首页> 外文期刊>The Journal of Physiology >Highly H+-sensitive neurons in the caudal ventrolateral medulla of the rat.
【24h】

Highly H+-sensitive neurons in the caudal ventrolateral medulla of the rat.

机译:大鼠尾侧腹外侧延髓中高度H +敏感的神经元。

获取原文
获取原文并翻译 | 示例
           

摘要

The ventral surface of the caudal ventrolateral medulla (cVLM) has been shown to generate intense respiratory responses after surface acid-base stimulation. With respect to their chemosensitive characteristics, cVLM neurons have been less studied than other rostral-most regions of the brainstem. The purpose of these experiments was to determine the bioelectric responses of cVLM neurons to acidic stimuli and to determine their chemosensitive properties. Using extracellular and microiontophoretic techniques, we recorded electrical activities from 117 neurons in an area close to the ventral surface of the cVLM in anaesthetised rats. All neurons were tested for their sensitivity to H+. The fluorescent probe BCECF was used to measure extracellular pH changes produced by the microiontophoretic injection of H+ in brainstem slices. This procedure provided an estimation of the local changes in pH produced by microiontophoretic H+ application in the anaesthetised rat. Neurons coupled to the respiratory cycle, R (n = 51), were not responsive to direct stimulation with H+. Sixty-six neurons that did respond to H+ stimulation were uncoupled from respiration, and identified as NR neurons. These neurons presented distinct ranges of H+ sensitivity. The neuronal sensitivity to H+ was mainly assessed by the slope of the stimulus-response curve, where the steeper the slope, the higher the H+ sensitivity. On this basis, NR neurons were classed as being either weakly or highly sensitive to H+. NR neurons with a high H+ sensitivity (n = 12) showed an average value of 34.17 +/- 7.44 spikes s-1 (100 nC)-1 (mean +/- S.D.) for maximal slope and an EC50 of 126.76 +/- 33 nC. Suprathreshold H+ stimulation of highly sensitive NR neurons elicited bursting pattern responses coupled to the respiratory cycle. The bursting responses, which were synchronised with the inspiratory phase and the early expiratory phase of the respiratory cycle, lasted for several seconds before returning to the steady state firing pattern characteristic of the pre-stimulus condition. These NR neurons, which possess the capacity to detect distinct H+ concentrations in the extracellular microenvironment, are excellent candidates to serve in a chemoreceptor capacity in the caudal medulla.
机译:尾腹腹外侧延髓的腹面(cVLM)已显示在表面酸碱刺激后产生强烈的呼吸反应。关于它们的化学敏感性特征,与脑干的其他最靠近表皮的区域相比,对cVLM神经元的研究较少。这些实验的目的是确定cVLM神经元对酸性刺激的生物电反应,并确定其化学敏感性。使用细胞外和微离子电渗疗法技术,我们记录了麻醉大鼠中cVLM腹面附近区域117个神经元的电活动。测试所有神经元对H +的敏感性。 BCECF荧光探针用于测量脑干切片中H +的离子电渗疗法产生的细胞外pH变化。该程序提供了在麻醉大鼠中通过微离子电泳H +施加产生的pH局部变化的估计。与呼吸循环相关的神经元R(n = 51)对H +的直接刺激无反应。确实对H +刺激做出反应的66个神经元与呼吸无关,并被确定为NR神经元。这些神经元表现出不同的H +敏感性范围。神经元对H +的敏感性主要通过刺激-反应曲线的斜率进行评估,其中斜率越大,H +敏感性越高。在此基础上,NR神经元被分类为对H +弱或高度敏感。具有高H +敏感性(n = 12)的NR神经元显示最大斜率的平均值为34.17 +/- 7.44尖峰s-1(100 nC)-1(平均值+/- SD),EC50为126.76 +/- 33摄氏度超阈值的H +刺激高度敏感的NR神经元引起与呼吸循环耦合的爆发型反应。与呼吸循环的吸气阶段和呼气早期相同步的爆发响应持续了几秒钟,然后恢复到刺激前状况的稳态发射模式。这些NR神经元具有检测细胞外微环境中不同H +浓度的能力,是在尾状髓质中发挥化学感受器能力的出色候选者。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号