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Postnatal changes in ventilation during normoxia and acute hypoxia in the rat: implication for a sensitive period

机译:大鼠常氧和急性低氧期间产后通气变化:对敏感期的影响

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摘要

Previously, we found heightened expression of inhibitory neurochemicals and depressed expression of excitatory neurochemicals with a sudden drop in metabolic activity around postnatal day (P) 12 in rat brainstem respiratory nuclei, suggesting that this period is a critical window during which respiratory control or regulation may be distinctly different. To test this hypothesis, the hypoxic ventilatory responses (HVR) to 10% oxygen were tested in rats every day from P0 to P21. Our data indicate that (1) during normoxia (N), breathing frequency (f) increased with age, peaking at P13, followed by a gradual decline, whereas both tidal volume (VT) and minute ventilation (V˙E) significantly increased in the second postnatal week, followed by a progressive increase in VT and a relative plateau in V˙E; (2) during 5 min of hypoxia (H), V˙E exhibited a biphasic response from P3 onward. Significantly, the ratio of V˙E(H) to V˙E(N) was generally > 1 during development, except for P13–16, when it was < 1 after the first 1–2 min, with the lowest value at P13; (3) the H : N ratio for f, VT and V˙E during the first 30 s and the last minute of hypoxia all showed a distinct dip at P13, after which the VT and V˙E values rose again, while the f values declined through P21; and (4) the H : N ratios for f, VT and V˙E averaged over 5 min of hypoxia all exhibited a sudden fall at P13. The f ratio remained low thereafter, while those for VT and V˙E increased again with age until P21. Thus, hypoxic ventilatory response is influenced by both f and VT before P13, but predominantly by VT after P13. The striking changes in normoxic ventilation as well as HVR at or around P13, together with our previous neurochemical and metabolic data, strongly suggests that the end of the second postnatal week is a critical period of development for brainstem respiratory nuclei in the rat.
机译:以前,我们发现大鼠脑干呼吸细胞核中抑制性神经化学物质的表达升高和兴奋性神经化学物质的表达降低,且在出生后第12天左右代谢活动突然下降,这表明这一时期是呼吸控制或调节的关键时期。截然不同。为了验证这一假设,每天从P0到P21,在大鼠中测试对10%氧气的低氧通气反应(HVR)。我们的数据表明(1)在常氧(N)期间,呼吸频率(f)随着年龄的增长而增加,在P13达到峰值,然后逐渐下降,而潮气量(VT)和分钟通气量(V˙E)均显着增加。产后第二周,VT逐渐升高,V˙E相对平稳; (2)在缺氧(H)的5分钟内,V˙E从P3开始表现出双相反应。值得注意的是,在显影过程中,V˙E(H)与V˙E(N)的比率通常> 1,但P13-16除外,在最初的1-2分钟后<1时该值<1,最低值在P13 ; (3)在缺氧的前30 s和最后一分钟,f,VT和V˙E的H:N比在P13处均表现出明显的下降,此后VT和V˙E值再次上升,而f值通过P21下降; (4)低氧5分钟后f,VT和 V ˙E的H:N比值在P13均突然下降。此后, f 比率保持较低,而 V T和 V ˙E的比率随着年龄的增长而再次增加,直到P21。因此,低氧通气反应受P13之前的f和 V T的影响,但主要受P13之后的 V T 的影响。 P13处或周围的常氧通气以及HVR的惊人变化,以及我们之前的神经化学和代谢数据,强烈表明,产后第二周的结束是大鼠脑干呼吸核发育的关键时期。

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