Benoy Amrita, Dasgupta Ananya, Sajikumar Sreedharan
Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, 117 597, Singapore.
Neurobiology/Aging Program, Life Sciences Institute (LSI), National University of Singapore, Singapore, 117 456, Singapore.
Exp Brain Res. 2018 Apr;236(4):919-931. doi: 10.1007/s00221-018-5187-5. Epub 2018 Jan 31.
The hippocampus is a critical brain region for the formation of declarative memories. While social memory had long been attributed to be a function of the hippocampus, it is only of late that the area CA2 of the hippocampus was demarcated as essential for social memory formation. In addition to this distinct role, CA2 possesses unique molecular, structural and physiological characteristics compared to the other CA regions-CA1 and CA3, and the dentate gyrus (DG). CA2 pyramidal neurons are positioned at a location between CA1 and CA3, receiving inputs from CA3 and DG, in addition to forming a powerful disynaptic circuit with direct input from the entorhinal cortical layer II neurons. CA2 also receives direct inputs from the hypothalamic regions and displays a unique expression pattern for receptors for neuromodulators. The location, inputs, and molecular signatures of the area CA2 point to the possibility that CA2 serves as a modulatory gateway that processes information from the entorhinal cortex and CA3, before relaying them onto CA1, the major output of the hippocampus. This review discusses recent findings regarding plasticity and neuromodulation in the CA2 region of the hippocampus, and how this may have the potential to influence plasticity in connecting circuits, and thereby memory and behaviour.
海马体是形成陈述性记忆的关键脑区。虽然社会记忆长期以来一直被认为是海马体的一项功能,但直到最近海马体的CA2区才被划定为对社会记忆形成至关重要。除了这一独特作用外,与其他CA区域(CA1和CA3)以及齿状回(DG)相比,CA2具有独特的分子、结构和生理特征。CA2锥体神经元位于CA1和CA3之间的位置,除了与内嗅皮层II层神经元的直接输入形成强大的双突触回路外,还接收来自CA3和DG的输入。CA2还接收来自下丘脑区域的直接输入,并显示出神经调质受体的独特表达模式。CA2区的位置、输入和分子特征表明,CA2可能作为一个调节性网关,在将来自内嗅皮层和CA3的信息传递到海马体的主要输出CA1之前,对这些信息进行处理。本综述讨论了关于海马体CA2区可塑性和神经调节的最新发现,以及这如何可能影响连接回路中的可塑性,从而影响记忆和行为。