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Excessive Sensory Stimulation during Development Alters Neural Plasticity and Vulnerability to Cocaine in Mice

机译:发育过程中过度的感官刺激改变了小鼠可卡因的神经可塑性和脆弱性

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摘要

Early life experiences affect the formation of neuronal networks, which can have a profound impact on brain function and behavior later in life. Previous work has shown that mice exposed to excessive sensory stimulation during development are hyperactive and novelty seeking, and display impaired cognition compared with controls. In this study, we addressed the issue of whether excessive sensory stimulation during development could alter behaviors related to addiction and underlying circuitry in CD-1 mice. We found that the reinforcing properties of cocaine were significantly enhanced in mice exposed to excessive sensory stimulation. Moreover, although these mice displayed hyperactivity that became more pronounced over time, they showed impaired persistence of cocaine-induced locomotor sensitization. These behavioral effects were associated with alterations in glutamatergic transmission in the nucleus accumbens and amygdala. Together, these findings suggest that excessive sensory stimulation in early life significantly alters drug reward and the neural circuits that regulate addiction and attention deficit hyperactivity. These observations highlight the consequences of early life experiences and may have important implications for children growing up in today’s complex technological environment.
机译:早期的生活经历会影响神经网络的形成,这可能对以后的大脑功能和行为产生深远的影响。先前的研究表明,在发育过程中受到过度感官刺激的小鼠活动过度,寻求新奇,与对照组相比,认知能力受损。在这项研究中,我们解决了在发育过程中过度的感觉刺激是否会改变与CD-1小鼠上瘾和潜在电路有关的行为的问题。我们发现可卡因的增强特性在暴露于过度感觉刺激的小鼠中显着增强。此外,尽管这些小鼠表现出的过度活动随着时间的推移变得更加明显,但它们却显示了可卡因诱导的运动敏化的持续性受损。这些行为影响与伏隔核和杏仁核中谷氨酸能传递的改变有关。总之,这些发现表明,在早期生活中过度的感觉刺激会显着改变药物奖励和调节成瘾和注意力缺陷多动症的神经回路。这些观察结果凸显了早期生活经历的后果,并且可能对当今复杂的技术环境中的儿童成长产生重要影响。

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