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White Matter Abnormalities in Schizophrenia

White Matter Abnormalities in Schizophrenia
精神分裂症的白质异常
批准号:
6548216
负责人:
KENNETH L DAVIS
金额:
$208.0万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-09-30 至 2006-07-31

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项目成果

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中文摘要
翻译
描述(由申请人提供):拟建的西奈山精神疾病神经科学中心(CCNMD)旨在高度专注于阐明白质、少突胶质细胞和髓磷脂在精神分裂症中的作用。这一建议是由越来越多的证据表明,在各种科学探索领域的精神分裂症白质异常。连通性的失败已被证明在精神分裂症中起作用。髓鞘形成和影响髓鞘形成的因素,如少突胶质细胞的功能,是可能深刻影响神经元连通性的关键过程,特别是考虑到少突胶质细胞的弥漫性分布和与精神分裂症有关的大脑区域的广泛分布。多种证据现在汇集到暗示少突胶质细胞和髓磷脂在精神分裂症。影像学和神经细胞化学证据、与脱髓鞘疾病的相似性、与年龄相关的白质变化、髓磷脂相关的基因异常以及在精神分裂症大脑中显示的少突胶质细胞形态异常,所有这些都有助于一个假设,即少突胶质功能障碍甚至死亡,以及随后髓磷脂维持和修复的异常,导致了精神分裂症综合征(详见概述和具体项目)。CCNMD将采用广泛的方法和专业知识,包括神经解剖学、神经影像学、分子生物学、分子遗传学、神经心理学、现象学、统计学和数据管理。CCNMD由4个核心组成:核心A:行政;核心B:临床;核心C: Brain Bank;核心D:数据管理与统计。CCNMD的项目包括:项目1将量化精神分裂症患者大脑中少突胶质细胞数量和空间分布的变化,重点关注皮质、丘脑和主要的白质区域。项目2是基于微阵列的发现,由Buxbaum博士的实验室发现,在一组相对治疗难治性患者的背外侧前额叶皮层中,6种髓磷脂相关基因的表达减少。项目3检查与髓鞘形成有关的基因,以确定影响蛋白质序列和表达的DNA序列变异,以评估其中一些变异是否与精神分裂症易感性有关。项目4将强大的神经成像技术——扩散张量成像(DTI)和磁化转移成像(MTI)——引入到精神分裂症白质的研究中。项目5将质子磁共振波谱(1mrs)应用于精神分裂症患者大脑的白质区域。
英文摘要
DESCRIPTION (provided by applicant): The proposed Mt. Sinai Conte Center for the Neuroscience of Mental Disorders (CCNMD) is designed to be a highly focused effort to elucidate the role of white matter, oligodendrocytes and myelin in schizophrenia. This proposal is informed by increasing evidence of white matter abnormalities in schizophrenia in a variety of areas of scientific exploration. A failure in connectivity has been demonstrated to have a role in schizophrenia. Myelination and those factors that affect myelination, such as the function of oligodendroglia, are critical processes that could profoundly affect neuronal connectivity, especially given the diffuse distribution of oligodendrocytes and the widespread distribution of brain regions that have been implicated in schizophrenia. Multiple lines of evidence now converge to implicate oligodendroglia and myelin in schizophrenia. Imaging and neurocytochemical evidence, similarities with demyelinating diseases, age-related changes in white matter, myelin-related gene abnormalities, and morphological abnormalities in the oligodendroglia demonstrated in schizophrenic brains, all contribute to a hypothesis that oligodendroglial dysfunction and even death, with subsequent abnormalities in myelin maintenance and repair, contribute to the schizophrenic syndrome (see overview and specific projects for detailed references). A broad set of methodologies and expertise will be brought to bear on the questions the CCNMD will pursue, including neuroanatomy, neuroimaging, molecular biology, molecular genetics, neuropsychology, phenomenology, statistics, and data management. The CCNMD is comprised of 4 Cores: Core A: Administrative; Core B: Clinical; Core C: Brain Bank; Core D: Data Management and Statistics. The projects of the CCNMD include: Project 1 which will quantify alterations in both numbers of and spatial distribution of oligodendroglia in the brains of schizophrenic patients, focusing on cortical, thalamic, and predominantly white matter areas. Project 2 is based on microarray findings by the laboratory of Dr. Buxbaum of decreased expression of 6 myelin-related genes in the dorsolateral prefrontal cortex of a subgroup of relatively treatment refractory patients. Project 3 examines genes involved in myelination for DNA sequence variation affecting protein sequence and expression in order to assess the possibility that some of these variants are involved in determining susceptibility to schizophrenia. Project 4 brings powerful neuroimaging techniques- diffusion tensor imaging (DTI) and magnetization transfer imaging (MTI)- to the study of white matter in schizophrenia. Project 5 applies proton magnetic resonance spectroscopy (1 MRS) to white matter areas in the brains of schizophrenic patients.
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