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蝇蕈醇诱导的海马体兴奋对记忆辨别能力的经验依赖性影响

Experience-Dependent Effects of Muscimol-Induced Hippocampal Excitation on Mnemonic Discrimination.

作者信息

Johnson Sarah A, Turner Sean M, Lubke Katelyn N, Cooper Tara L, Fertal Kaeli E, Bizon Jennifer L, Maurer Andrew P, Burke Sara N

机构信息

Department of Neuroscience, McKnight Brain Institute, University of Florida, Gainesville, FL, United States.

Department of Clinical and Health Psychology, University of Florida, Gainesville, FL, United States.

出版信息

Front Syst Neurosci. 2019 Jan 10;12:72. doi: 10.3389/fnsys.2018.00072. eCollection 2018.

Abstract

Memory requires similar episodes with overlapping features to be represented distinctly, a process that is disrupted in many clinical conditions as well as normal aging. Data from humans have linked this ability to activity in hippocampal CA3 and dentate gyrus (DG). While animal models have shown the perirhinal cortex is critical for disambiguating similar stimuli, hippocampal activity has not been causally linked to discrimination abilities. The goal of the current study was to determine how disrupting CA3/DG activity would impact performance on a rodent mnemonic discrimination task. Rats were surgically implanted with bilateral guide cannulae targeting dorsal CA3/DG. In Experiment 1, the effect of intra-hippocampal muscimol on target-lure discrimination was assessed within subjects in randomized blocks. Muscimol initially impaired discrimination across all levels of target-lure similarity, but performance improved on subsequent test blocks irrespective of stimulus similarity and infusion condition. To clarify these results, Experiment 2 examined whether prior experience with objects influenced the effect of muscimol on target-lure discrimination. Rats that received vehicle infusions in a first test block, followed by muscimol in a second block, did not show discrimination impairments for target-lure pairs of any similarity. In contrast, rats that received muscimol infusions in the first test block were impaired across all levels of target-lure similarity. Following discrimination tests, rats from Experiment 2 were trained on a spatial alternation task. Muscimol infusions increased the number of spatial errors made, relative to vehicle infusions, confirming that muscimol remained effective in disrupting behavioral performance. At the conclusion of behavioral experiments, fluorescence hybridization for the immediate-early genes and was used to determine the proportion of neurons active following muscimol infusion. Contrary to expectations, muscimol increased neural activity in DG. An additional experiment was carried out to quantify neural activity in naïve rats that received an intra-hippocampal infusion of vehicle or muscimol. Results confirmed that muscimol led to DG excitation, likely through its actions on interneuron populations in hilar and molecular layers of DG and consequent disinhibition of principal cells. Taken together, our results suggest disruption of coordinated neural activity across the hippocampus impairs mnemonic discrimination when lure stimuli are novel.

摘要

记忆需要将具有重叠特征的相似事件清晰地表现出来,这一过程在许多临床病症以及正常衰老过程中都会受到干扰。来自人类的数据已将这种能力与海马体CA3区和齿状回(DG)的活动联系起来。虽然动物模型表明嗅周皮层对于区分相似刺激至关重要,但海马体活动与辨别能力之间尚未建立因果联系。本研究的目的是确定破坏CA3/DG活动将如何影响啮齿动物记忆辨别任务的表现。通过手术给大鼠双侧植入靶向背侧CA3/DG的引导套管。在实验1中,在随机区组内对海马内注射蝇蕈醇对目标-诱饵辨别能力的影响进行了受试者内评估。蝇蕈醇最初损害了所有目标-诱饵相似水平下的辨别能力,但在随后的测试区组中,无论刺激相似性和注射条件如何,表现都有所改善。为了阐明这些结果,实验2研究了对物体的先前经验是否会影响蝇蕈醇对目标-诱饵辨别能力的作用。在第一个测试区组接受载体注射、在第二个区组接受蝇蕈醇注射的大鼠,对任何相似性的目标-诱饵对都没有表现出辨别障碍。相比之下,在第一个测试区组接受蝇蕈醇注射的大鼠在所有目标-诱饵相似水平下都受到了损害。在辨别测试之后,对实验2中的大鼠进行空间交替任务训练。与载体注射相比,蝇蕈醇注射增加了空间错误的数量,证实蝇蕈醇在破坏行为表现方面仍然有效。在行为实验结束时,使用针对立即早期基因的荧光杂交来确定蝇蕈醇注射后活跃神经元的比例。与预期相反,蝇蕈醇增加了DG中的神经活动。进行了一项额外实验,以量化接受海马内注射载体或蝇蕈醇的未经验大鼠的神经活动。结果证实,蝇蕈醇可能通过其对DG门区和分子层中间神经元群体的作用以及随后对主细胞的去抑制作用导致DG兴奋。综上所述,我们的结果表明,当诱饵刺激是新异的时,海马体中协调神经活动的破坏会损害记忆辨别能力。

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