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首页> 外文期刊>American Journal of Physiology >Neurotrophin and GDNF family ligand receptor expression in vagal sensory nerve subtypes innervating the adult guinea pig respiratory tract.
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Neurotrophin and GDNF family ligand receptor expression in vagal sensory nerve subtypes innervating the adult guinea pig respiratory tract.

机译:神经营养素和GDNF家族配体受体表达在阴道感觉神经亚型中,在成人豚鼠呼吸道中解剖。

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We combined retrograde tracing techniques with single-neuron RT-PCR to compare the expression of neurotrophic factor receptors in nodose vs. jugular vagal sensory neurons. The neurons were further categorized based on location of their terminals (tracheal or lungs) and based on expression of the ionotropic capsaicin receptor TRPV1. Consistent with functional studies, nearly all jugular neurons innervating the trachea and lungs expressed TRPV1. With respect to the neurotrophin receptors, the TRPV1-expressing jugular C-fiber neurons innervating both the trachea and lung compartments preferentially expressed tropomyosin-receptor kinase A (TrkA), with only a minority of neurons expressing TrkB or TrkC. The nodose neurons that express TRPV1 (presumed nodose C-fibers) innervate mainly intrapulmonary structures. These neurons preferentially expressed TrkB, with only a minority expressing TrkA or TrkC. The expression pattern in tracheal TRPV1-negative neurons, nodose tracheal presumed Adelta-fiber neurons as well as the intrapulmonary TRPV1-negative presumed Abeta-fiber neurons, was similar to that observed in the nodose C-fiber neurons. We also evaluated the expression of GFRalpha receptors and RET (receptors for the GDNF family ligands). Virtually all vagal sensory neurons innervating the respiratory tract expressed RET and GFRalpha1. The jugular neurons also categorically expressed GFRalpha3, as well as approximately 50% of the nodose neurons. GFRalpha2 was expressed in approximately 50% of the neurons irrespective of subtype. The results reveal that Trk receptor expression in vagal afferent neurons innervating the adult respiratory tract depends more on the location of the cell bodies (jugular vs. nodose ganglion) than either the location of the terminals or the functional phenotype of the nerve. The data also reveal that in addition to neurotrophins, the GDNF family ligands may be important neuromodulators of vagal afferent nerves innervating the adult respiratory tract.
机译:我们将逆行跟踪技术与单神经元RT-PCR相结合,以比较Nodose与颈静脉迷住神经元中神经营养因子受体的表达。基于其末端(气管或肺部)的位置,并基于离子胶质胶囊受体TRPV1的表达,进一步分类神经元。与功能性研究一致,几乎所有接受气管和肺部的颈颈神经元表达了TRPV1。关于神经营养蛋白受体,TRPV1表达颈纤维神经元的颈静脉内纤维神经元优先表达了Tropomyosin-Coctory激酶A(Trka),只有少数少数表达TRKB或TRKC的神经元。表达TRPV1(推定的核糖C-纤维)主要支配肺内结构的核糖神经元。这些神经元优先表达TRKB,只有少数群体表达TRKA或TRKC。气管TRPV1阴性神经元中的表达模式,核糖气管推定的阿菌纤维神经元以及颅内TRPV1阴性预测的ABETA-纤维神经元类似于在核糖C-纤维神经元中观察到的血管内纤维神经元。我们还评估了GFralpha受体和RET的表达(GDNF家族配体的受体)。几乎所有阴道感觉神经元都在接受呼吸道表达RET和Gfralpha1。颈颈神经元也分类地表达了Gfralpha3,以及约50%的核糖神经元。无论亚型如何,Gfralpha2都以约50%的神经元表示。结果表明,阴道传入神经元中的Trk受体表达在阴道内呼吸道中的内容更多地取决于细胞体(颈颈部与核糖神经节)的位置而不是末端的位置或神经的功能表型。数据还揭示了除神经泌菌素之外,GDNF家族配体也可能是迷走神经的重要神经调节剂,其神经调节性神经调节,负责成人呼吸道。

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