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小鼠瘦素抵抗机制的新见解。

New insights in leptin resistance mechanisms in mice.

机构信息

Department of Physiology, Monash Obesity and Diabetes Institute, Monash University, Clayton, VIC 3800, Australia.

出版信息

Front Neuroendocrinol. 2015 Oct;39:59-65. doi: 10.1016/j.yfrne.2015.09.004. Epub 2015 Sep 25.

Abstract

Leptin resistance is one of the main challenges of obesity. To date, two levels of resistance have been identified, first a decreased rate of leptin uptake into the brain and secondly a diminished central response to leptin. New findings have identified the mechanisms of leptin transport and demonstrated that it can be rescued in obesity, but it did not overcome the problem of central resistance. Alteration in the actions of leptin following diet-induced obesity (DIO) appears to be a multifactorial condition. Several phosphatases are inhibiting leptin signaling pathways in a pathological way. Besides, hypothalamic inflammation alters the neuronal circuits that control metabolism. Recent studies describing both mechanisms (inhibition of leptin signaling and inflammation), have provided key insights to potential new targets for treatment. However, recent data showing that DIO mice may conserve a cellular and physiological response to endogenous leptin, highlights the need to redefine the concept of "leptin resistance".

摘要

瘦素抵抗是肥胖的主要挑战之一。迄今为止,已经确定了两种抵抗水平,首先是瘦素进入大脑的速度降低,其次是对瘦素的中枢反应减弱。新的发现确定了瘦素转运的机制,并证明在肥胖症中可以挽救它,但它并没有克服中枢抵抗的问题。饮食诱导肥胖(DIO)后瘦素作用的改变似乎是一种多因素的情况。几种磷酸酶以病理方式抑制瘦素信号通路。此外,下丘脑炎症改变了控制代谢的神经元回路。最近描述这两种机制(瘦素信号转导和炎症的抑制)的研究为潜在的新治疗靶点提供了关键的见解。然而,最近的数据表明,DIO 小鼠可能保留了对内源性瘦素的细胞和生理反应,这凸显了重新定义“瘦素抵抗”概念的必要性。

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