Biserova N M, Mustafina A R, Malakhov V V
Faculty of Biology, Moscow State University, 119991, Moscow, Russia.
Dokl Biol Sci. 2021 Jan;496(1):17-20. doi: 10.1134/S0012496621010026. Epub 2021 Feb 26.
The excretory system ultrastructure and immunocytochemistry have been investigated in the plerocercoid Pyramicocephalus phocarum. It has been shown that P. phocarum has independent terminal cells, cyrtocytes. The entire canal system is a single undivided syncytium, which includes nephridial funnels of the terminal tubules, and peripheral and central canals. The nephridial funnel and cyrtocyte form a filtration complex of the protonephridial type. In the caudal region, several peripheral canals open into a deep fold of the tegument, the urinary bladder. The excretory pores are separated from the tegument by annular septate desmosomes. There are no cell junctions inside the excretory system. The presence of the F-actin ring and the expression of non-synaptic serotonin in the collar area have been detected in cyrtocytes by immunocytochemistry methods.
对海豹叠盘绦虫裂头蚴的排泄系统超微结构和免疫细胞化学进行了研究。结果表明,海豹叠盘绦虫具有独立的终末细胞,即曲细胞。整个管道系统是一个单一的、未分隔的合胞体,包括终末小管的肾漏斗以及外周和中央管道。肾漏斗和曲细胞形成原肾型的滤过复合体。在尾部区域,几条外周管道通向体壁的一个深褶皱,即膀胱。排泄孔通过环形分隔桥粒与体壁分离。排泄系统内部没有细胞连接。通过免疫细胞化学方法在曲细胞中检测到了F-肌动蛋白环的存在以及在颈部区域非突触性5-羟色胺的表达。