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免疫刺激或脊髓伤害性输入对臂旁核 - 杏仁核通路的激活:一项利用Fos免疫组织化学和逆行束路追踪技术在大鼠身上进行的定量研究。

Activation of the parabrachio-amygdaloid pathway by immune challenge or spinal nociceptive input: a quantitative study in the rat using Fos immunohistochemistry and retrograde tract tracing.

作者信息

Richard Sabine, Engblom David, Paues Jakob, Mackerlova Ludmila, Blomqvist Anders

机构信息

Station de Recherches Avicoles, Institut National de la Recherche Agronomique, 37 380 Nouzilly, France.

出版信息

J Comp Neurol. 2005 Jan 10;481(2):210-9. doi: 10.1002/cne.20384.

Abstract

Peripheral nociceptive stimulation results in activation of neurons in the pontine parabrachial nucleus (PB) of rats. Electrophysiological studies have suggested that noxiously activated PB neurons project to the amygdala, constituting a potential pathway for emotional aspects of pain. In the present study we examined this hypothesis by combining retrograde tract tracing with Fos immunohistochemistry. Cholera toxin subunit B was injected into the amygdala of rats. After a minimum of 48 hours the rats were given a subcutaneous injection of 100 microl of 5% formalin into one hindpaw and killed 60-90 minutes later. A dense aggregation of retrogradely labeled neurons was seen in the external lateral PB. Fos-expressing neurons were present preferentially in the central, dorsal, and superior lateral subnuclei as well as in the lateral crescent area, as described previously. There was little overlap between the retrogradely labeled and Fos-expressing populations and double-labeled neurons were rare. In contrast, systemic immune challenge by intravenous injection of bacterial wall lipopolysaccharide resulted in a Fos expression that overlapped the retrograde labeling in the external lateral PB, and many double-labeled neurons were seen. While these data provide direct functional anatomical evidence that nociceptive information from the hindlimb is relayed to the amygdala via the parabrachial nucleus, the number of parabrachio-amygdaloid neurons involved is small. Considering the widespread activation of parabrachio-amygdaloid neurons by a variety of visceral and humoral stimuli, the parabrachio-amygdaloid pathway thus appears to be more involved in the mediation of information related to viscerally and humorally elicited activity than in transmission of spinal nociceptive inputs.

摘要

外周伤害性刺激可导致大鼠脑桥臂旁核(PB)中的神经元激活。电生理研究表明,被伤害性激活的PB神经元投射至杏仁核,构成了疼痛情绪方面的潜在通路。在本研究中,我们通过将逆行束路追踪与Fos免疫组织化学相结合来检验这一假说。将霍乱毒素B亚单位注射到大鼠杏仁核中。至少48小时后,给大鼠一侧后爪皮下注射100微升5%的福尔马林,并在60 - 90分钟后处死。在外侧PB可见大量逆行标记神经元的聚集。如先前所述,Fos表达神经元优先出现在中央、背侧和外侧上亚核以及外侧新月区。逆行标记和Fos表达群体之间几乎没有重叠,双标记神经元很少见。相比之下,静脉注射细菌细胞壁脂多糖进行全身免疫攻击导致Fos表达与外侧PB中的逆行标记重叠,并且可见许多双标记神经元。虽然这些数据提供了直接的功能解剖学证据,表明来自后肢的伤害性信息通过臂旁核传递至杏仁核,但涉及的臂旁核 - 杏仁核神经元数量很少。考虑到多种内脏和体液刺激可广泛激活臂旁核 - 杏仁核神经元,因此臂旁核 - 杏仁核通路似乎更多地参与与内脏和体液引发活动相关信息的介导,而非脊髓伤害性输入的传递。

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