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牛磺酸对涡虫运动的刺激作用:多巴胺受体途径的作用

Taurine stimulation of planarian motility: a role for the dopamine receptor pathway.

作者信息

Livengood Elisa J, Fong Robyn A M V, Pratt Angela M, Alinskas Veronika O, Van Gorder Grace, Mezzio Michael, Mulligan Margaret E, Voura Evelyn B

机构信息

Division of Environmental and Renewable Resources, State University of New York (SUNY) at Morrisville, Morrisville, New York, United States.

Department of Math and Science, Dominican University, Orangeburg, New York, United States.

出版信息

PeerJ. 2024 Dec 6;12:e18671. doi: 10.7717/peerj.18671. eCollection 2024.

Abstract

Taurine, a normal dietary component that is found in many tissues, is considered important for a number of physiological processes. It is thought to play a particular role in eye development and in the maturation of both the muscular and nervous systems, leading to its suggested use as a therapeutic for Alzheimer's and Parkinson's diseases. Taurine increases metabolism and has also been touted as a weight loss aid. Due to its possible benefits to health and development, taurine is added as a supplement to a wide array of products, including infant formula and energy drinks. Despite its pervasive use as a nutritional additive and implied physiological actions, there is little consensus on how taurine functions. This is likely because, mechanistically, taurine has been demonstrated to affect multiple metabolic pathways. Simple models and straightforward assay systems are required to make headway in understanding this complexity. We chose to begin this work using the planarian because these animals have basic, well-understood muscular and nervous systems and are the subjects of many well-tested assays examining how their physiology is influenced by exposure to various environmental, nutritional, and therapeutic agents. We used a simple behavioral assay, the planarian locomotor velocity test (pLmV), to gain insight into the stimulant properties of taurine. Using this assay, we observed that taurine is a mild stimulant that is not affected by sugars or subject to withdrawal. We also provide evidence that taurine makes use of the dopamine D1 receptor to mediate this stimulant effect. Given the pervasiveness of taurine in many commercial products, our findings using the planarian system provide needed insight into the stimulant properties of taurine that should be considered when adding it to the diet.

摘要

牛磺酸是一种常见的膳食成分,存在于许多组织中,被认为对许多生理过程都很重要。人们认为它在眼睛发育以及肌肉和神经系统的成熟过程中发挥着特殊作用,因此有人建议将其用作治疗阿尔茨海默病和帕金森病的药物。牛磺酸能促进新陈代谢,还被吹捧为一种减肥辅助剂。由于其对健康和发育可能有益,牛磺酸被添加到多种产品中作为补充剂,包括婴儿配方奶粉和能量饮料。尽管牛磺酸作为营养添加剂被广泛使用且具有潜在的生理作用,但关于它的作用机制却几乎没有共识。这可能是因为,从机制上讲,牛磺酸已被证明会影响多种代谢途径。需要简单的模型和直接的检测系统来在理解这种复杂性方面取得进展。我们选择使用涡虫来开展这项研究,因为这些动物具有基本的、人们已经了解的肌肉和神经系统,并且是许多经过充分测试的检测的对象,这些检测考察了它们的生理机能如何受到各种环境、营养和治疗剂的影响。我们使用了一种简单的行为检测方法,即涡虫运动速度测试(pLmV),来深入了解牛磺酸的刺激特性。通过这个检测,我们观察到牛磺酸是一种温和的兴奋剂,不受糖分影响,也不会产生戒断反应。我们还提供了证据表明牛磺酸利用多巴胺D1受体来介导这种刺激作用。鉴于牛磺酸在许多商业产品中普遍存在,我们使用涡虫系统的研究结果为牛磺酸的刺激特性提供了必要的见解,在将其添加到饮食中时应予以考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89ab/11627082/13fd0ec63c26/peerj-12-18671-g001.jpg

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