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颈动脉体/岩神经节对缺氧反应的发育

Development of carotid body/petrosal ganglion response to hypoxia.

作者信息

Donnelly David F

机构信息

Department of Pediatrics, Yale University School of Medicine, 333 Cedar Street, New Haven, CT 06520, USA.

出版信息

Respir Physiol Neurobiol. 2005 Nov 15;149(1-3):191-9. doi: 10.1016/j.resp.2005.02.006. Epub 2005 Jul 11.

Abstract

Carotid body chemoreceptors undergo significant maturational changes in the post-natal period over a period of days to weeks. This is likely initiated by the rise in Pa(O2) at the time of birth and reflects the changing value of "normoxia" from 25 Torr to near 100 Torr. Chemoreceptors in the newborn period have a lower absolute discharge frequency and the dynamic response to acute hypoxia is less compared to the adult. This maturation change appears due to changes occurring presynaptically to the afferent nerve fibers. Hypoxia-induced secretion from the glomus cell (catecholamine and other constituents of dense cored vesicles) is enhanced whilst constitutive (non-hypoxia-dependent) release is reduced with age. On the post-synaptic side, the number of afferent synaptic sites increases four- to five-fold in the post-natal period and there may be an increase in afferent nerve excitability. Both of these changes are subject to environmental perturbations in which post-natal exposure to chronic hypoxia or hyperoxia leads to significantly reduced organ sensitivity and function. Thus, developmental changes and environmental factors may significantly change the ability of an animal to detect and respond to hypoxic insults, perhaps leading to periods of heightened vulnerability to hypoxic stresses.

摘要

颈动脉体化学感受器在出生后的数天至数周内会经历显著的成熟变化。这可能是由出生时动脉血氧分压(Pa(O2))的升高引发的,反映了“常氧”值从25托变为接近100托的变化。与成年个体相比,新生儿期的化学感受器绝对放电频率较低,对急性缺氧的动态反应也较小。这种成熟变化似乎是由于传入神经纤维突触前发生的变化所致。随着年龄增长,低氧诱导的球细胞分泌(儿茶酚胺和致密核心囊泡的其他成分)增强,而组成性(非低氧依赖性)释放减少。在突触后方面,出生后传入突触位点的数量增加了四到五倍,传入神经兴奋性可能也会增加。这两种变化都容易受到环境干扰的影响,其中出生后暴露于慢性低氧或高氧会导致器官敏感性和功能显著降低。因此,发育变化和环境因素可能会显著改变动物检测和应对低氧损伤的能力,这可能会导致动物在某些时期对低氧应激的易感性增加。

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