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缺氧对胎儿呼吸活动的影响。

Effect of hypoxia on respiratory activity in the foetus.

作者信息

Walker D W, Lee B, Nitsos I

机构信息

Department of Physiology, Monash University, Clayton, Victoria, Australia.

出版信息

Clin Exp Pharmacol Physiol. 2000 Jan-Feb;27(1-2):110-3. doi: 10.1046/j.1440-1681.2000.03201.x.

Abstract
  1. Breathing movements stop soon after the induction of hypoxia in foetal animals, a response attributed to the active inhibition of the respiratory centres. Separate studies using punctate lesions have identified lateral pontine and thalamic sites in foetal sheep from which respiratory inhibition may arise, but whether either of these loci are actually oxygen sensitive or whether they receive input from other regions responsive to hypoxia, has not been established. 2. FOS immunocytochemistry was used to identify neuronal pools activated by hypoxia in the brain of late-gestation foetal and newborn sheep. FOS-positive cells were found in the pons in regions corresponding to the medial parabrachial and Kolliker-Fuse nuclei and were shown to be catecholaminergic. Neurons in this pontine region were also activated by the piperizine drug almitrine, which, like hypoxia, inhibits respiratory output in the foetus but is a respiratory stimulant in the newborn and adult. Because these pontine neurons do not express FOS protein after challenge with hypoxia or almitrine in the newborn lamb, we argue that they are crucial to the hypoxic inhibition of respiratory activity in foetal life. 3. The role of the placenta in determining these foetal responses and how this may change at birth is discussed.
摘要
  1. 胎儿动物在诱导缺氧后不久呼吸运动就会停止,这种反应归因于呼吸中枢的主动抑制。使用点状损伤的单独研究已经确定了胎儿绵羊脑桥外侧和丘脑部位可能产生呼吸抑制,但这些位点是否实际对氧气敏感,或者它们是否从其他对缺氧有反应的区域接收输入,尚未确定。2. 使用FOS免疫细胞化学来鉴定妊娠晚期胎儿和新生绵羊大脑中被缺氧激活的神经元群。在与内侧臂旁核和 Kölliker-Fuse 核相对应的脑桥区域发现了FOS阳性细胞,并显示为儿茶酚胺能。该脑桥区域的神经元也被哌嗪药物阿米三嗪激活,与缺氧一样,阿米三嗪会抑制胎儿的呼吸输出,但在新生儿和成人中是一种呼吸兴奋剂。因为在新生羔羊中用缺氧或阿米三嗪刺激后,这些脑桥神经元不表达FOS蛋白,所以我们认为它们对于胎儿期呼吸活动的缺氧抑制至关重要。3. 讨论了胎盘在决定这些胎儿反应中的作用以及出生时这可能如何变化。

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