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颞叶癫痫锂-匹罗卡品大鼠模型中对失配新奇性的反应受损:与海马单胺能输入的相关性。

Impaired Response to Mismatch Novelty in the Li-Pilocarpine Rat Model of TLE: Correlation with Hippocampal Monoaminergic Inputs.

作者信息

Nascimento Carlos, Guerreiro-Pinto Vasco, Pawlak Seweryn, Caulino-Rocha Ana, Amat-Garcia Laia, Cunha-Reis Diana

机构信息

Unidade de Fisiologia Clínica e Translacional, Instituto de Medicina Molecular João Lobo Antunes, Faculdade de Medicina, Universidade de Lisboa, Av. Prof. Egas Moniz, 1649-028 Lisboa, Portugal.

BioISI-Biosystems & Integrative Sciences Institute, Faculdade de Ciências, Universidade de Lisboa, Campo Grande, 1749-016 Lisboa, Portugal.

出版信息

Biomedicines. 2024 Mar 12;12(3):631. doi: 10.3390/biomedicines12030631.

Abstract

Novelty detection, crucial to episodic memory formation, is impaired in epileptic patients with mesial temporal lobe resection. Mismatch novelty detection, that activates the hippocampal CA1 area in humans and is vital for memory reformulation and reconsolidation, is also impaired in patients with hippocampal lesions. In this work, we investigated the response to mismatch novelty, as occurs with the new location of known objects in a familiar environment, in the Li-pilocarpine rat model of TLE and its correlation with hippocampal monoaminergic markers. Animals showing spontaneous recurrent seizures () for at least 4 weeks at the time of behavioural testing showed impaired spatial learning in the radial arm maze, as described. Concurrently, rats displayed impaired exploratory responses to mismatch novelty, yet novel object recognition was not significantly affected in rats. While the levels of serotonin and dopamine transporters were mildly decreased in hippocampal membranes from rats, the levels on the norepinephrine transporter, tyrosine hydroxylase and dopamine-β-hydroxylase were enhanced, hinting for an augmentation, rather than an impairment in noradrenergic function in animals. Altogether, this reveals that mismatch novelty detection is particularly affected by hippocampal damage associated to the Li-pilocarpine model of epilepsy 4-8 weeks after the onset of and suggests that deficits in mismatch novelty detection may substantially contribute to cognitive impairment in MTLE. As such, behavioural tasks based on these aspects of mismatch novelty may prove useful in the development of cognitive therapy strategies aiming to rescue cognitive deficits observed in epilepsy.

摘要

新颖性检测对于情景记忆的形成至关重要,在接受内侧颞叶切除术的癫痫患者中会受损。失配新颖性检测在人类中会激活海马体CA1区,对记忆重构和巩固至关重要,在海马体损伤的患者中也会受损。在这项研究中,我们在颞叶癫痫的锂-匹罗卡品大鼠模型中研究了对失配新颖性的反应,即熟悉环境中已知物体的新位置所引发的反应,及其与海马体单胺能标记物的相关性。如前所述,在行为测试时出现至少4周自发性反复癫痫发作()的动物在放射状臂迷宫中表现出空间学习受损。同时,大鼠对失配新颖性的探索反应受损,但在大鼠中新颖物体识别未受到显著影响。虽然大鼠海马体膜中血清素和多巴胺转运体水平略有下降,但去甲肾上腺素转运体、酪氨酸羟化酶和多巴胺-β-羟化酶水平升高,这表明动物的去甲肾上腺素能功能增强而非受损。总之,这表明失配新颖性检测在癫痫发作4至8周后特别受锂-匹罗卡品癫痫模型相关的海马体损伤影响,并表明失配新颖性检测缺陷可能在很大程度上导致颞叶内侧癫痫的认知障碍。因此,基于失配新颖性这些方面的行为任务可能在旨在挽救癫痫中观察到的认知缺陷的认知治疗策略的开发中证明是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7903/10968540/a0eed27b552f/biomedicines-12-00631-g001.jpg

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