Bayassi-Jakowicka Martyna, Lietzau Grazyna, Czuba Ewelina, Steliga Aleksandra, Waśkow Monika, Kowiański Przemysław
Department of Anatomy and Neurobiology, Faculty of Medicine, Medical University of Gdańsk, 1 Dębinki Str., 80-211 Gdańsk, Poland.
Karolinska Institutet, Department of Clinical Science and Education, Södersjukhuset, Internal Medicine, Sjukhusbacken 10, 118 83 Stockholm, Sweden.
Int J Mol Sci. 2021 Sep 10;22(18):9806. doi: 10.3390/ijms22189806.
A growing body of evidence suggests that nucleus accumbens (NAc) plays a significant role not only in the physiological processes associated with reward and satisfaction but also in many diseases of the central nervous system. Summary of the current state of knowledge on the morphological and functional basis of such a diverse function of this structure may be a good starting point for further basic and clinical research. The NAc is a part of the brain reward system (BRS) characterized by multilevel organization, extensive connections, and several neurotransmitter systems. The unique role of NAc in the BRS is a result of: (1) hierarchical connections with the other brain areas, (2) a well-developed morphological and functional plasticity regulating short- and long-term synaptic potentiation and signalling pathways, (3) cooperation among several neurotransmitter systems, and (4) a supportive role of neuroglia involved in both physiological and pathological processes. Understanding the complex function of NAc is possible by combining the results of morphological studies with molecular, genetic, and behavioral data. In this review, we present the current views on the NAc function in physiological conditions, emphasizing the role of its connections, neuroplasticity processes, and neurotransmitter systems.
越来越多的证据表明,伏隔核(NAc)不仅在与奖励和满足相关的生理过程中发挥重要作用,而且在许多中枢神经系统疾病中也起作用。总结关于该结构如此多样功能的形态学和功能基础的当前知识状态,可能是进一步开展基础和临床研究的良好起点。伏隔核是脑奖赏系统(BRS)的一部分,其特点是具有多级组织、广泛的连接和多个神经递质系统。伏隔核在脑奖赏系统中的独特作用源于:(1)与其他脑区的层级连接;(2)发育良好的形态学和功能可塑性,可调节短期和长期突触增强及信号通路;(3)多个神经递质系统之间的协作;(4)神经胶质在生理和病理过程中所起的支持作用。通过将形态学研究结果与分子、遗传和行为数据相结合,有可能理解伏隔核的复杂功能。在这篇综述中,我们阐述了当前关于伏隔核在生理条件下功能的观点,强调了其连接、神经可塑性过程和神经递质系统的作用。