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首页> 外文期刊>American Journal of Physiology >Neurokinin-1 receptor activation is sufficient to restore the hypercapnic ventilatory response in the Substance P-deficient naked mole-rat
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Neurokinin-1 receptor activation is sufficient to restore the hypercapnic ventilatory response in the Substance P-deficient naked mole-rat

机译:Neurokinin-1受体激活足以恢复物质P缺陷裸摩尔大鼠的高竞争通风反应

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摘要

Naked mole-rats (NMRs) live in large colonies within densely populated underground burrows. Their collective respiration generates significant metabolic carbon dioxide (CO_2) that diffuses slowly out of the burrow network, creating a hypercapnic environment. Currently, the physiological mechanisms that underlie the ability of NMRs to tolerate environmental hypercapnia are largely unknown. To address this, we used whole-body plethysmography and respirometry to elucidate the hypercapnic ventilatory and metabolic responses of awake, freely behaving NMRs to 0%-10% CO_2. We found that NMRs have a blunted hypercapnic ventilatory response (HCVR): ventilation increased only in 10% CO_2. Conversely, metabolism was unaffected by hypercapnia. NMRs are insensitive to cutaneous acid-based pain caused by modified substance P (SP)-mediated peripheral neurotransmission, and SP is also an important neuromodulator of ventilation. Therefore, we re-evaluated physiological responses to hypercapnia in NMRs after an intraperitoneal injection of exogenous substance P (2 mg/kg) or a long-lived isoform of substance P {[pGlu5-MePhe8-MeGly9]SP(5-l 1), DiMe-C7; 40-400 μg/ kg}. We found that both drugs restored hypercapnia sensitivity and unmasked an HCVR in animals breathing 2%-10% CO_2. Taken together, our findings indicate that NMRs are remarkably tolerant of hypercapnic environments and have a blunted HCVR; however, the signaling network architecture required for a "normal" HCVR is retained but endogenously inactive. This muting of chemosensitivity likely suits the ecophysiology of this species, which presumably experiences hypercapnia regularly in their underground niche.
机译:赤裸的摩尔大鼠(NMRS)生活在浓密的地下洞中的大型殖民地。它们的集体呼吸产生了显着的代谢二氧化碳(CO_2),其慢慢地从洞穴网络中慢慢扩散,从而产生高额征环境。目前,利益患有NMR耐受环境Hypercapnia的能力的生理机制在很大程度上。为了解决这一点,我们使用全身体积描记法和呼吸测定,以阐明清醒的高型通气和代谢反应,自由地表现为0%-10%CO_2。我们发现NMRS具有钝化的高型通气反应(HCVR):通风仅在10%CO_2中增加。相反,新陈代谢不受Hypercapnia的影响。 NMRS对由改性物质P(SP)介导的外周神经递质引起的皮肤基酸的疼痛不敏感,SP也是通风的重要神经调节剂。因此,在腹膜内注射外源性物质P(2mg / kg)或物质的长寿同种型p {[pglu5-mephe8-megly9] sp(5-l 1)后,我们重新评估对NMRS中的Hypercapnia的生理反应,dime-c7; 40-400μg/ kg}。我们发现两种药物恢复了Hypercapnia敏感性,并在呼吸2%-10%CO_2的动物中取消掩蔽了HCVR。我们的研究结果表明,NMRS非常耐高采烈环境,具有钝化的HCVR;然而,“正常”HCVR所需的信令网络架构被保留但内源性无效。这种化学敏感性的这种突变可能适用于这种物种的生态学,这可能会定期在地下利基地区经常地体验Hypercapnia。

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