课题基金 / 基金详情

NEUROMORPHOLOGY AND SUBCELLULAR STRUCTURE IN AGING

NEUROMORPHOLOGY AND SUBCELLULAR STRUCTURE IN AGING
衰老过程中的神经形态和亚细胞结构
批准号:
3746079
负责人:
DEAN E HILLMAN
金额:
$0.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:

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中文摘要
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英文摘要
The long-term objective of this research project is to determine what pivotal factors are responsible for the aging process in the nervous system. Given that one of the most critical events in aging is the continuous death and deafferentation of neurons, we will address factors leading to this demise. Cell death has been attributed to excitotoxicity resulting in self-destruction due to an overloading of free cytosolic calcium. The hypothesis to be tested is that the amount and localization of molecular substructure of plasma membranes and endoplasmic reticulum is altered in aging processes. This study proposed to evaluate morphometric parameters of Purkinje cell dendritic architecture for membrane channels and calcium sequestering organelles for differences between animal groups. Values recorded from normal animals will be compared to those for an aged rat syndrome model (AS), an age accelerated syndrome model (AAS) and acute cell death models. In the first part of the study, we will localize morphometrically the immunolabeled calcium influx sites on dendritic compartments to determine whether there are shifts in the location and the relative number of these channels between preparations. Labelling of P channels with antibodies will show the distribution and density of these channels. Three-dimensional analysis of dendrites will be performed to quantitate physiological results for free calcium distribution (Project Ia) into compartments for comparison with the P channel distribution over the dendrites. In the second part of the study, we will localize intracellular calcium sequestering sites and possible release zones associated with specific compartments of the endoplasmic reticulum. Dendrites altered by excitotoxins, or accelerated aging will be compared to those from aged rats to determine how the intracellular membrane parameters and location of channels and sequestering macromolecules may be altered within each model system. The results obtained from morphological studies will be evaluated together with physiological and biochemical analyses for factors leading to cell death or pruning of connections.
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MORPHOCHEMISTRY OF CEREBELLAR BRAINSTEM NEURONS AND CIRCUITS
MORPHOCHEMISTRY OF CEREBELLAR BRAINSTEM NEURONS AND CIRCUITS
MORPHOCHEMISTRY OF CEREBELLAR BRAINSTEM NEURONS AND CIRCUITS
MORPHOCHEMISTRY OF CEREBELLAR BRAINSTEM NEURONS AND CIRCUITS