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Immunohistochemical Characterization of PepT1 and Ghrelin in Gastrointestinal Tract of Zebrafish: Effects of Spirulina Vegetarian Diet on the Neuroendocrine System Cells After Alimentary Stress

机译:斑马鱼胃肠道中PepT1和Ghrelin的免疫组织化学表征:螺旋藻素食饮食对食物应激后神经内分泌系统细胞的影响

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摘要

Gastrointestinal function in vertebrates is influenced by stressors, such as fasting and refeeding, different types of diet and hormonal factors. The aim of this paper was to analyze the effect of a Spirulina (Arthrospira platensis) diet, a microalga known for its nutraceutical properties, on the gastrointestinal tract of zebrafish (Danio rerio) regarding expression of oligopeptide transporter 1 (PepT1) and ghrelin (GHR). Food deprivation and refeeding was investigated to elucidate expression of PepT1 and GHR at a gastrointestinal level and the zebrafish compensatory mechanism. PepT1 is responsible for absorbing di- and tripeptides through a brush border membrane of intestinal mucosa. GHR is a brain-gut peptide in fish and mammals, stimulating growth hormone secretion and regulating appetite. Samples were taken after 2 and 5 days of specimen fasting, and 2 and 5 days of refeeding with Sera Spirulina tabs, in which the major constituent is Spirulina sp. (50.2% protein). Morphological and immunohistochemical analysis of PepT1 and GHR were carried out. Control specimen intestinal tract showed normal morphology of the digestive tract. Fasting caused fold structural changes and intestinal lumen constriction. Immunohistochemical analysis showed a PepT1 level reduction after fasting and an increase after refeeding, reaching very high levels after 5 days, compared to controls. GHR levels increased after food deprivation and gradually decreased after refeeding. Increased expression of PepT1 in refeeding fish suggests a compensatory physiological mechanism, as does the increase in GHR levels in fasting fish followed by a reduction after refeeding. A compensatory mechanism may be induced by fasting and refeeding and by a higher protein Spirulina diet. The microalga, for its nutraceutical properties, is an excellent candidate for animal breeding and human diet.
机译:脊椎动物的胃肠功能受应激因素的影响,例如禁食和重新喂养,不同类型的饮食和荷尔蒙因素。本文的目的是分析螺旋藻(Arthrospira platensis)饮食(一种以营养价值闻名的微藻)对斑马鱼(Danio rerio)胃肠道的寡肽转运蛋白1(PepT1)和生长素释放肽(GHR)表达的影响)。研究了食物剥夺和重新喂养以阐明胃肠道水平和斑马鱼补偿机制的PepT1和GHR的表达。 PepT1负责通过肠粘膜的刷状缘膜吸收二肽和三肽。 GHR是鱼类和哺乳动物的脑肠肽,可刺激生长激素分泌并调节食欲。禁食2天和5天后以及重新喂食2天和5天后,用螺旋藻标签进行采样,其中主要成分是螺旋藻。 (50.2%蛋白质)。对PepT1和GHR进行了形态学和免疫组化分析。对照标本的肠道显示出正常的消化道形态。空腹引起皱褶结构改变和肠腔收缩。免疫组织化学分析显示,与对照组相比,禁食后PepT1水平降低,而在重新喂养后PepT1水平升高,在5天后达到非常高的水平。食物缺乏后,GHR水平升高,而重新喂养后,GHR水平逐渐降低。补饲鱼中PepT1表达的增加暗示了一种补偿性的生理机制,空腹鱼中GHR水平的升高随后又是补饲后的降低。禁食和再喂食以及高蛋白螺旋藻饮食可能会引起补偿机制。微藻具有营养价值,是动物育种和人类饮食的极佳候选者。

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