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Obesity as a Neuroendocrine Reprogramming

机译:肥胖作为神经内分泌重编程

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摘要

Obesity represents a health problem resulting from a broken balance between energy intake and energy expenditure leading to excess fat accumulation. Elucidating molecular and cellular pathways beyond the establishment of obesity remains the main challenge facing the progress in understanding obesity and developing its treatment. Within this context, this opinion presents obesity as a reprogrammer of selected neurological and endocrine patterns in order to adapt to the new metabolic imbalance represented by obesity status. Indeed, during obesity development, the energy balance is shifted towards increased energy storage, mainly but not only, in adipose tissues. These new metabolic patterns that obesity represents require changes at different cellular and metabolic levels under the control of the neuroendocrine systems through different regulatory signals. Therefore, there are neuroendocrine changes involving diverse mechanisms, such as neuroplasticity and hormonal sensitivity, and, thus, the modifications in the neuroendocrine systems in terms of metabolic functions fit with the changes accompanying the obesity-induced metabolic phenotype. Such endocrine reprogramming can explain why it is challenging to lose weight once obesity is established, because it would mean to go against new endogenous metabolic references resulting from a new “setting” of energy metabolism-related neuroendocrine regulation. Investigating the concepts surrounding the classification of obesity as a neuroendocrine reprogrammer could optimize our understanding of the underlying mechanisms and, importantly, reveal some of the mysteries surrounding the molecular pathogenesis of obesity, as well as focusing the pharmacological search for antiobesity therapies on both neurobiology synaptic plasticity and hormonal interaction sensitivity.
机译:肥胖是由能量摄入和能量消耗之间的破裂平衡导致的健康问题,导致过量脂肪积累。除了建立肥胖之外,阐明的分子和细胞途径仍然是了解肥胖和发展治疗的进展所面临的主要挑战。在这种情况下,此意见将肥胖呈现为选定的神经和内分泌模式的重编程,以便适应肥胖状态所代表的新代谢不平衡。实际上,在肥胖发展中,能量平衡转向增加的能量储存,主要是脂肪组织。这些新的代谢模式,肥胖症代表需要在通过不同调节信号的神经内分泌系统的控制下不同细胞和代谢水平的变化。因此,存在涉及不同机制的神经内分泌变化,例如神经塑性和激素敏感性,因此,在代谢功能方面,神经内分泌系统的修饰适合伴随肥胖诱导的代谢表型的变化。这种内分泌重新编程可以解释为什么一旦建立肥胖,就会挑战减肥,因为它意味着违背新的内源性代谢参考,这是由能量代谢相关神经内分泌调节的新“设定”产生的新内源性代谢参考。调查围绕肥胖分类的概念作为神经内分泌中分泌成本可以优化我们对潜在机制的理解,重要的是揭示了一些围绕肥胖分子发病机制的一些神秘,以及将药理学搜索对神经生物学突触的抗菌疗法的重点介绍可塑性和荷尔蒙相互作用敏感性。

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