首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Absence of system xc- in mice decreases anxiety and depressive-like behavior without affecting sensorimotor function or spatial vision
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Absence of system xc- in mice decreases anxiety and depressive-like behavior without affecting sensorimotor function or spatial vision

机译:小鼠中不存在xc-系统可减少焦虑和抑郁样行为,而不会影响感觉运动功能或空间视力

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There is considerable preclinical and clinical evidence indicating that abnormal changes in glutamalergic signaling underlie the development of mood disorders. Astrocytic glutamate dysfunction, in particular, has been recently linked with the pathogenesis and treatment of mood disorders, including anxiety and depression. System xc- is a glial cystine/glutamate antiporter that is responsible for nonvesicular glutamate release in various regions of the brain. Although system xc- is involved in glutamate signal transduction, its possible role in mediating anxiety or depressive-like behaviors is currently unknown. In the present study, we phenotyped adult and aged system xc- deficient mice in a battery of tests for anxiety and depressive-like behavior (open field, light/dal-lc test, elevated plus maze, novelty suppressed feeding, forced swim test, tail suspension test). Concomitantly, we evaluated the sensoriniotor function of system xc- deficient mice, using motor and sensorimotor based tests (rotarod, adhesive removal test, nest building test). Finally, due to the presence and potential functional relevance of system xc- in the eye, we investigated the visual acuity of system xc- deficient mice (optomotor test). Our results indicate that loss of system xc- does not affect motor or sensorimotor function, in either adult or aged mice, in any of the paradigms investigated. Similarly, loss of system xc- does not affect basic visual acuity, in either adult or aged mice. On the other hand, in the open field and light /dark tests, and forced swim and tail suspension tests respectively, we could observe significant anxiolytic and anticlepressive-like effects in system xc- deficient mice that in certain cases (light/dark, forced swim) were age-dependent. These findings indicate that, under physiological conditions, nonvesicular glutamate release via system xc- mediates aspects of higher brain function related to anxiety and depression, but does not influence sensorimotor function or spatial vision. As such, modulation of system xc- might constitute the basis of innovative interventions in mood disorders. (C) 2015 Elsevier Inc. All rights reserved.
机译:有大量的临床前和临床证据表明,谷氨酸能信号的异常改变是情绪障碍发展的基础。特别是最近,星形胶质细胞谷氨酸功能障碍与包括焦虑和抑郁在内的情绪障碍的发病机理和治疗有关。 System xc-是神经胶质胱氨酸/谷氨酸逆向转运蛋白,负责大脑各个区域的非囊状谷氨酸释放。尽管系统xc-参与谷氨酸信号转导,但目前尚不清楚其在介导焦虑或抑郁样行为中的可能作用。在本研究中,我们在一系列焦虑和抑郁样行为测试(空旷,光/ dal-lc测试,高架迷宫测试,新颖性抑制进食,强迫游泳测试,尾部悬挂测试)。同时,我们使用基于运动和感觉运动的测试(罗塔果蝇,粘胶去除测试,筑巢测试)评估了系统xc缺陷型小鼠的感觉刺激功能。最后,由于系统xc-在眼睛中的存在和潜在的功能相关性,我们研究了系统xc缺陷小鼠的视敏度(视运动测试)。我们的结果表明,在任何研究的范例中,成年或老年小鼠的系统xc-的丧失均不影响运动或感觉运动功能。同样,在成年或成年小鼠中,系统xc-的丧失也不影响基本的视敏度。另一方面,在开阔场和明暗测试中,以及分别在强迫游泳和尾部悬吊测试中,我们可以观察到在某些情况下,在某些情况下(明暗,强迫,游泳)与年龄有关。这些发现表明,在生理条件下,经由系统xc释放的非囊状谷氨酸可介导与焦虑和抑郁相关的高级脑功能,但不影响感觉运动功能或空间视力。这样,系统xc-的调制可能构成情绪障碍创新干预的基础。 (C)2015 Elsevier Inc.保留所有权利。

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