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首页> 外文期刊>Cells tissues organs >Effect of Melatonin on Telocytes in the Seminal Vesicle of the Soay Ram: An Immunohistochemical, Ultrastructural and Morphometrical Study
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Effect of Melatonin on Telocytes in the Seminal Vesicle of the Soay Ram: An Immunohistochemical, Ultrastructural and Morphometrical Study

机译:褪黑素对肥皂胚芽结晶囊肿的鸟谱细胞的影响:免疫组织化学,超微结构和形态学研究

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Telocytes (TCs) are a special type of interstitial cell with characteristic cellular processes that are described in many organs. The current study aimed to investigate TCs in seminal vesicles of the Soay ram responding to melatonin treatment during the nonbreeding season by conventional immunohistochemical stains, and to detect the ultrastructural and morphometrical changes of TCs. TCs in the control group showed a broad range of staining affinity and also reacted positively to CD117/c-kit, CD34, desmin, S-100 protein, and progesterone and estrogen receptors alpha, while after melatonin treatment a strong reaction against these 6 antibodies was recorded. Electron microscopically, TCs in the control group were characterized by a small cell body with distinct long cytoplasmic extensions called telopodes (Tps). Tps had alternation of the thin segment (podomers) and dilated segments (podoms), in which the latter accommodate mitochondria, rough endoplasmic reticulum and caveolae. TCs and their Tps were interconnected by homo-and heterocellular junctions and form a wide network to communicate between different cell types. Tps showed close contact with immune cells, progenitor stem cells, smooth muscle cells and other interstitial cells. Melatonin caused a significant increase in the number of TCs, length of Tps, and number and diameter of secretory vesicles. Also, the melatonin-treated group showed exaggerated secretory activity in the form of a massive release of secretory vesicles from Tps. Moreover, Tps showed an increase in their contact with blood and lymphatic capillaries, nerve endings and Schwann cells. In addition, the shedding of secretory structures (exosomes, ectosomes, and multivesicular bodies) was greater from Tps, which were involved in paracrine signaling in the melatonin-treated group. The length and ramifications of Tps together with the intercellular junctions and the releasing of shed vesicles or exosomes assumed an essential role of TCs in intercellular signaling and coordination. On the basis of their distribution and morphology, we investigated whether the different locations of TCs could be associated with different roles. (C) 2016 S. Karger AG, Basel
机译:鸟束(TCS)是一种特殊类型的间质细胞,具有在许多器官中描述的特征细胞过程。目前的研究旨在通过常规免疫组织化学污渍在非贫化季节期间对皂蛋白治疗的糖蛋白治疗进行研究,检测TCS的超微结构和形态学变化,研究SOAIN RAM的溶解质酵母癌中的TCS。对照组中的TCS显示出广泛的染色亲和力,并且还对CD117 / c-kit,CD34,Desmin,S-100蛋白和孕酮和雌激素受体α以及孕激素和雌激素受体α-反应,而褪黑素处理过这6抗体的强烈反应被记录。电子显微镜,对照组中的TCS的特征在于小细胞体,具有不同长的细胞质延伸,称为焦点(TPS)。 TPS具有薄段(PODOMERS)和扩张的区段(刺孢子)的交替,其中后者适应线粒体,粗糙的内质网和Caveolae。 TCS及其TPS由同源和异孔隙连接互连,并形成宽网络以在不同的细胞类型之间进行通信。 TPS显示与免疫细胞,祖细胞,平滑肌细胞和其他间质细胞密切接触。褪黑激素导致TCS的数量显着增加,TPS的长度和分泌囊泡的数量和直径。此外,褪黑激素治疗组以来自TPS的分泌囊泡的大量释放的形式显示出夸大的分泌活性。此外,TPS与血液和淋巴细胞毛细血管,神经末梢和施旺细胞的接触增加。此外,从TPS的分泌结构(外肌肉,外体和多猪体)的脱落从褪黑激素治疗组中参与旁静脉信号传导。 TPS与细胞间隙的长度和后果和脱落的囊泡或外泌体的释放在细胞间信号传导和协调中具有基本作用。在其分布和形态的基础上,我们调查了TCS的不同位置是否可能与不同的角色相关联。 (c)2016年S. Karger AG,巴塞尔

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