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长吻雀鳝和斑点雀鳝呼吸气囊中神经上皮细胞和神经上皮体的同时存在。

The simultaneous presence of neuroepithelial cells and neuroepithelial bodies in the respiratory gas bladder of the longnose gar, Lepisosteus osseus, and the spotted gar, L. oculatus.

机构信息

Department of Animal Biology and Marine Ecology, Faculty of Science, University of Messina, Italy.

出版信息

Acta Histochem. 2012 Jul;114(4):370-8. doi: 10.1016/j.acthis.2011.07.006. Epub 2011 Aug 9.

DOI:10.1016/j.acthis.2011.07.006
PMID:21831413
Abstract

Anatomical and functional studies on the autonomic innervation as well as the location of airway receptors in the air-bladder of lepisosteids are very fragmentary. These water-breathing fishes share in common with the bichirs the presence of a glottis (not a ductus pneumaticus) opening into the esophagus. In contrast to a high concentration of neuroepithelial cells (NECs) contained in the furrowed epithelium in the lung of Polypterus, these cells are scattered as solitary cells in the glottal epithelium, and grouped to form neuroepithelial bodies (NEBs) in the mucociliated epithelium investing the main trabeculae in the air-bladder of Lepisosteus osseus and L. oculatus. The present immunohistochemical studies also demonstrated the presence of nerve fibers in the trabecular striated musculature and a possible relation to NEBs in these species, and identified immunoreactive elements of this innervation. Tyrosine hydroxylase (TH), choline acetyltransferase (ChAT), 5-HT and neuropeptide immunoreactivities were detected in the intramural nerve fibers. 5-HT and VIP immunopositive nerve fibers are apparently associated with NEBs. TH, VIP and SP immunoreactivities are also present in nerve fibers coursing in the radially arranged striated muscle surrounding the glottis and its submucosa. 5-HT positive neurons are also found in submucosal and the muscle layers of the glottis. The physiological function of the adrenergic and inhibitory innervation of the striated muscle as well as the neurochemical coding and morphology of the innervation of the NEBs are not known. Future studies are needed to provide evidence for these receptors with the capacity of chemoreceptors and/or mechanoreceptors.

摘要

关于硬骨舌鱼目鱼类气囊自主神经支配的解剖学和功能,以及气道感受器在气囊中的位置的研究非常零散。这些水生呼吸的鱼类与双须肺鱼共有一个开口于食管的喉头(而非气导管)。与在Polypterus 的肺中含有的大量神经上皮细胞(NECs)位于皱襞上皮中不同,这些细胞在喉头的上皮中呈单个细胞散在分布,并在投资于硬骨舌鱼目鱼类气囊主小梁的黏膜纤毛上皮中聚集形成神经上皮体(NEBs)。目前的免疫组织化学研究还表明,在小梁横纹肌中有神经纤维存在,并且在这些物种中可能与 NEBs 有关,并鉴定了这种神经支配的免疫反应性元素。在腔内神经纤维中检测到了酪氨酸羟化酶(TH)、胆碱乙酰转移酶(ChAT)、5-HT 和神经肽的免疫反应性。5-HT 和 VIP 免疫阳性神经纤维显然与 NEBs 有关。TH、VIP 和 SP 的免疫反应性也存在于围绕喉头及其黏膜下层排列的放射状横纹肌中的神经纤维中。在喉头的黏膜下层和肌肉层中也发现了 5-HT 阳性神经元。关于横纹肌的肾上腺素能和抑制性神经支配的生理学功能,以及 NEBs 的神经化学编码和形态学,目前尚不清楚。未来的研究需要提供这些具有化学感受器和/或机械感受器能力的受体的证据。

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