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肥胖小鼠的空腹诱导的下丘脑弓状核神经元激活减少与高瘦素血症和瘦素敏感性增加有关。

Reduced fasting-induced activation of hypothalamic arcuate neurons is associated with hyperleptinemia and increased leptin sensitivity in obese mice.

机构信息

Institute of Veterinary Physiology and Zurich Centre of Human Integrative Physiology, University of Zurich, Zurich, Switzerland.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2010 Aug;299(2):R632-41. doi: 10.1152/ajpregu.00674.2009. Epub 2010 Jun 10.

Abstract

Fasting increases c-Fos expression in neuropeptide Y (NPY) neurons of the hypothalamic arcuate nucleus (ARC) in lean, but not in hyperleptinemic mice with late-onset obesity (LOO). Although obesity is associated with leptin resistance, we hypothesized that under fasting conditions, leptin sensitivity might be restored and that hyperleptinemia may counteract the neuronal response to fasting. We investigated whether the reduced fasting response of ARC neurons in LOO is paralleled by an increase in leptin sensitivity, as measured by leptin-induced STAT-3 phosphorylation. To assess leptin's role in the modulation of the fasting-induced ARC activation, we investigated c-Fos responses and hormone and metabolite levels in hyperleptinemic diet-induced obese (DIO) and in leptin-deficient ob/ob mice. Leptin induced a stronger STAT-3 phosphorylation in fasted LOO and lean mice than in ad libitum-fed animals. Similar to LOO, hyperleptinemic DIO mice showed no c-Fos response after fasting, while ob/ob mice showed a stronger response than lean control mice. Mimicking hyperleptinemia by repeated leptin injections in lean mice during fasting attenuated the fasting-induced c-Fos expression. Our findings indicate that high leptin levels prevent the fasting-induced activation of ARC neurons in mice. Moreover, leptin sensitivity is dynamic in obese subjects and depends on the feeding status. During short-term increases in leptin sensitivity, e.g., during fasting, leptin signaling appears to be effective, even in hyperleptinemic obesity. As reflected by the blockade of the fasting-induced ARC activation, fasting seems to interfere with the responsiveness of the ARC to signals related to the status of energy intake.

摘要

禁食会增加瘦素正常的、发生迟发性肥胖(LOO)的小鼠下丘脑弓状核(ARC)中神经肽 Y(NPY)神经元的 c-Fos 表达,但不会增加瘦素水平升高的肥胖小鼠的 c-Fos 表达。尽管肥胖与瘦素抵抗有关,但我们假设在禁食状态下,瘦素敏感性可能会恢复,而高瘦素血症可能会抵消禁食对神经元的反应。我们研究了 ARC 神经元在 LOO 中禁食反应的降低是否与瘦素敏感性的增加平行,如瘦素诱导的 STAT-3 磷酸化来衡量。为了评估瘦素在调节禁食诱导的 ARC 激活中的作用,我们研究了高瘦素血症诱导的肥胖(DIO)和瘦素缺乏型 ob/ob 小鼠中 c-Fos 反应以及激素和代谢物水平。与 LOO 相似,禁食后,高脂饮食诱导肥胖的瘦素水平升高的 DIO 小鼠和瘦素正常的小鼠中,瘦素诱导的 STAT-3 磷酸化比自由进食的动物更强。与 LOO 相似,高瘦素血症的 DIO 小鼠在禁食后没有表现出 c-Fos 反应,而 ob/ob 小鼠的反应比瘦素正常的对照小鼠更强。在禁食期间,通过重复给瘦素正常的小鼠注射瘦素来模拟高瘦素血症,会减弱禁食诱导的 c-Fos 表达。我们的研究结果表明,高瘦素水平可防止 ARC 神经元在小鼠中发生禁食诱导的激活。此外,肥胖患者的瘦素敏感性是动态的,取决于进食状态。在瘦素敏感性的短期增加期间,例如禁食期间,瘦素信号似乎是有效的,即使在高瘦素血症肥胖中也是如此。正如禁食诱导的 ARC 激活的阻断所反映的那样,禁食似乎会干扰 ARC 对与能量摄入状态相关的信号的反应能力。

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