期刊文献+

豚鼠耳蜗血管交感神经支配的逆行追踪与免疫组化相结合的双标

Sympathetic nerve-innervated cochlear blood vessels in guinea pig:Retrograde tracing combined with immunohistochemical double-labeled technique
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摘要 目的:研究豚鼠耳蜗螺旋蜗轴动脉接受交感神经支配的具体来源情况及与该交感神经纤维调节功能相关的神经递质.方法:在正常豚鼠单侧耳蜗螺旋蜗轴动脉局部滴加逆行追踪剂辣根过氧化物酶(HRP)或荧光金(FG),观察双侧交感颈上神经节、星状神经节内HRP或FG逆标神经元的分布;采用逆标与免疫组化相结合的双重标记方法观察追踪阳性神经元是否表达酪氨酸羟化酶(TH)、神经肽Y(NPY)、钙基因相关肽(CGRP)或P物质(SP).结果:同侧颈上神经节内可见逆行追踪阳性神经元胞体,对侧颈上及双侧星状神经节内却未见阳性细胞;阳性神经元多同时呈TH,NPY阳性,但未见CGRP或SP双标的阳性神经元.结论:豚鼠颈上神经节内存在TH及NPY阳性神经元支配同侧耳蜗血管,去甲肾上腺素和神经肽Y可能是交感神经节后纤维调节耳蜗血流的递质或调质. AIM: To investigate the detailed innervation patterns of the sympathetic nerve to the cochlear blood vessels and related neurotransmitters in the guinea pig. METHODS: The spiral modiolar artery (SMA) in guinea pig cochlea was exposed by microsurgery, then the fluorogold (FG) or horseradish peroxidase (HRP) was given around the SMA for retrograde tracing. The bilateral superior cervical ganglia (SCG) and stellate ganglia (STG) were observed to find retrogradely labeled neurons. The n of these sympathetic fibers around SMA were ascertained by using retrograde tracing combined with immunohistochemical double-labeled technique. RESULTS: Retrogradely labeled neurons with FG or HRP were found in the rostral half of the ipsilateral SCG. No labeled neurons were observed in the contralateral SCG and the bilateral STG. Most of HRP-labeled neurons in SCG were TH-IR positive and NPY-IR positive, while none of them were CGRP-or SP-positiue. CONCLUSION: The TH-IR positive and NPY-IR positive neurons in SCG send projections to the ipsilateral cochlear blood vessels. The norepinephrine and NPY may be used by sympathetic nerve to regulate cochlear blood flow.
出处 《第四军医大学学报》 北大核心 2006年第12期1097-1099,共3页 Journal of the Fourth Military Medical University
关键词 螺旋蜗轴动脉 交感神经 酪氨酸单氧化酶 免疫组织化学 豚鼠 spiral modiolar artery sympathetic nerve tyrosine 3-monoorygenase immunohistochemistry guinea pigs
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参考文献6

  • 1Lyon MJ,Payman RN.Comparison of the vascular innervation of the rat cochlea and vestibular system[J].Hear Res,2000,141(1-2):189-198.
  • 2Wangemann P,Wonneberger K.Neurogenic regulation of cochlear blood flow occurs along the basilar artery,the anterior inferior cerebellar artery and at branch points of the spiral modiolar artery[J].Hear Res,2005,209(1-2):91-96.
  • 3邱建华,乔莉,刘顺利.耳蜗血管交感及感觉神经双重调节的形态学证据[J].听力学及言语疾病杂志,2004,12(2):96-97. 被引量:3
  • 4Nakashima T,Naganawa S,Sone M,et al.Disorders of cochlear blood flow[Review][J].Brain Res,2003,43(1):17-28.
  • 5Gil-Loyzaga P,Vicente-Torres MA,Arce A,et al.Effect of superior cervical ganglionectomy on catecholamine concentration in rat cochlea[J].Brain Res,1998,779(1-2):53-57.
  • 6Watanabe K,Sugimoto T,Tsunoda A,Effect of sympathectomy on capillaries of the cochlear lateral wall[J].ORL J Otorhinolaryngol Relat Spec,1990,52(4):205-210.

二级参考文献12

  • 1[1]Carlisle L,Aberdeen J,Forge A,et al. Neural basis for regulation of cochlear blood flow:peptidergic and adrenergic innervation of the spiral modiolar artery of the guinea pig[J].Hear Res,1990,43:107.
  • 2[2]McLaren GM,Quirk WS,Laurikainen E,et al. Substance P increases cochlear blood flow without changing cochlear electrophysiology in rats[J].Hear Res,1993,71:183.
  • 3[3]Ren TY,Laurikainen E,Quirk W.et al. Effects of stellate ganglion stimulation on bilateral cochlear blood flow[J].Ann Otol Rhinol Laryngol,1993,102:378.
  • 4[4]Jiang ZG, Qiu,JH,Ren TY,,et al.Menbrane properties and the excitatory junction potentials in smooth muscle cells of cochlear spiral modiolar artery in guinea pigs[J].Hear Res,1999,138:171.
  • 5[5]Quirk WS,Seidman MD,Laurikainen EA,et al.Influence of calcitonin gene-realted peptide on cochlear blood flow and electrophysiology[J].Am J Otol,1994,15:56.
  • 6[6]Villarreal D,Freeman RH,Verbury KM,et al. Effedts of calcitonin gene-related lpeptide on renal blood flow in the rat[J].Proc Soc Exp Biol Med,1988:316.
  • 7[7]Gruber DD,Dang H,Shimozono M,et al.α1A-Adrenergic teceptors mediate vasoconatriction of the isolated spiral modiolar artery in vitro[J].Hear Res, 1998,119:113.
  • 8[8]Krimer LS,Muly EC, Williams GV,et al. Dopaminergic regulation of cerebral cortical microcirculation[J].Nature Neurosci,1998,4:286.
  • 9[9]Schmitt M,Kummer W,Heymc C. Calcitonin gene-related peptide(CGRP)-immunoreactive neurons in the human cervicothoracic paravertebral ganglia[J].J Chem Neuroanat,1988,1:287.
  • 10[10]Connor TP,Kooy DVD. Enrichment of a vasoactive neuropeptide (calcitonin gene-related peptide)in the trigeminal sensory projection to the intracranial arteries[J].J Neurosci,1988,8:2 468.

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