Laboratory of Exercise Biochemistry and Neuroendocrinology, Faculty of Health and Sport Sciences, University of Tsukuba, Tsukuba, Ibaraki, 305-8574, Japan.
Sports Neuroscience Division, Advanced Research Initiative for Human High Performance (ARIHHP), University of Tsukuba, Tsukuba, Ibaraki, 305-8574, Japan.
Sci Rep. 2018 Jul 11;8(1):10469. doi: 10.1038/s41598-018-28462-2.
A physically active lifestyle is associated with better health in body and mind, and it is urgent that supporting agents for such lifestyles be developed. In rodents, voluntary locomotor activity as an active physical behavior may be mediated by dopaminergic neurons (DNs). Thiamine phosphate esters can stimulate DNs, and we thus hypothesized that thiamine tetrahydrofurfuryl disulfide (TTFD), a thiamine derivative, promotes locomotor activity via DNs in rats. Acute i.p. administration of TTFD enhanced rat locomotor activity in a normal cage. In vivo microdialysis revealed that TTFD-enhanced locomotor activity was synchronized with dopamine release in the medial prefrontal cortex (mPFC). Antagonism of the dopamine D1 receptor, but not D2 receptor, in the mPFC fully suppressed TTFD-enhanced locomotor activity. Finally, we found a TTFD dose-dependent increase in voluntary wheel running. Our findings demonstrate that DNs in the mPFC mediates TTFD-enhanced locomotor activity, suggesting the potential of TTFD to induce active physical behavior.
积极的生活方式与身心健康息息相关,因此迫切需要开发支持这种生活方式的辅助剂。在啮齿动物中,作为一种主动的身体行为的自愿运动活动可能由多巴胺能神经元(DNs)介导。磷酸噻唑酯可以刺激 DNs,因此我们假设噻唑呋喃四氢二硫化物(TTFD),一种噻唑衍生物,通过大鼠中的 DNs 促进运动活动。TTFD 急性腹腔内给药可增强正常笼中的大鼠运动活动。体内微透析显示,TTFD 增强的运动活动与内侧前额叶皮层(mPFC)中多巴胺的释放同步。mPFC 中多巴胺 D1 受体而非 D2 受体的拮抗作用完全抑制了 TTFD 增强的运动活动。最后,我们发现自愿轮跑的 TTFD 剂量依赖性增加。我们的研究结果表明,mPFC 中的 DNs 介导了 TTFD 增强的运动活动,这表明 TTFD 具有诱导主动身体行为的潜力。