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大鼠颈动脉体去神经支配后的死亡率。

Mortality after carotid body denervation in rats.

作者信息

Serra A, Brozoski D, Hedin N, Franciosi R, Forster H V

机构信息

Department of Physiology, Medical College of Wisconsin and Zablocki Veterans Affairs Medical Center, Milwaukee, Wisconsin 53226-0509, USA.

出版信息

J Appl Physiol (1985). 2001 Sep;91(3):1298-306. doi: 10.1152/jappl.2001.91.3.1298.

Abstract

Carotid body denervation (CBD) in neonatal goats and piglets results in minimal irregular breathing and no fatalities. Redundancy and/or plasticity of peripheral chemosensitivity and a relatively mature ventilatory control system at birth may contribute to the paucity of CBD effects in these species. In the present study, we tested the hypothesis that CBD mortality would be greater in neonates of a less mature species such as the rat. We found that the mortality in rats denervated at 2-3 and 7-8 days of age was significantly higher (P < 0.05) than in sham-CBD rats. In all surviving rats, pulmonary ventilation during hypoxia was lower in CBD than in sham operated rats 2 days after denervation. In surviving rats denervated during the 7th and 8th postnatal days, there was also reduced weight gain and pulmonary ventilation during eupnea, including apneas up to 20 s in duration. However, the effects of CBD were compensated within 3 wk after denervation. Local injections of NaCN indicated that aortic chemoreceptors might have been one of the sites of recovery of peripheral chemosensitivity. We concluded that CBD has higher mortality in newborn rats than in other mammals, possibly because of the relative immaturity of these animals at birth. Nonetheless, in survivors there was enough redundancy and plasticity in the control of breathing to eventually compensate for the consequences of CBD.

摘要

新生山羊和仔猪的颈动脉体去神经支配(CBD)导致呼吸不规则程度轻微且无死亡情况。出生时外周化学感受性的冗余和/或可塑性以及相对成熟的通气控制系统可能是这些物种中CBD效应不明显的原因。在本研究中,我们检验了这样一个假设:在像大鼠这样成熟度较低的物种的新生儿中,CBD导致的死亡率会更高。我们发现,在2 - 3日龄和7 - 8日龄去神经支配的大鼠中,死亡率显著高于假手术CBD大鼠(P < 0.05)。在所有存活的大鼠中,去神经支配2天后,低氧期间CBD组的肺通气低于假手术组大鼠。在出生后第7天和第8天去神经支配的存活大鼠中,正常呼吸期间体重增加也减少,肺通气也减少,包括持续时间长达20秒的呼吸暂停。然而,CBD的影响在去神经支配后3周内得到了代偿。局部注射NaCN表明,主动脉化学感受器可能是外周化学感受性恢复的部位之一。我们得出结论,CBD在新生大鼠中的死亡率高于其他哺乳动物,这可能是因为这些动物出生时相对不成熟。尽管如此,在存活者中,呼吸控制有足够的冗余和可塑性,最终能够代偿CBD的后果。

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