Changes in respiratory timing induced by hypercapnia in maturing rats

Changes in respiratory timing induced by hypercapnia in maturing rats
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DOI:
10.1152/jappl.1999.87.2.484
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发表时间:
1999-08-01
影响因子:
3.3
通讯作者:
Martin, RJ
Martin, RJ
中科院分区:
医学2区
文献类型:
--
作者:
Abu-Shaweesh, JM;Dreshaj, IA;Martin, RJ

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早产儿对高碳酸血症的反应是通气反应减弱,其特征是呼吸频率降低。我们假设这种受损的高碳酸血症通气反应是中枢起源的,并且是通过γ-氨基丁酸能(GABA能)途径介导的。因此,我们研究了两组成熟的 Sprague-Dawley 大鼠:在出生后四个年龄(5、16-17、22-23 和 41-42 天)进行全身体积描记的无约束大鼠;以及以及通气、去大脑、迷走神经切断、瘫痪的大鼠,在4-6天和37-39天龄时测量膈神经对高碳酸血症的反应。在不受限制的组中,高碳酸血症引起的每分通气量增加在 5 天时显着低于 16 天后。尽管所有年龄段的潮气量均有所增加,但频率在 5 天时较基线显着下降,而在 16-17、22-23 和 41-42 天则显着增加。 5日龄时频率的下降主要是由于呼气持续时间(TE)显着延长。在通气组中,高碳酸血症还会导致 4-6 天龄的 TE 延长,但不会导致 37-39 天龄的 TE 延长。静脉注射荷包牡丹碱(GABA(A) 受体阻滞剂)可消除新生大鼠因高碳酸血症而导致的 TE 延长。我们得出结论,新生大鼠幼崽表现出对 CO2 的特征性通气反应,表现为中枢介导的 TE 延长,这似乎是由 GABA 能机制介导的。
Premature infants respond to hypercapnia by an attenuated ventilatory response that is characterized by a decrease in respiratory frequency. We hypothesized that this impaired hypercapnic ventilatory response is of central origin and is mediated via gamma-aminobutyric acid-ergic (GABAergic) pathways. We therefore studied two groups of maturing Sprague-Dawley rats: unrestrained rats in a whole body plethysmograph at four postnatal ages (5, 16-17, 22-23, and 41-42 days); and ventilated, decerebrate, vagotomized, paralyzed rats in which phrenic nerve responses to hypercapnia were measured at 4-6 and 37-39 days of age. In the unrestrained group, the increase in minute ventilation induced by hypercapnia was significantly lower at 5 days vs. beyond 16 days. Although there was an increase in tidal volume at all ages, frequency decreased significantly from baseline at 5 days, whereas it increased significantly at 16-17, 22-23, and 41-42 days. The decrease in frequency at 5 days of age was mainly due to a significant prolongation in expiratory duration (TE). In the ventilated group, hypercapnia also caused prolongation in TE at 4-6 days but not at 37-39 days of age. Intravenous administration of bicuculline (GABA(A)-receptor blocker) abolished the prolongation of TE in response to hypercapnia in the newborn rats. We conclude that newborn rat pups exhibit a characteristic ventilatory response to CO2 expressed as a centrally mediated prolongation of TE that appears to be mediated by GABAergic mechanisms.