NEUROTROPHINS IN CORTICAL DEVELOPMENT AND COMPLETION
NEUROTROPHINS IN CORTICAL DEVELOPMENT AND COMPLETION
批准号:
2711199
负责人:
DONALD C LO
金额:
$20.19万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-07-01 至 2000-06-30
中文摘要
点击翻译按钮获取中文摘要
英文摘要
DESCRIPTION: In the mammalian visual system, neuronal activity exerts a
powerful influence on the development of circuits required for normal
vision. Specific forms of visual experience during early life, such as
monocular deprivation, lead to irrevocable changes in the cortex's ability
to process visual information. Several theories for the role of activity in
cortical development propose that inputs from the lateral geniculate nucleus
(LGN) compete, in an activity-dependent manner, for limiting quantities of
some factor present in developing cortex. The overall goal of the proposed
research is to determine whether neurotrophins fulfill the criteria
necessary for them to be these factors. A fundamental requirement for
neurotrophins to function in this context is that their release be regulated
by neuronal activity. In the first series of experiments, sensitive
bioassays will be combined with a new method for extracting neurotrophins
from slices to address this issue. The next series of experiments will
determine whether local augmentation or depletion of specific neurotrophins
rescues or replicates the effects of monocular shifts in ocular dominance,
and the preservation of orientation selectivity. To assess these effects, a
new method for local delivery of neurotrophins, based on neurotrophin-coated
latex microspheres, will be combined with the final group of experiments, a
combination of short-term cultures of brain slices, particle-mediated gene
transfer, and manipulations of neurotrophin levels will be used to assess
the interactions between neurotrophins and neuronal activity in modifying
dendritic arbors in layer 4. Taken together, these experiments should
provide critical tests of the role of neurotrophins in cortical development.
This in turn could lead to the design of rational therapies for amblyopia
and other disorders involving congenital or trauma-induced failures in
growth of cortical circuits.
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