首页> 外文期刊>The Journal of Physiology >Long-term influence of neonatal hypoxia on catecholamine activity in carotid bodies and brainstem cell groups of the rat.
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Long-term influence of neonatal hypoxia on catecholamine activity in carotid bodies and brainstem cell groups of the rat.

机译:新生儿缺氧对大鼠颈动脉和脑干细胞群中儿茶酚胺活性的长期影响。

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摘要

1. In order to determine the long-term influence of neonatal hypoxia on catecholaminergic activity in peripheral arterial chemoreceptors and brainstem noradrenergic cell groups (A1, A2, A5 and A6), 1-day-old male rat pups were subjected to hypoxia (10% oxygen) for 6 days and then supplied with normal air. Control animals were kept at normoxia from birth. Rats were killed at either 3 or 8 weeks of age. 2. The content of dopamine and noradrenaline in carotid bodies of neonatally hypoxic rats was increased at both 3 and 8 weeks of age. 3. Noradrenaline turnover was selectively decreased in the caudal portion of A2 (located in the area of chemosensory afferent projection) at 8 weeks of age (-76 +/- 2%), while this turnover was unaffected in rostral A2 cells. Noradrenergic activity in A1, A5 and A6 was altered by neonatal hypoxia in an age-dependent fashion. 4. The data suggest that neonatal hypoxia induces long-term changes in the basal activity of the carotid body and brainstem noradrenergic cell groups. Such changes might contribute to neuronal regulation of the delayed respiratory, arousal and neural sequelae associated with neonatal hypoxia. These changes could also be involved in the early programming of respiratory and blood pressure control.
机译:1.为了确定新生儿缺氧对外周动脉化学感受器和脑干去甲肾上腺素能细胞群(A1,A2,A5和A6)中儿茶酚胺能活性的长期影响,对1日龄的雄性幼鼠进行了缺氧(10次) %的氧气)放置6天,然后提供正常的空气。对照动物从出生起就保持常氧状态。在3或8周龄时杀死大鼠。 2.新生低氧大鼠颈动脉中的多巴胺和去甲肾上腺素含量在3周和8周龄时均增加。 3.在8周龄时(-76 +/- 2%),A2尾部的去甲肾上腺素转换率选择性降低(位于化学感觉传入投影区域)(-76 +/- 2%),而在鸟嘴A2细胞中该转换率不受影响。新生儿缺氧会以年龄依赖性方式改变A1,A5和A6中的去甲肾上腺素能活性。 4.数据表明,新生儿缺氧会引起颈动脉体和脑干去甲肾上腺素能细胞群的基础活动发生长期变化。这种变化可能有助于神经元调节与新生儿缺氧有关的呼吸,唤醒和神经后遗症。这些变化也可能与呼吸和血压控制的早期编程有关。

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