THE FOREBRAIN CHOLINERGIC SYSTEM IN HEALTH AND DISEASE
THE FOREBRAIN CHOLINERGIC SYSTEM IN HEALTH AND DISEASE
批准号:
3107783
负责人:
DONALD L PRICE
金额:
$75.26万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1984
资助国家:
美国
项目状态:
已结题
起止时间:
1984-04-01 至 1987-06-30
关键词:
中文摘要
点击翻译按钮获取中文摘要
英文摘要
Several lines of evidence suggest that large cholinergic neurons of the
forebrain cholinergic (Ch) system, which project to amygdala, hippocampus,
and neocortex, play a role in the neural mechanisms of electroencephalogram
(EEG) activation, learning, and memory. Moreover, it has been suggested
that impairments in the Ch system may be responsible for some of the memory
dysfunctions in aging and that severe cholinergic deficiencies may be
important in the pathogenesis of the dementia of Alzheimer's disease (AD)
and senile dementia of the Alzheimer's type (SDAT). If we are to
understand the roles of this system in the geriatric memory dysfunction and
dementia of AD, knowledge of the organization and functional properties of
the Ch system is essential. To clarify the roles of the Ch system in
health, aging, and disease, we will use immunocytochemical and
histochemical methods, computer-assisted morphometric studies, retrograde
and anterograde transport techniques, [3H] ligand receptor autoradiography,
assays of transmitter-specific enzymes, unit recordings, microstimulation,
EEG, and a variety of behavioral tests to assess the Ch system in: normal
rats and nonhuman primates; animals with selective lesions of the Ch
system; and nonhuman primates showing age-associated functional and
structural abnormalities, including memory dysfunction and neuritic
plaques. Lesioned animals and aged animals will be assessed as potential
models for evaluating pharmacological strategies to improve the functions
of the Ch system. These multidisciplinary approaches, which are designed
to clarify the structure and functions of the Ch system, are essential if
we are to understand the contributions of cholinergic and other
transmitter-specific abnormalities in the clinical manifestations of aging
and AD/SDAT. Only by understanding the normal and abnormal biology of
these processes can we expect to design rational approaches to deal with
these neurological disorders that affect so many individuals in our society.
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