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Influence of age, body temperature, GABAA receptor inhibition and caffeine on the Hering-Breuer inflation reflex in unanesthetized rat pups

机译:年龄,体温,GABAA受体抑制和咖啡因对未麻醉大鼠幼崽Hering-Breuer膨胀反射的影响

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We measured the duration of apnea induced by sustained end-inspiratory lung inflation (the Hering Breuer Reflex, HBR) in unanesthetized infant rat pups aged 4 days (P4) to P20 at body temperatures of 32°C and 36°C. The expiratory prolongation elicited by the HBR lasted longer in the younger pups and lasted longer at the higher body temperature. Blockade of adenosine receptors by caffeine following injection into the cisterna magna (ICM) significantly blunted the thermal prolongation of the HBR. Blockade of gama-amino-butyric acid A (GABAA) receptors by pre-treatment with ICM bicuculline had no effect on the HBR duration at either body temperature. To test the hypothesis that developmental maturation of GABAergic inhibition of breathing was modifying the response to bicuculline, we pretreated rat pups with systemically administered bumetanide to lower the intracellular chloride concentration, and repeated the bicuculline studies. Bicuculline still did not alter the HBR at either temperature after bumetanide treatment. We administered PSB-36, a selective adenosine A1 receptor antagonist, and this drug treatment did not modify the HBR. We conclude that caffeine blunts the thermal prolongation of the HBR, probably by blocking adenosine A2a receptors. The thermally sensitive adenosinergic prolongation of the HBR in these intact animals does not seem to depend on GABAA receptors.
机译:我们在体温为32°C和36°C的4天至P20的4天至20天的未麻醉的幼鼠中,测量了持续吸气后肺部充气(Hering Breuer Reflex,HBR)引起的呼吸暂停持续时间。 HBR引起的呼气延长在年轻的幼仔中持续更长的时间,而在较高的体温下持续更长的时间。咖啡因注射入大纳罐(ICM)后,咖啡因对腺苷受体的阻断作用显着减弱了HBR的热延伸。用ICM双小分子预处理对Gama-氨基丁酸A(GABAA)受体的阻滞对任一体温下的HBR持续时间均无影响。为了检验GABA对呼吸的抑制作用的发育成熟正在改变对双cucuculline的反应的假设,我们通过全身给药布美他尼预处理大鼠幼崽以降低细胞内氯的浓度,并重复了bicuculline的研究。布美他尼治疗后,在任何温度下,双cuculineline仍不改变HBR。我们施用了选择性的腺苷A1受体拮抗剂PSB-36,该药物治疗并未改变HBR。我们得出结论,咖啡因可能通过阻断腺苷A2a受体而使HBR的热延长变钝。在这些完整的动物中,HBR的热敏感性腺苷能延长似乎并不依赖于GABAA受体。

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