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揭示多巴胺、一氧化碳和血红素加氧酶在神经调节和认知中的相互作用。

Unraveling the Interplay of Dopamine, Carbon Monoxide, and Heme Oxygenase in Neuromodulation and Cognition.

机构信息

Department of Chemistry and Center for Diagnostics and Therapeutics, Georgia State University, Atlanta, Georgia 30303, United States.

出版信息

ACS Chem Neurosci. 2024 Feb 7;15(3):400-407. doi: 10.1021/acschemneuro.3c00742. Epub 2024 Jan 12.

DOI:10.1021/acschemneuro.3c00742
PMID:38214656
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10853931/
Abstract

The dopaminergic system plays important roles in neuromodulation, including prominent roles in complex neurological functions such as cognition, reward, motivation, and memory. Understandably, the highly complex nature of such physiological functions means that their regulation is intertwined with other signaling pathways, as has been demonstrated by numerous studies. Contrary to its public perception of being poisonous at all concentrations, carbon monoxide (CO) is produced endogenously from heme degradation by heme oxygenase (HO) as part of the physiological process of red blood cell turnover. Physiological concentrations of CO can reach high micromolar ranges in the hemoglobin bound form. Low-dose CO has shown therapeutic effects in numerous animal models, including traumatic brain injury via engaging various hemoprotein targets. As such, the HO-CO axis has been shown to offer beneficial effects in organ protection, anti-inflammation, and neuroprotection, among many others. Further, a large number of publications have shown the interactions among CO, HO, and the dopaminergic system. In this review, we critically examine such experimental evidence in a holistic fashion and in the context of a possible dopamine-HO-CO signaling axis. We hope that this Perspective will stimulate additional investigations into the molecular connectivity related to this possible axis and open doors to the development of novel therapeutics that impact the dopaminergic system.

摘要

多巴胺能系统在神经调节中发挥着重要作用,包括在认知、奖励、动机和记忆等复杂神经功能中发挥突出作用。可以理解的是,这种生理功能的高度复杂性意味着它们的调节与其他信号通路交织在一起,这已经被许多研究证明。与人们普遍认为的一氧化碳(CO)在所有浓度下都是有毒的观点相反,CO 是由血红素氧合酶(HO)从血红素降解中产生的,是红细胞更替的生理过程的一部分。在血红蛋白结合形式下,CO 的生理浓度可达到高微摩尔范围。低剂量 CO 在包括创伤性脑损伤在内的许多动物模型中表现出治疗效果,通过与各种血红素蛋白靶标结合来实现。因此,HO-CO 轴已被证明在器官保护、抗炎和神经保护等方面具有有益作用。此外,大量出版物已经表明 CO、HO 和多巴胺能系统之间的相互作用。在这篇综述中,我们以整体的方式并在可能的多巴胺-HO-CO 信号轴的背景下批判性地检查了这些实验证据。我们希望这一观点将激发对这个可能的轴相关分子连接的进一步研究,并为影响多巴胺能系统的新型治疗方法的开发打开大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6a5/10853931/44b5364d6d19/cn3c00742_0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6a5/10853931/44b5364d6d19/cn3c00742_0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6a5/10853931/44b5364d6d19/cn3c00742_0001.jpg

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