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A repeated amphetamine model of impaired attention in schizophrenia.

机译:精神分裂症中注意力受损的重复苯丙胺模型。

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摘要

Cognitive impairments, including deficits in attention processing, represent major and central elements of schizophrenic symptoms. First- and second-generation antipsychotic drugs can effectively mitigate the florid symptoms of psychosis. However, treating schizophrenia's cognitive deficits remains problematic and has met with limited success. Evidence indicates that the basal forebrain cholinergic system (BFCS) is an essential component of the neuronal circuitry involved in mediating attention processing - an important aspect of cognition. This thesis is based on the core hypothesis that cholinergic dysregulation contributes to the cognitive impairments associated with schizophrenia. Using a repeated-amphetamine (AMPH) rat model of schizophrenia, the following main hypotheses are tested: (1) Repeated, escalating AMPH administration, followed by 'AMPH-challenges' at previously innocuous doses, results in performance impairments on a task that measures sustained attention. (2) The consequences of repeated-AMPH administration and subsequent challenge dosing in task-performing animals include dysregulated cortical cholinergic transmission. (3) In AMPH-pretreated animals performing a sustained attention task; sub-chronic, low-dose administration of antipsychotic drugs will attenuate performance impairments.;The present findings provide evidence for aberrant regulation of the BFCS and impaired sustained attention processing in a repeated-AMPH model of schizophrenia. Specifically, pretreatment with AMPH resulted in attenuated performance associated cortical cholinergic transmission, This effect was evident only under conditions of task performance, and was not apparent in passive, non-performing animals. Cholinergic abnormalities were found to actually precede task onset, indicating that they contributed to rather than resulted from impaired performance. Furthermore, low doses of commonly prescribed first- and second-generation antipsychotic drugs were found to attenuate these attentional impairments, although the effects on cortical cholinergic transmission in task-performing animals remain speculative. Theses data are consistent with the hypothesis that the basal forebrain cholinergic system represents a principle component in the neuronal dysregulation mediating schizophrenia's cognitive impairments. Expanding this hypothesis, these data elucidate the dynamic nature of this dysregulation in response to different stimulus environments. Collectively, these experiments demonstrate the potential usefulness of this procedure for modeling aspects of impaired cognition in schizophrenia and may serve as a starting point for pre-clinical efforts aimed at discovering and developing novel, pro-cognitive drugs to improve the cognitive deficits of schizophrenia.
机译:认知障碍,包括注意力加工不足,是精神分裂症症状的主要和中心因素。第一代和第二代抗精神病药可以有效缓解精神病的发作性症状。然而,治疗精神分裂症的认知缺陷仍然存在问题,并且取得了有限的成功。有证据表明,基底前脑胆碱能系统(BFCS)是参与介导注意过程的神经元回路的重要组成部分-认知的重要方面。本论文基于核心假设,即胆碱能失调是导致精神分裂症相关的认知障碍的基础。使用精神分裂症的重复安非他明(AMPH)大鼠模型,测试了以下主要假设:(1)重复,逐步增加AMPH给药,然后以先前无害的剂量进行“ AMPH挑战”,导致一项测量任务的性能受损持续关注。 (2)在执行任务的动物中重复施用AMPH以及随后进行挑战给药的后果包括皮质胆碱能传递失调。 (3)在经过AMPH预处理的动物中执行持续注意任务;亚慢性,小剂量抗精神病药物的给药将减轻性能损害。;本研究结果提供了对BFCS异常调节和精神分裂症反复AMPH模型中持续注意力加工受损的证据。具体来说,用AMPH预处理导致与皮质胆碱能传递有关的性能减弱。这种作用仅在任务表现的条件下才明显,而在被动的,不良的动物中则不明显。发现胆碱能异常实际上是在任务发作之前发生的,这表明胆碱能异常是导致而不是由于表现受损所致。此外,尽管对执行任务的动物对皮质胆碱能传递的影响仍然是推测性的,但发现低剂量的常用第一和第二代抗精神病药可以减轻这些注意力障碍。这些数据与以下假设相一致:基础前脑胆碱能系统代表介导精神分裂症认知障碍的神经元失调的主要成分。扩展这一假设,这些数据阐明了这种失调的动态性质,以响应不同的刺激环境。总的来说,这些实验证明了该程序对精神分裂症认知能力受损的各个方面进行建模的潜在有用性,并且可以作为临床前研究的起点,旨在发现和开发新型的前认知药物以改善精神分裂症的认知缺陷。

著录项

  • 作者

    Martinez, Vicente.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;
  • 关键词

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