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腺苷和γ-氨基丁酸部分调节达马拉兰跳鼠对急性缺氧的代谢和通气反应。

Adenosine and γ-aminobutyric acid partially regulate metabolic and ventilatory responses of Damaraland mole-rats to acute hypoxia.

机构信息

Department of Biology, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

University of Ottawa Brain and Mind Research Institute, Ottawa, ON K1H 8M5, Canada.

出版信息

J Exp Biol. 2023 Oct 1;226(19). doi: 10.1242/jeb.246186. Epub 2023 Oct 6.

Abstract

Fossorial Damaraland mole-rats (Fukomys damarensis) mount a robust hypoxic metabolic response (HMR) but a blunted hypoxic ventilatory response (HVR) to acute hypoxia. Although these reflex physiological responses have been described previously, the underlying signalling pathways are entirely unknown. Of particular interest are contributions from γ-aminobutyric acid (GABA), which is the primary inhibitory neurotransmitter in the nervous system of most adult mammals, and adenosine, the accumulation of which increases during hypoxia as a breakdown product of ATP. Therefore, we hypothesized that GABAergic and/or adenosinergic signalling contributes to the blunted HVR and robust HMR in Damaraland mole-rats. To test this hypothesis, we injected adult animals with saline alone (controls), or 100 mg kg-1 aminophylline or 1 mg kg-1 bicuculline, to block adenosine or GABAA receptors, respectively. We then used respirometry, plethysmography and thermal RFID probes to non-invasively measure metabolic, ventilator and thermoregulatory responses, respectively, to acute hypoxia (1 h in 5 or 7% O2) in awake and freely behaving animals. We found that bicuculline had relatively minor effects on metabolism and thermoregulation but sensitized ventilation such that the HVR became manifest at 7% instead of 5% O2 and was greater in magnitude. Aminophylline increased metabolic rate, ventilation and body temperature in normoxia, and augmented the HMR and HVR. Taken together, these findings indicate that adenosinergic and GABAergic signalling play important roles in mediating the robust HMR and blunted HVR in Damaraland mole-rats.

摘要

穴居的达马拉兰鼹鼠(Fukomys damarensis)表现出强烈的低氧代谢反应(HMR),但对急性低氧的低氧通气反应(HVR)较弱。尽管这些反射性生理反应以前已经被描述过,但它们的潜在信号通路还完全不清楚。特别值得关注的是γ-氨基丁酸(GABA)的贡献,它是大多数成年哺乳动物神经系统中的主要抑制性神经递质,以及腺苷的贡献,随着 ATP 的分解产物在低氧时积累增加。因此,我们假设 GABA 能和/或腺苷能信号参与了达马拉兰鼹鼠的 HVR 变钝和 HMR 增强。为了验证这一假设,我们给成年动物注射了生理盐水(对照组),或 100mg/kg-1 氨茶碱或 1mg/kg-1 印防己毒素,分别阻断腺苷或 GABAA 受体。然后,我们使用呼吸测量法、 plethysmography 和热 RFID 探针,分别无创测量代谢、通气和体温调节反应,以适应清醒和自由活动动物的急性低氧(5%或 7% O2 1 小时)。我们发现印防己毒素对代谢和体温调节的影响相对较小,但使通气敏感化,使得 HVR 在 7%而不是 5% O2 时表现出来,并且幅度更大。氨茶碱在常氧下增加代谢率、通气和体温,并增强 HMR 和 HVR。总的来说,这些发现表明,腺苷能和 GABA 能信号在介导达马拉兰鼹鼠的强烈 HMR 和 HVR 变钝中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a1f/10565114/03078588b5a5/jexbio-226-246186-g1.jpg

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