首页> 美国卫生研究院文献>The Journal of Neuroscience >Organization and Transmitter Specificity of Medullary Neurons Activated by Sustained Hypertension: Implications for Understanding Baroreceptor Reflex Circuitry
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Organization and Transmitter Specificity of Medullary Neurons Activated by Sustained Hypertension: Implications for Understanding Baroreceptor Reflex Circuitry

机译:持续性高血压激活的髓样神经元的组织和递质特异性:对理解压力感受器反射回路的意义

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摘要

In situ expression of c-fos observed in response to phenylephrine (PE)-induced hypertension provided a basis for characterizing the organization and neurotransmitter specificity of neurons at nodal points of medullary baroreflex circuitry. Sustained hypertension induced by a moderate dose of PE provoked patterns ofc-fos mRNA and protein expression that conformed in the nucleus of the solitary tract (NTS) to the termination patterns of primary baroreceptor afferents and in the caudal ventrolateral medulla (CVLM) to a physiologically defined depressor region. A majority of barosensitive CVLM neurons concurrently displayed markers for the GABAergic phenotype; few were glycinergic. Phenylephrine-sensitive GABAergic neurons that were retrogradely labeled after tracer deposits in pressor sites of the rostral ventrolateral medulla (RVLM) occupied a zone extending ∼1.4 mm rostrally from the level of the calamus scriptorius, intermingled partly with catecholaminergic neurons of the A1 and C1 cell groups. By contrast, barosensitive neurons of the NTS were found to be phenotypically complex, with very few projecting directly to the RVLM. Extensive colocalization of PE-induced Fos-IR and markers for the nitric oxide phenotype were seen in a circumscribed, rostral, portion of the baroreceptor afferent zone of the NTS, whereas only a small proportion of PE-sensitive neurons in the NTS were found to be GABAergic. PE treatment parameters have been identified that provide a basis for defining and characterizing populations of neurons at the first station in the central processing of primary baroreceptor input and at a key inhibitory relay in the CVLM.
机译:响应苯肾上腺素(PE)诱导的高血压而观察到的c-fos的原位表达为表征髓质压力反射回路的结点神经元的组织和神经递质特异性提供了基础。中等剂量的PE诱发的持续性高血压激发了c-fos mRNA和蛋白质表达模式,这些模式在生理道(NTS)的核中与原发性压力感受器传入的终止模式以及在尾侧腹侧延髓(CVLM)生理上一致定义的降压区域。多数压力敏感的CVLM神经元同时显示GABA能表型的标记。很少有甘氨酸能的。示踪剂沉积在延髓腹侧延髓(RVLM)的加压部位后,被苯肾上腺素敏感的GABA能神经元逆行标记,占据从script蒲水平向后延伸约1.4 mm的区域,部分与A1和C1细胞的儿茶酚胺能神经元混合组。相比之下,NTS的气压敏感神经元在表型上很复杂,很少有直接投射到RVLM的。在NTS的压力感受器传入区的一个外接的,有喙的部分中,观察到了PE诱导的Fos-IR的广泛共定位和一氧化氮表型的标记,而在NTS中只发现了一小部分对PE敏感的神经元对GABA感兴趣。已经确定了PE治疗参数,这些参数为在主要压力感受器输入的中央处理的第一站和CVLM中的关键抑制继电器处定义和表征神经元群体提供了基础。

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