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Neuromodulation of metabolic functions: from pharmaceuticals to bioelectronics to biocircuits

机译:代谢功能的神经调节:从药物到生物电子学再到生物电路

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摘要

Neuromodulation of central and peripheral neural circuitry brings together neurobiologists and neural engineers to develop advanced neural interfaces to decode and recapitulate the information encoded in the nervous system. Dysfunctional neuronal networks contribute not only to the pathophysiology of neurological diseases, but also to numerous metabolic disorders. Many regions of the central nervous system (CNS), especially within the hypothalamus, regulate metabolism. Recent evidence has linked obesity and diabetes to hyperactive or dysregulated autonomic nervous system (ANS) activity. Neural regulation of metabolic functions provides access to control pathology through neuromodulation. Metabolism is defined as cellular events that involve catabolic and/or anabolic processes, including control of systemic metabolic functions, as well as cellular signaling pathways, such as cytokine release by immune cells. Therefore, neuromodulation to control metabolic functions can be used to target metabolic diseases, such as diabetes and chronic inflammatory diseases. Better understanding of neurometabolic circuitry will allow for targeted stimulation to modulate metabolic functions. Within the broad category of metabolic functions, cellular signaling, including the production and release of cytokines and other immunological processes, is regulated by both the CNS and ANS. Neural innervations of metabolic (e.g. pancreas) and immunologic (e.g. spleen) organs have been understood for over a century, however, it is only now becoming possible to decode the neuronal information to enable exogenous controls of these systems. Future interventions taking advantage of this progress will enable scientists, engineering and medical doctors to more effectively treat metabolic diseases.
机译:中央和周围神经回路的神经调节使神经生物学家和神经工程师共同开发先进的神经接口,以解码和概括神经系统中编码的信息。功能失调的神经元网络不仅有助于神经系统疾病的病理生理,而且还有助于许多代谢性疾病。中枢神经系统(CNS)的许多区域,尤其是下丘脑内的区域,都在调节新陈代谢。最近的证据表明,肥胖症和糖尿病与自主神经系统过度活跃或失调有关。代谢功能的神经调节通过神经调节提供了控制病理的途径。代谢被定义为涉及分解代谢和/或合成代谢过程的细胞事件,包括系统性代谢功能的控制以及细胞信号传导途径,例如免疫细胞释放细胞因子。因此,控制代谢功能的神经调节可用于靶向代谢疾病,例如糖尿病和慢性炎性疾病。更好地了解神经代谢回路将允许靶向刺激来调节代谢功能。在广泛的代谢功能类别中,CNS和ANS都调节细胞信号转导,包括细胞因子的产生和释放以及其他免疫过程。代谢器官(例如胰腺)和免疫器官(例如脾脏)的神经支配已经被理解了一个多世纪,但是,现在才有可能解码神经元信息以实现这些系统的外源控制。利用这一进展的未来干预措施将使科学家,工程学和医学博士能够更有效地治疗代谢性疾病。

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