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Chemosensitive Phox2b-expressing neurons are crucial for hypercapnic ventilatory response in the nucleus tractus solitarius

机译:Chemosensitive Phox2B表达神经元对于核心菌氏菌中的高繁殖性通气反应至关重要

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摘要

The nucleus tractus solitarius (NTS) neurons have been considered to function as central respiratory chemoreceptors. However, the common molecular marker defined for these neurons remains unknown. The present study investigated whether paired-like homeobox 2b (Phox2b)-expressing NTS neurons are recruited in hypercapnic ventilatory response (HCVR) and whether these neurons exhibit intrinsic chemosensitivity. HCVR was assessed using whole body plethysmography and neuronal chemosensitivity was examined by patch clamp recordings in brainstem slices or dissociated neurons from Phox2b-EGFP transgenic mice. Injection of the neurotoxin substance P-saporin (SSP-SAP) into NTS destroyed Phox2b-expressing neurons. Minute ventilation and tidal volume were both reduced by 13% during exposure to 8% CO2 in inspired air when similar to 13% of the Phox2b-expressing neurons were eliminated. However, a loss of similar to 18% of these neurons was associated with considerable decreases in minute ventilation by >= 18% and in tidal volume by >= 22% when challenged by >= 4% CO2. In both cases, breathing frequency was unaffected. Most CO2-activated neurons were immunoreactive to Phox2b. In brainstem slices, similar to 43% of Phox2b-expressing neurons from Phox2b-EGFP mice displayed a sustained or transient increase in firing rate during physiological acidification (pH7.0 or 8% CO2). Such a response was also present in dissociated neurons in favour of an intrinsic property. In voltage clamp recordings, a background K+ channel-like current was found in a subgroup of Phox2b-expressing neurons. Thus, the respiratory deficits caused by injection of SSP-SAP into the NTS are attributable to proportional lesions of CO2/H+-sensitive Phox2b-expressing neurons.
机译:核泌瓜菌菌(NTS)神经元已被认为是作为中枢呼吸化学感受器的作用。然而,为这些神经元定义的常见分子标记仍然未知。本研究探讨是否配对样同源盒2B(PHOX2B) - 表达NTS神经元中高碳酸血症通气反应(HCVR)招募和这些神经元是否表现出固有的化学敏感性。使用全身体积描记法评估HCVR,通过脑干切片中的膜片夹具或来自PHOX2B-EGFP转基因小鼠的解离神经元进行膜片钳录制来检查神经元化学敏感性。将神经毒素物质p-saporin(ssp-sap)注射到Nts被破坏的phox2b表达神经元。在激发空气中暴露于8%CO 2期间,当类似于13%的PHOX2B表达的神经元,分钟通风和潮气量均减少13%。然而,这些神经元的类似〜18%的损失,用由> = 18%在每分钟通气量相当跌幅并且在由> = 22%的潮气量当由> = 4%CO 2的挑战相关联。在这两种情况下,呼吸频率不受影响。大多数二氧化碳活化的神经元对phox2b免疫反应。在脑干切片中,类似于来自Phox2B-EGFP小鼠的表达PHOX2B的43%的PHOX2B的神经元在生理酸化(pH7.0或8%CO 2)期间显示出持续或瞬态的烧制率。解离神经元也存在这种反应,有利于内在性质。在电压钳位记录中,在表达PHOX2B的神经元的亚组中发现了背景K +沟道状电流。因此,通过将SSP-SAP注射到NTs中引起的呼吸缺陷可归因于CO 2 / H + - 密度裂解性PHOX2B的比例病变 - 表达的神经元。

著录项

  • 来源
    《The Journal of Physiology》 |2017年第14期|共17页
  • 作者单位

    Hebei Med Univ Dept Physiol 361 East Zhongshan Rd Shijiazhuang 050017 Hebei Peoples R China;

    Hebei Chest Hosp Dept Respirat Shijiazhuang Hebei Peoples R China;

    Hebei Med Univ Dept Physiol 361 East Zhongshan Rd Shijiazhuang 050017 Hebei Peoples R China;

    Hebei Med Univ Dept Physiol 361 East Zhongshan Rd Shijiazhuang 050017 Hebei Peoples R China;

    Hebei Med Univ Dept Physiol 361 East Zhongshan Rd Shijiazhuang 050017 Hebei Peoples R China;

    Hebei Med Univ Dept Physiol 361 East Zhongshan Rd Shijiazhuang 050017 Hebei Peoples R China;

    Hebei Med Univ Dept Physiol 361 East Zhongshan Rd Shijiazhuang 050017 Hebei Peoples R China;

    Hebei Med Univ Dept Pharmacol Shijiazhuang Hebei Peoples R China;

    Hebei Med Univ Dept Physiol 361 East Zhongshan Rd Shijiazhuang 050017 Hebei Peoples R China;

    Hebei Med Univ Hosp 2 Dept Neurol Shijiazhuang Hebei Peoples R China;

    Hebei Med Univ Dept Physiol 361 East Zhongshan Rd Shijiazhuang 050017 Hebei Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    chemosensitivity; central respiratory chemoreceptor; control of breathing;

    机译:化学敏感;中央呼吸化学感受器;控制呼吸;

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