A Study of Muscarinic Receptors in Brain Tissue Obtained Postmortem from Subjects with Schizophrenia
A Study of Muscarinic Receptors in Brain Tissue Obtained Postmortem from Subjects with Schizophrenia
批准号:
nhmrc : 209046
负责人:
Prof Brian Dean
金额:
$23.66万
依托单位国家:
澳大利亚
项目类别:
NHMRC Project Grants
财政年份:
2002
资助国家:
澳大利亚
项目状态:
已结题
起止时间:
2002-01-01 至 2004-12-31
中文摘要
这项提案中概述的研究将检查人脑某些区域的分子组成,并确定这些区域内的成分是否在精神分裂症受试者的组织中发生了变化。精神分裂症是一种严重的精神疾病,影响大约1%的澳大利亚人口,本提案中描述的研究旨在帮助了解疾病的原因和-或帮助开发治疗这种疾病的新药。该提案中概述的这项研究的目标是确定大脑中称为M受体的特定分子是否发生了变化。M受体是大脑中一种名为乙酰胆碱的化学物质与大脑中的神经细胞进行交流的一种方式。已知乙酰胆碱控制大脑的重要功能,如记忆、认知和学习,所有这些功能都被认为在精神分裂症中受到影响。重要的是,所有这些功能的控制都涉及毒碱受体,因此,这些受体的变化很可能会产生精神分裂症的一些症状。我们现在希望扩展我们的早期研究,这些研究表明精神分裂症患者的大脑中可能存在M受体的变化,以确定5个M受体中的哪一个受到疾病病理的影响。根据我们现有的数据,我们预测,这些研究将增加M受体在精神分裂症中发生变化的论点的份量,并提供针对这些受体的药物如何用于治疗疾病的重要信息。
英文摘要
The research outlined in this proposal will examine the molecular make up of certain regions of the human brain and determine if components within those regions are altered in tissue from subjects with schizophrenia. Schizophrenia is a serious psychiatric illness that affects approximately 1% of the Australian population and the research described in this proposal seeks to help understand the cause of the illness and-or to assist in the development of new drugs with which to treat the illness. The goal of the research outlined in this proposal is to determine if there are changes in specific molecules in the brain, termed muscarinic receptors. The muscarinic receptors are one way that a chemical in the brain called acetylcholine can communicate with the nerve cells in the brain. Acetylcholine is known to control important functions of the brain such as in memory, cognition and learning, all of these functions are thought to be affected in schizophrenia. Importantly, the control of all these functions involve muscarinic receptors and therefore, changes in those receptors could well produce some of the symptoms of schizophrenia. We now wish to extend our early studies which suggest there may be changes in muscarinic receptors in the brain of subjects with schizophrenia to determine which of the 5 muscarinic receptors are affected in which region of the brain by the pathology of the illness. From our existing data, we would predict that these studies will add weight to the argument that muscarinic receptors are altered in schizophrenia and provide vital information as to how drugs that target these receptors may be used to treat the illness.
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