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豚鼠感觉神经节中的儿茶酚胺和儿茶酚胺合成酶

Catecholamines and catecholamine-synthesizing enzymes in guinea-pig sensory ganglia.

作者信息

Kummer W, Gibbins I L, Stefan P, Kapoor V

机构信息

Institute for Anatomy and Cell Biology, University of Heidelberg, FRG.

出版信息

Cell Tissue Res. 1990 Sep;261(3):595-606. doi: 10.1007/BF00313540.

Abstract

Cranial and spinal sensory ganglia of the guinea-pig were investigated by means of histochemistry and biochemistry for the presence of catecholamines and catecholamine-synthesizing enzymes. Sensory neurons exhibiting immunoreactivity to the rate-limiting enzyme of catecholamine synthesis, tyrosine hydroxylase (TH), were detected by immunohistochemistry in lumbo-sacral dorsal root ganglia, the nodose ganglion and the petrosal/jugular ganglion complex. The carotid body was identified as a target of TH-like-immunoreactive (TH-LI) neurons by the use of combined retrograde tracing and immunohistochemistry. Double-labelling immunofluorescence revealed that most TH-LI neurons also contained somatostatin-LI, but TH-LI did not coexist with either calcitonin gene-related peptide- or substance P-LI. TH-LI neurons did not react with antibodies to other enzymes involved in catecholamine synthesis, i.e., aromatic amino acid decarboxylase (AADC), dopamine-beta-hydroxylase (D beta H), and phenylethanolamine-N-methyl-transferase (PNMT). Petrosal neurons as well as their endings in the carotid body lacked dopamine- and L-DOPA-LI. Sensory neurons did not display glyoxylic acid-induced catecholamine fluorescence. Ganglia containing TH-LI neurons were kept in short-term organ culture after crushing their roots and the exiting nerve in order to enrich intra-axonal transmitter content at the ganglionic side of the crush. However, even under these conditions, catecholamine fluorescence was not detected in axons projecting peripherally or centrally from the ganglia. Sympathetic noradrenergic nerves entered the ganglia and terminated within them. Accordingly, biochemical analyses of guinea-pig sensory ganglia revealed noradrenaline but no dopamine. In conclusion, catecholamines within guinea-pig sensory ganglia are confined to sympathetic nerves, which fulfill presently unknown functions. The TH-LI neurons themselves, however, lack any additional sign of catecholamine synthesis, and the presence of enzymatically active TH within these neurons is questionable.

摘要

通过组织化学和生物化学方法,研究豚鼠的颅神经节和脊神经节中儿茶酚胺及儿茶酚胺合成酶的存在情况。利用免疫组织化学方法,在腰骶部背根神经节、结状神经节以及岩神经节/颈静脉神经节复合体中,检测到对儿茶酚胺合成限速酶酪氨酸羟化酶(TH)呈免疫反应性的感觉神经元。通过逆行追踪和免疫组织化学相结合的方法,确定颈动脉体是TH样免疫反应性(TH-LI)神经元的一个靶点。双标免疫荧光显示,大多数TH-LI神经元也含有生长抑素-LI,但TH-LI不与降钙素基因相关肽-LI或P物质-LI共存。TH-LI神经元不与参与儿茶酚胺合成的其他酶的抗体发生反应,即芳香族氨基酸脱羧酶(AADC)、多巴胺-β-羟化酶(DβH)和苯乙醇胺-N-甲基转移酶(PNMT)。岩神经节神经元及其在颈动脉体中的终末缺乏多巴胺和L-多巴-LI。感觉神经元未显示乙醛酸诱导的儿茶酚胺荧光。含有TH-LI神经元的神经节在切断其神经根和传出神经后进行短期器官培养,以富集挤压部位神经节侧的轴突内递质含量。然而,即使在这些条件下,也未在从神经节向周围或中枢投射的轴突中检测到儿茶酚胺荧光。交感去甲肾上腺素能神经进入神经节并在其中终末。因此,豚鼠感觉神经节生化分析显示存在去甲肾上腺素但无多巴胺。总之,豚鼠感觉神经节内的儿茶酚胺局限于交感神经,其功能目前尚不清楚。然而,TH-LI神经元本身缺乏儿茶酚胺合成的任何其他迹象,这些神经元中是否存在具有酶活性的TH也值得怀疑。

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