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Characterization of Parabrachial Subnuclei in Mice with Regard to Salt Tastants: Possible Independence of Taste Relay from Visceral Processing

机译:与盐味剂有关的小鼠臂旁核的表征:内脏加工的味觉传递可能独立

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摘要

We examined whether salt taste and/or abdominal illness were dealt within different subnuclei in the parabrachial nucleus (PBN) in mice, using retrograde tracing methods and c-Fos–like immunoreactivity (FLI) detection procedures. Some PBN subnuclei have distinct functions and receive various sensory inputs from the nucleus of the solitary tract (NTS) and other areas and relay them to the higher order nuclei such as the thalamus. The afferent-dependent pattern of FLI has been investigated in the PBN. However, it is unclear in which PBN subnuclei the tastants induce c-Fos, or whether PBN subnuclei process taste inputs separately from other inputs, or integrate them. After the tracer injections into the thalamic taste relay, the retrograde labeled cells revealed the taste relay cells in the PBN at the boundary with the superior cerebellar peduncle of both the inner part of the external lateral subnucleus and the medial subnucleus and in the waist area. On the other hand, NaCl intake induced intense FLI in the dorsal lateral subnucleus, whereas LiCl intake yielded intense FLI in both the dorsal lateral subnucleus and the outer part of the external lateral subnucleus. Thus, the present findings that subnuclei relaying taste information to the thalamus do not yield FLI in response to salt taste and abdominal illness indicate that they lack FLI yielding pathways or that they are independent from the subnuclei processing salt taste and visceral information via c-Fos in mice.
机译:我们使用逆行示踪法和类似c-Fos的免疫反应(FLI)检测程序,检查了小鼠臂臂旁核(PBN)中不同亚核内是否存在盐味和/或腹部疾病。一些PBN子核具有独特的功能,并从孤立道(NTS)和其他区域的核中接收各种感觉输入,并将它们中继到丘脑等高阶核。在PBN中已经研究了FLI的传入依赖模式。然而,尚不清楚促味剂在哪个PBN亚核中诱导c-Fos,或者PBN子核是否将口味输入与其他输入分开或整合。在将示踪剂注射入丘脑味觉中继器后,逆行标记的细胞在PBN的外侧外侧亚核内侧和内侧亚核内侧以及腰部区域的上小脑梗的边界处揭示了味觉中继细胞。另一方面,NaCl的摄入在背外侧亚核中引起强烈的FLI,而LiCl的摄入在背外侧亚核中和外侧外侧亚核的外部产生强烈的FLI。因此,本研究发现,将味觉信息传递到丘脑的亚核不响应盐味和腹部疾病而产生FLI,这表明它们缺乏FLI产生途径,或者它们独立于通过c-Fos处理盐味和内脏信息的亚核在小鼠中。

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  • 来源
    《Chemical Senses》 |2009年第3期|p.253-267|共15页
  • 作者单位

    1Department of Sensory and Cognitive Physiology, Faculty of Medical and Pharmaceutical Sciences, Kumamoto University, Honjo 1-1-1, Kumamoto 860-8556, Japan 2Laboratory of Neurochemistry, National Institute for Physiological Sciences, Myodaiji-cho, Okazaki 444-8585, Japan 3Present address: Department of Medical Laboratory Sciences, School of Health Sciences, Kumamoto University, Kuhonji 4-24-1, Kumamoto 862-0976, Japan 4Present address: Laboratory of Neuronal Circuit Mechanism, Brain Science Institute, RIKEN, Hirosawa 2-1, Wako, Saitama 351-0198, Japan 5Present address: Department of Neurology, Juryo Kumamoto Kinoh Hospital, Yamamuro 6-8-1, Kumamoto 860-8518, Japan;

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