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Hyperphagia and obesity in OLETF rats lacking CCK-1 receptors

机译:缺乏CCK-1受体的OLETF大鼠的食欲亢进和肥胖

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摘要

The brain–gut peptide cholecystokinin (CCK) inhibits food intake following peripheral or site directed central administration. Peripheral exogenous CCK inhibits food intake by reducing the size and duration of a meal. Antagonist studies have demonstrated that the actions of the exogenous peptide mimic those of endogenous CCK. Antagonist administration results in increased meal size and meal duration. The feeding inhibitory actions of CCK are mediated through interactions with CCK-1 receptors. The recent identification of the Otsuka–Long–Evans–Tokushima Fatty (OLETF) rat as a spontaneous CCK-1 receptor knockout model has allowed a more comprehensive evaluation of the feeding actions of CCK. OLETF rats become obese and develop non-insulin dependent diabetes mellitus (NIDDM). Consistent with the absence of CCK-1 receptors, OLETF rats do not respond to exogenous CCK. OLETF rats are hyperphagic and their increased food intake is characterized by a large increase in meal size with a decrease in meal frequency that is not sufficient to compensate for the meal size increase. Deficits in meal size control are evident in OLETF rats as young as 2 days of age. OLETF obesity is secondary to the increased food intake. Pair feeding to amounts consumed by intact control rats normalizes body weight, body fat and elevated insulin and glucose levels. Hypothalamic arcuate nucleus peptide mRNA expression in OLETF rats is appropriate to their obesity and is normalized by pair feeding. In contrast, pair fed and young pre-obese OLETF rats have greatly elevated dorsomedial hypothalamic (DMH) neuropeptide Y (NPY) mRNA expression. Elevated DMH NPY in OLETF rats appears to be a consequence of the absence of CCK-1 receptors. In intact rats NPY and CCK-1 receptors colocalize to neurons within the compact subregion of the DMH and local CCK administration reduces food intake and decreases DMH NPY mRNA expression. We have proposed that the absence of DMH CCK-1 receptors significantly contributes to the OLETF's inability to compensate for their meal size control deficit leading to their overall hyperphagia. Access to a running wheel and the resulting exercise normalizes food intake and body weight in OLETF rats. When given access to running wheels for 6 weeks shortly after weaning, OLETF rats do not gain weight to the same degree as sedentary OLETF rats and do not develop NIDDM. Exercise also prevents elevated levels of DMH NPY mRNA expression, suggesting that exercise exerts an alternative, non-CCK mediated, control on DMH NPY. The OLETF rat is a valuable model for characterizing actions of CCK in energy balance and has provided novel insights into interactions between exercise and food intake.
机译:脑肠肽胆囊收缩素(CCK)抑制外周或按部位定向中央给药后的食物摄入。外围外源性CCK通过减少进餐量和持续时间来抑制食物摄入。拮抗剂研究表明,外源肽的作用模仿内源CCK的作用。拮抗剂给药导致进餐量和进餐时间增加。 CCK的进食抑制作用是通过与CCK-1受体的相互作用介导的。 Otsuka–Long–Evans–Tokushima Fatty(OLETF)大鼠最近被鉴定为自发性CCK-1受体敲除模型,从而可以更全面地评估CCK的摄食行为。 OLETF大鼠变得肥胖,并发展出非胰岛素依赖型糖尿病(NIDDM)。与缺少CCK-1受体一致,OLETF大鼠对外源性CCK无反应。 OLETF大鼠食欲亢进,其进食量增加的特征是进餐量大幅增加,进餐频率降低,不足以弥补进餐量的增加。膳食大小控制的缺陷在2天大的OLETF大鼠中很明显。 OLETF肥胖是食物摄入增加的次要因素。配对喂养至完整对照大鼠消耗的量可使体重,体脂肪和胰岛素和葡萄糖水平升高。 OLETF大鼠下丘脑弓形核肽mRNA的表达适合于肥胖症,并通过配对喂养使其标准化。相比之下,成对喂养和年轻肥胖前期OLETF大鼠的背体下丘脑(DMH)神经肽Y(NPY)mRNA表达大大升高。 OLETF大鼠中DMH NPY升高似乎是缺乏CCK-1受体的结果。在完整的大鼠中,NPY和CCK-1受体共定位于DMH紧凑子区域内的神经元,局部CCK给药会减少食物摄入并降低DMH NPY mRNA表达。我们已经提出,缺乏DMH CCK-1受体会极大地导致OLETF无法补偿其进餐量控制不足,从而导致其整体食欲过高。可以进入跑轮并进行锻炼使OLETF大鼠的食物摄入和体重正常化。断奶后不久,如果连续六个星期接触运行轮,OLETF大鼠的体重不会增加到久坐的OLETF大鼠的体重,并且不会发育成NIDDM。锻炼还可以防止DMH NPY mRNA表达水平升高,表明锻炼对DMH NPY施加了另一种非CCK介导的控制。 OLETF大鼠是表征CCK在能量平衡中作用的有价值的模型,并为运动与食物摄入之间的相互作用提供了新颖的见解。

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  • 作者

    Moran, Timothy H; Bi, Sheng;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en
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