首页> 美国卫生研究院文献>The Journal of Neuroscience >Dendritic A-Current in Rhythmically Active PreBötzinger Complex Neurons in Organotypic Cultures from Newborn Mice
【2h】

Dendritic A-Current in Rhythmically Active PreBötzinger Complex Neurons in Organotypic Cultures from Newborn Mice

机译:在新生小鼠的器官型文化中的节律性活动PreBötzinger复杂神经元中的树突状A电流。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The brainstem preBötzinger complex (preBötC) generates the inspiratory rhythm for breathing. The onset of neural activity that precipitates the inspiratory phase of the respiratory cycle may depend on the activity of type-1 preBötC neurons, which exhibit a transient outward K+ current, IA. Inspiratory rhythm generation can be studied ex vivo because the preBötC remains rhythmically active in vitro, both in acute brainstem slices and organotypic cultures. Advantageous optical conditions in organotypic slice cultures from newborn mice of either sex allowed us to investigate how IA impacts Ca2+ transients occurring in the dendrites of rhythmically active type-1 preBötC neurons. The amplitude of dendritic Ca2+ transients evoked via voltage increases originating from the soma significantly increased after an IA antagonist, 4-aminopyridine (4-AP), was applied to the perfusion bath or to local dendritic regions. Similarly, glutamate-evoked postsynaptic depolarizations recorded at the soma increased in amplitude when 4-AP was coapplied with glutamate at distal dendritic locations. We conclude that IA is expressed on type-1 preBötC neuron dendrites. We propose that IA filters synaptic input, shunting sparse excitation, while enabling temporally summated events to pass more readily as a result of IA inactivation. Dendritic IA in rhythmically active preBötC neurons could thus ensure that inspiratory motor activity does not occur until excitatory synaptic drive is synchronized and well coordinated among cellular constituents of the preBötC during inspiratory rhythmogenesis. The biophysical properties of dendritic IA might thus promote robustness and regularity of breathing rhythms.>SIGNIFICANCE STATEMENT Brainstem neurons in the preBötC generate the oscillatory activity that underlies breathing. PreBötC neurons express voltage-dependent currents that can influence inspiratory activity, among which is a transient potassium current (IA) previously identified in a rhythmogenic excitatory subset of type-1 preBötC neurons. We sought to determine whether IA is expressed in the dendrites of preBötC. We found that dendrites of type-1 preBötC neurons indeed express IA, which may aid in shunting sparse non-summating synaptic inputs, while enabling strong summating excitatory inputs to readily pass and thus influence somatic membrane potential trajectory. The subcellular distribution of IA in rhythmically active neurons of the preBötC may thus be critical for producing well coordinated ensemble activity during inspiratory burst formation.
机译:脑干preBötzinger复合体(preBötC)产生呼吸的吸气节律。促成呼吸周期吸气阶段的神经活动的开始可能取决于1型preBötC神经元的活动,其表现出瞬时的向外K + 电流IA。吸气节律的产生可以在体外进行研究,因为preBötC在急性脑干切片和器官型培养物中均在体外具有节律活性。在来自任何性别的新生小鼠的器官型切片培养物中的有利光学条件,使我们能够研究IA如何影响有节奏活性的1型preBötC神经元树突中发生的Ca 2 + 瞬变。将IA拮抗剂4-氨基吡啶(4-AP)应用于灌注浴或局部树突区域后,由体细胞引起的电压升高引起的树突Ca 2 + 瞬变幅度明显增加。同样,当4-AP与谷氨酸在远端树突状部位共同应用时,在躯体上记录的谷氨酸引起的突触后去极化的幅度增加。我们得出结论,IA在1型preBötC神经元树突上表达。我们建议IA过滤突触输入,分流稀疏激励,同时使由于IA失活而导致的时间累加事件更容易通过。因此,具有节律性的preBötC神经元中的树突状IA可以确保在吸气节律发生过程中,在兴奋性突触驱动同步并在preBötC的细胞成分之间良好协调之前,不会发生吸气运动活动。因此,树突状IA的生物物理特性可能会促进呼吸节律的稳健性和规律性。>意义声明preBötC中的脑干神经元产生了构成呼吸基础的振荡活动。 PreBötC神经元表达的电压依赖性电流会影响吸气活动,其中一个是先前在1型preBötC神经元的节律性兴奋子集中发现的瞬时钾电流(IA)。我们试图确定IA是否在preBötC的树突中表达。我们发现1型preBötC神经元的树突确实表达了IA,这可能有助于分流稀疏的非总计突触输入,同时使强大的总计兴奋性输入易于通过并因此影响体膜电位轨迹。因此,preBötC的节律性活动神经元中IA的亚细胞分布对于在吸气爆发形成过程中产生良好协调的合奏活动可能至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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