Biomedical Engineering Department, University of Houston, 3517 Cullen Blvd, Houston, TX 77204, USA.
Division of Materials Science, Graduate School of Science and Technology, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma 630-0192, Nara, Japan.
Int J Mol Sci. 2023 Jan 23;24(3):2280. doi: 10.3390/ijms24032280.
Advancing the understanding of the relationship between perinatal nicotine addiction and the reward mechanism of the brain is crucial for uncovering and implementing new treatments for addiction control and prevention. The mesolimbic pathway of the brain, also known as the reward pathway, consists of two main areas that regulate dopamine (DA) and addiction-related behaviors. The ventral tegmental area (VTA) releases DA when stimulated, causing the propagation of neuronal firing along the pathway. This ends in the release of DA into the extracellular space of the nucleus accumbens (NAc), which is directly modulated by the uptake of DA. Much research has been conducted on the effects of nicotine addiction, but little research has been conducted concerning nicotine addiction and the mesolimbic pathway regarding maturation due to the small brain size. In this study, we apply our novel microstimulation experimental system to rat pups that have been perinatally exposed to nicotine. By using our self-fabricated photo-stimulation (PS) device, we can stimulate the VTA and collect dialysate, which is then used to estimate DA released into the NAc. The proposed platform has demonstrated the potential to monitor neural pathways as the pups mature.
深入了解围产期尼古丁成瘾与大脑奖励机制之间的关系,对于揭示和实施新的成瘾控制和预防治疗方法至关重要。大脑的中脑边缘通路,也称为奖励通路,由两个主要区域组成,调节多巴胺 (DA) 和与成瘾相关的行为。腹侧被盖区 (VTA) 在受到刺激时释放 DA,导致沿着通路的神经元放电传播。这最终导致 DA 释放到伏隔核 (NAc) 的细胞外空间,而 DA 的摄取直接调节 NAc。已经有很多关于尼古丁成瘾影响的研究,但由于大脑体积小,关于尼古丁成瘾和中脑边缘通路与成熟度的关系的研究很少。在这项研究中,我们将我们的新型微刺激实验系统应用于围产期接触尼古丁的大鼠幼崽。通过使用我们自制的光刺激 (PS) 设备,我们可以刺激 VTA 并收集透析液,然后用它来估计释放到 NAc 的 DA。所提出的平台已经证明了在幼崽成熟过程中监测神经通路的潜力。