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首页> 外文期刊>The Journal of Experimental Biology >Allatotropin-like peptide released by Malpighian tubules induces hindgut activity associated with diuresis in the Chagas disease vector Triatoma infestans (Klug)
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Allatotropin-like peptide released by Malpighian tubules induces hindgut activity associated with diuresis in the Chagas disease vector Triatoma infestans (Klug)

机译:Malpighian肾小管释放的类Allatotropin样肽在Chagas病媒Triatoma infestans(Klug)中诱导与利尿有关的后肠活性

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Haematophagous insects incorporate a large amount of blood with each meal, producing a big quantity of urine in a few hours to eliminate the excess water and Na(+). Malpighian tubules (MTs) have traditionally been seen as a system that responds to neuroendocrine stimulus. In a related paper, we demonstrated that MTs of Triatoma infestans produce an autonomous endocrine secretion of an allatotropin-like (AT-like) peptide. In the present study, we report a myostimulatory activity of AT at the level of the hindgut (HG), associated with endocrine mechanisms regulating post-prandial diuresis. Allatotropin induced an increase in frequency and intensity of peristaltic contractions at the level of the HG. The release of the HG content in MTs-HG in vitro preparations undergoing an osmotic shock occurred at different times, depending on the number of MTs present, and there was no release in treatments without MTs. The application of an AT-antiserum to MTs-HG preparations undergoing osmotic shock produced a delay or a long-term blockade of diuresis, depending on the antiserum dilution applied. Similar results were obtained when AT-antiserum was applied in vivo prior to blood intake, decreasing the volume of urine eliminated during the first 2 h. Our results allow us to assign a specific endocrine function to the AT-like peptide released by MTs that is linked to the elimination of urine after blood meals.
机译:食血性昆虫每顿饭都会吸收大量血液,在数小时内产生大量尿液,以消除多余的水和Na(+)。传统上,马尔皮基小管(MTs)被视为对神经内分泌刺激作出反应的系统。在相关的论文中,我们证明了Triatoma infestans的MTs产生了Allatotropin-like(AT-like)肽的自主内分泌分泌。在本研究中,我们报告了AT在后肠(HG)水平上的肌肉刺激活性,与调节餐后利尿的内分泌机制有关。阿拉托洛汀在HG水平引起蠕动收缩的频率和强度增加。 MTs-HG体外制剂中渗透性休克中HG含量的释放在不同时间发生,具体取决于存在的MT数,没有MTs的治疗中没有释放。根据抗血清稀释剂的不同,将AT-抗死皮素应用于经历渗透性休克的MTs-HG制剂会延迟或长期阻止利尿剂的产生。当在采血前在体内应用AT-抗死皮,减少头2小时内排出的尿量时,可获得类似的结果。我们的结果使我们能够为MTs释放的AT样肽分配特定的内分泌功能,该功能与餐后消除尿液有关。

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