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多巴胺能系统通过D1受体对新生肉仔鸡甘氨酸诱导的摄食减少的介导作用。

Mediatory role of the dopaminergic system through D1 receptor on glycine-induced hypophagia in neonatal broiler-type chickens.

作者信息

Rahimi Jamal, Zendehdel Morteza, Khodadadi Mina

机构信息

Department of Basic Sciences, Faculty of Veterinary Medicine, University of Tehran, 14155-6453, Tehran, Iran.

出版信息

Amino Acids. 2021 Mar;53(3):461-470. doi: 10.1007/s00726-021-02963-3. Epub 2021 Mar 1.

Abstract

The present study aimed to examine the mediatory role of the dopaminergic system in the food intake induced by intracerebroventricular (ICV) injection of glycine in neonatal 3-h feed-deprived (FD3) meat-type chickens. In the first and second experiments, birds were ICV injected using low and high doses of glycine (50, 100 and 200 nmol) and strychnine (50, 100 and 200 nmol), respectively. In experiments 3-9, the behaviorally subeffective doses of dopamine (10 nmol), 6-OHDA (2.5 nmol), SCH 23,390 (D1 antagonist; 5 nmol), AMI-193 (D2 antagonist; 5 nmol), NGB2904 (D3 antagonist; 6.4 nmol) and L-741,742 (D4 antagonist; 6 nmol) were, respectively, co-administrated with glycine (200 nmol) in FD3 5-day-old chicks to investigate possible interplay of dopamine receptors in glycine-induced feeding behavior. Then, cumulative food intake based on body weight percentage (%BW) was determined at 30, 60 and 120 min after the injection. According to the results, dopamine significantly boosted the hypophagia induced by glycine at all-time intervals (p ≤ 0.001). These results combined with the previous findings suggest an interplay between dopamine and glycine in chicken's brain in which D1 receptor-mediated food intake induced by glycine.

摘要

本研究旨在探讨多巴胺能系统在新生3小时禁食(FD3)肉用型雏鸡脑室内注射甘氨酸诱导的食物摄入中的中介作用。在第一个和第二个实验中,分别给雏鸡脑室内注射低剂量和高剂量的甘氨酸(50、100和200纳摩尔)和士的宁(50、100和200纳摩尔)。在实验3至9中,将行为亚有效剂量的多巴胺(10纳摩尔)、6-羟基多巴胺(2.5纳摩尔)、SCH 23,390(D1拮抗剂;5纳摩尔)、AMI-193(D2拮抗剂;5纳摩尔)、NGB2904(D3拮抗剂;6.4纳摩尔)和L-741,742(D4拮抗剂;6纳摩尔)分别与甘氨酸(200纳摩尔)共同注射到FD3 5日龄雏鸡体内,以研究多巴胺受体在甘氨酸诱导的摄食行为中的可能相互作用。然后,在注射后30、60和120分钟测定基于体重百分比(%BW)的累积食物摄入量。根据结果,多巴胺在所有时间间隔均显著增强了甘氨酸诱导的摄食减少(p≤0.001)。这些结果与先前的发现相结合,表明多巴胺和甘氨酸在鸡脑中存在相互作用,其中D1受体介导甘氨酸诱导的食物摄入。

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