金目鲷鱼寄生虫 Acrolichanus auriculatus(Digenea: Allocreadiidae)神经系统中的血清素能元素

IF 2.5 3区 工程技术 Q1 MICROSCOPY Micron Pub Date : 2024-07-08 DOI:10.1016/j.micron.2024.103690
Nadezhda B. Terenina , Natalia D. Kreshchenko , Sergey O. Movsesyan
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引用次数: 0

摘要

吸虫是一种广泛分布于尖吻鲈鱼肠道中的寄生虫。该研究首次使用免疫细胞化学方法和激光共聚焦扫描显微镜研究了该鱼血清素能神经元的定位和分布。研究发现,在虹鳟鱼的中枢神经系统和外周神经系统中,即在脑神经节、脑神经束、纵神经索和结缔神经束的神经元和神经末梢中,存在生物胺--羟色胺。血清素能神经元可支配附着器官、咽、食道和生殖系统的远端区域。图中标出了血清素能神经元的分布。通过比较分析在其他食肉动物身上获得的发现,可以发现在各种代表的吸虫中,血清素能神经系统的组织既有保守的特征,也有独特的特征。
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Serotonergic elements in the nervous system of parasite of acipenserid fishes, Acrolichanus auriculatus (Digenea: Allocreadiidae)

The trematode Acrolichanus auriculatus is a widely distributed intestine parasite of acipenserid fishes. For the first time the localization and distribution of the serotonergic nerve elements in A. auriculatus was studied using immunocytochemical method and confocal laser scanning microscopy. The study revealed the presence of biogenic amine, serotonin, in the central and peripheral nervous systems of A. auriculatus, that is in the neurons and neurites of the brain ganglia, brain commissure, the longitudinal nerve cords, and the connective nerve commissures. The innervation of the attachment organs, pharynx, oesophagus and distal regions of the reproductive system by the serotonergic nerve elements is observed. The distribution of serotonergic neurons in A. auriculatus is schematically marked. The comparative analysis of findings obtained in A. auriculatus with those recorded for other digeneans reveals the presence of both conservative and distinctive features in the organization of the serotonergic nervous system in various representatives of trematodes.

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来源期刊
Micron
Micron 工程技术-显微镜技术
CiteScore
4.30
自引率
4.20%
发文量
100
审稿时长
31 days
期刊介绍: Micron is an interdisciplinary forum for all work that involves new applications of microscopy or where advanced microscopy plays a central role. The journal will publish on the design, methods, application, practice or theory of microscopy and microanalysis, including reports on optical, electron-beam, X-ray microtomography, and scanning-probe systems. It also aims at the regular publication of review papers, short communications, as well as thematic issues on contemporary developments in microscopy and microanalysis. The journal embraces original research in which microscopy has contributed significantly to knowledge in biology, life science, nanoscience and nanotechnology, materials science and engineering.
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