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首页> 外文期刊>The Journal of Physiology >Episodic spinal serotonin receptor activation elicits long-lasting phrenic motor facilitation by an NADPH oxidase-dependent mechanism.
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Episodic spinal serotonin receptor activation elicits long-lasting phrenic motor facilitation by an NADPH oxidase-dependent mechanism.

机译:阵发性脊髓5-羟色胺受体激活通过NADPH氧化酶依赖性机制引起长期的motor运动促进。

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摘要

Phrenic long-term facilitation (pLTF) is a serotonin (5-HT)-dependent augmentation of phrenic motor output induced by acute intermittent hypoxia (AIH). AIH-induced pLTF requires spinal NADPH oxidase activity and reactive oxygen species (ROS) formation. Since 5-HT receptor activation stimulates NADPH oxidase activity in some cell types, we tested the hypothesis that episodic spinal 5-HT receptor activation (without AIH) is sufficient to elicit an NADPH oxidase-dependent facilitation of phrenic motor output (pMF). In anaesthetised, artificially ventilated adult male rats, episodic intrathecal 5-HT injections (3 x 6 microl injections at 5 min intervals) into the cerebrospinal fluid (CSF) near cervical spinal segments containing the phrenic motor nucleus elicited a progressive increase in integrated phrenic nerve burst amplitude (i.e. pMF) lasting at least 60 min post-5-HT administration. Hypoglossal (XII) nerve activity was unaffected, suggesting that effective doses of 5-HT did not reach the brainstem. A single 5-HT injection was without effect. 5-HT-induced pMF was dose dependent, but exhibited a bell-shaped dose-response curve. Activation of different 5-HT receptor subtypes, specifically 5-HT(2) versus 5-HT(7) receptors, may underlie the bell-shaped dose-response curve via a mechanism of 'cross-talk' inhibition. Pre-treatment with NADPH oxidase inhibitors, apocynin or diphenylenodium (DPI), blocked 5-HT induced pMF. Thus, episodic spinal 5-HT receptor activation is sufficient to elicit pMF by an NADPH oxidase-dependent mechanism, suggesting common mechanisms of ROS formation with AIH-induced pLTF. An understanding of the mechanisms giving rise to AIH-induced pLTF and 5-HT induced pMF may inspire novel therapeutic strategies for respiratory insufficiency in diverse conditions, such as sleep apnoea, cervical spinal injury or amyotrophic lateral sclerosis.
机译:ren长期促进(pLTF)是5-羟色胺(5-HT)依赖性的急性间歇性缺氧(AIH)引起的motor运动输出的增强。 AIH诱导的pLTF需要脊髓NADPH氧化酶活性和活性氧(ROS)形成。由于5-HT受体激活会刺激某些细胞类型的NADPH氧化酶活性,因此我们测试了假说的脊柱5-HT受体激活(无AIH)足以引起NADPH氧化酶依赖性运动输出(pMF)的促进。在麻醉,人工通气的成年雄性大鼠中,向包含containing运动神经核的颈椎节段附近的脑脊液(CSF)进行发作性鞘内5-HT注射(间隔5分钟以3 x 6 microl注射)引起integrated神经整合性逐渐增加5-HT给药后至少持续60分钟的爆发振幅(即pMF)。舌下(XII)神经活动未受影响,表明有效剂量的5-HT尚未到达脑干。单次5-HT注射无效。 5-HT诱导的pMF呈剂量依赖性,但呈现出钟形的剂量反应曲线。不同的5-HT受体亚型,特别是5-HT(2)与5-HT(7)受体的激活可能是通过“串扰”抑制机制形成的钟形剂量反应曲线的基础。用NADPH氧化酶抑制剂,载脂蛋白或二苯基烯丙基(DPI)进行预处理可阻断5-HT诱导的pMF。因此,阵发性脊髓5-HT受体激活足以通过NADPH氧化酶依赖性机制引发pMF,提示与AIH诱导的pLTF形成ROS的常见机制。对引起AIH诱导的pLTF和5-HT诱导的pMF的机制的理解可能会激发新的治疗策略,以应对各种情况下的呼吸功能不全,例如睡眠呼吸暂停,颈椎脊髓损伤或肌萎缩性侧索硬化症。

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