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鉴定大鼠海马中的肝敏感区及其神经连接。

Identification of hepatosensitive region and their neural connections in the hippocampus of rats.

机构信息

Department of Human Anatomy, Basic Medical College of Guilin Medical University, China.

Department of Anatomy, Basic Medical Department of Henan Vocational College of Nursing, China.

出版信息

Folia Morphol (Warsz). 2022;81(2):261-270. doi: 10.5603/FM.a2021.0020. Epub 2021 Feb 26.

Abstract

BACKGROUND

Visceral function localisation of the brain is very complex. For many years, people have been actively exploring the neural mechanism regulating visceral and substance metabolism, clarifying the complex relationship between the brain and peripheral nervous system related to the regulation of visceral activity, and analysing its complex neural pathways. The brain is the advanced centre of visceral function regulation. As an advanced centre for substance metabolism and visceral regulation, the hippocampus is crucial for regulating visceral function. The liver is the core organ of material metabolism, and its afferent signals are mainly projected to the nucleus of the solitary tract (NTS) through vagus nerve, and then they are projected to the hypothalamus and limbic system.

MATERIALS AND METHODS

We placed a stereotaxic instrument on the head of each rat and performed craniotomy to open a window above the left hippocampus. We used gold-plated tungsten electrodes to monitor hippocampal neuronal discharges. Grounding was achieved using screws and silver wire. We electrically stimulated the liver branch of the vagus nerve and observed changes in hippocampal neuron discharges using a biological method; in this way, we identified hepatosensitive hippocampal region. We injected FluoroGold into this region and related brain areas. After 3 days, the rats were sacrificed and perfused; the hippocampi were fixed, dehydated, frozen, sectioned, and subjected to fluorescence microscopy.

RESULTS

Nerve discharge frequency and amplitude significantly increased in the hippocampal CA3 region (AP: -4.9, ML: -5.1, DV: -5.0 mm). After FluoroGold was injected into the left hepatosensitive region in the hippocampus, labelled cells were found in the contralateral hippocampus, ipsilateral piriform cortex (PC), locus coeruleus (LC) and bilateral lateral hypothalamus (LHA); fluorescence in the ipsilateral hypothalamus was stronger than that of the contralateral hypothalamus. FluoroGold was injected into the LHA, PC, and LC; no labelled cells were found in the hippocampal CA3 region or in the control group.

CONCLUSIONS

The hippocampal CA3 area of rats may contain a hepatosensitive region that plays important roles in the regulation of liver and other organ function. This region may receive input from the LHA, PC, and LC.

摘要

背景

脑的内脏功能定位非常复杂。多年来,人们一直在积极探索调节内脏和物质代谢的神经机制,阐明与调节内脏活动相关的大脑与外周神经系统之间的复杂关系,并分析其复杂的神经通路。大脑是内脏功能调节的高级中枢。海马体作为物质代谢和内脏调节的高级中枢,对内脏功能的调节起着至关重要的作用。肝脏是物质代谢的核心器官,其传入信号主要通过迷走神经投射到孤束核(NTS),然后投射到下丘脑和边缘系统。

材料和方法

我们将立体定位仪置于每只大鼠头部,行颅骨开窗术,在左侧海马体上方开一窗口。使用镀金钨丝电极监测海马神经元放电。通过螺钉和银丝实现接地。电刺激迷走神经的肝脏分支,观察海马神经元放电的变化,采用生物学方法鉴定肝敏感海马区。将 FluoroGold 注入该区域及其相关脑区。3 天后处死大鼠并灌注,固定、脱水、冷冻、切片、荧光显微镜观察。

结果

海马 CA3 区神经放电频率和幅度明显增加(AP:-4.9,ML:-5.1,DV:-5.0mm)。将 FluoroGold 注入左侧海马肝敏感区后,发现标记细胞位于对侧海马、同侧梨状皮质(PC)、蓝斑(LC)和双侧外侧下丘脑(LHA);同侧下丘脑荧光强度强于对侧下丘脑。将 FluoroGold 注入 LHA、PC 和 LC,在海马 CA3 区或对照组中未发现标记细胞。

结论

大鼠海马 CA3 区可能存在一个肝敏感区,在调节肝脏和其他器官功能中发挥重要作用。该区域可能接受来自 LHA、PC 和 LC 的输入。

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