was highest in the cerebellum (18.9 +/- 7.8 microg/g), intermediate in the brainstem (10.7 +/- 8.0 microg/g), and lowest in the cortex (4.7 +/- 3.0 microg/g) (F = 11.31, p < 0.001 by ANOVA), and the cerebellar bilirubin level was significantly higher than in the littermate-matched sulfadimthoxine-treated j/j female pups (p < 0.02). The serum albumin levels were not different between j/j male and j/j female pups.

Conclusions: We conclude that the brain bilirubin content of hyperbilirubinemic j/j Gunn rat pups is greater than in nonjaundiced J/j pups and varies as a function of CNS region and sex. We speculate that the higher cerebellar bilirubin content may preferentially predispose male j/j Gunn rat pups to bilirubin-induced neurotoxicity.

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