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虹鳟鱼中枢黑皮质素回路中的葡萄糖感知:一项形态学研究。

Sensing Glucose in the Central Melanocortin Circuits of Rainbow Trout: A Morphological Study.

作者信息

Otero-Rodiño Cristina, Rocha Ana, Sánchez Elisa, Álvarez-Otero Rosa, Soengas José L, Cerdá-Reverter José M

机构信息

Laboratorio de Fisioloxía Animal, Departamento de Bioloxía Funcional e Ciencias da Saúde, Facultade de Bioloxía and Centro de Investigación Mariña, Universidade de Vigo, Vigo, Spain.

Grupo Control de Ingesta, Consejo Superior de Investigaciones Científicas (IATS-CSIC), Departamento de Fisiología y Biotecnología de Peces, Instituto de Acuicultura de Torre de la Sal, Castellón, Spain.

出版信息

Front Endocrinol (Lausanne). 2019 Apr 18;10:254. doi: 10.3389/fendo.2019.00254. eCollection 2019.

Abstract

In mammals, glucosensing markers reside in brain areas known to play an important role in the control of food intake. The best characterized glucosensing mechanism is that dependent on glucokinase (GK) whose activation by increased levels of glucose leads in specific hypothalamic neurons to decreased or increased activity, ultimately leading to decreased food intake. In fish, evidence obtained in recent years suggested the presence of GK-like immunoreactive cells in different brain areas related to food intake control. However, it has not been established yet whether or not those neuronal populations having glucosensing capacity are the same that express the neuropeptides involved in the metabolic control of food intake. Therefore, we assessed through dual fluorescent hybridization the possible expression of GK in the melanocortinergic neurons expressing proopiomelanocortin (POMC) or agouti-related protein (AGRP). POMC and AGRP expression localized exclusively in the rostral hypothalamus, in the ventral pole of the lateral tuberal nucleus, the homolog of the mammalian arcuate nucleus. Hypothalamic GK expression confined to the ependymal cells coating the ventral pole of the third ventricle but some expression level occurred in the AGRP neurons. GK expression seems to be absent in the hypothalamic POMC neurons. These results suggest that AGRP neurons might sense glucose directly through a mechanism involving GK. In contrast, POMC neurons would not directly respond to glucose through GK and would require presynaptic inputs to sense glucose. Ependymal cells could play a critical role relying glucose metabolic information to the central circuitry regulating food intake in fish, especially in POMC neurons.

摘要

在哺乳动物中,葡萄糖感应标志物存在于已知在食物摄入控制中起重要作用的脑区。最具特征的葡萄糖感应机制是依赖葡萄糖激酶(GK)的机制,葡萄糖水平升高激活GK后,会导致特定下丘脑神经元的活动减少或增加,最终导致食物摄入量减少。在鱼类中,近年来获得的证据表明,在与食物摄入控制相关的不同脑区存在GK样免疫反应性细胞。然而,具有葡萄糖感应能力的神经元群体是否与表达参与食物摄入代谢控制的神经肽的神经元群体相同,尚未得到证实。因此,我们通过双重荧光杂交评估了GK在表达阿黑皮素原(POMC)或刺鼠相关蛋白(AGRP)的黑皮质素能神经元中的可能表达。POMC和AGRP表达仅定位于下丘脑前部,即外侧结节核腹侧极,相当于哺乳动物的弓状核。下丘脑GK表达局限于覆盖第三脑室腹侧极的室管膜细胞,但在AGRP神经元中也有一定表达水平。下丘脑POMC神经元中似乎不存在GK表达。这些结果表明,AGRP神经元可能通过涉及GK的机制直接感知葡萄糖。相比之下,POMC神经元不会通过GK直接对葡萄糖作出反应,而是需要突触前输入来感知葡萄糖。室管膜细胞可能在将葡萄糖代谢信息传递给调节鱼类食物摄入的中枢回路中发挥关键作用,尤其是在POMC神经元中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65ce/6482260/9e97655ee45a/fendo-10-00254-g0001.jpg

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