TURNOVER OF SUBSTANCES IN THE OUTFLOW PATHWAY OF THE EYE
眼睛流出通道中的物质周转
基本信息
- 批准号:3263909
- 负责人:
- 金额:$ 15.62万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:1988
- 资助国家:美国
- 起止时间:1988-03-01 至 1991-11-30
- 项目状态:已结题
- 来源:
- 关键词:carbohydrate structure chemical structure function chromatography electron microscopy enzyme biosynthesis enzyme mechanism fluoresceins glaucoma human tissue intraocular aqueous flow intraocular pressure lysozyme membrane activity microscopy organ culture phagocytosis radiotracer spectrometry tissue /cell culture trabecular meshwork
项目摘要
The precise mechanism by which aqueous outflow is regulated is
not known but interactions between the cells of the trabecular
meshwork, their underlying collagen beams and other
extracellular substances (including glycosaminoglycans) may play
an important role. These cells, given their phagocytic properties,
are capable of removing debris or particles in the anterior
chamber that become trapped in the pores of the meshwork,
thereby affecting intraocular pressure. A change in the metabolic
state of these cells due to the effects of aging, drugs, hormones,
environment or other influences may lead to an altered turnover
of endogenous and foreign substances and decrease aqueous
outflow facility. The goal of the proposed research is to evaluate
the role of phagosome/lysosome-mediated events of the
trabecular cells in regulating agueous outflow facility.
Trabecular cells obtained from human, monkey and bovine eyes
will be maintained in culture. The rate of phagocytosis by these
cells of various radiolabeled particles including lens material, red
blood cells and protein-laden latex spheres will be determined.
The trabecular cell surface components involved in particle
recognition and ingestin will be identified by cell surface
radiolabeling and by radio-iodinated and fluorscein-labeled lectin
binding studies. Chemical modification of the trabecular cell
surface or the addition of various substances to the trabecular
cells prior to or concomitant with phagocytosis may provide
insights regarding factors that effect particle recognition and
ingestion. The kinetics of particle degradation by the lysosomal
enzymes will be examined as well as the effect of phagocytosis on
the synthesis and release of these enzymes from the cells. The
lysosomal enzymes may also play an important role in the
turnover of material endogenous to the trabecular meshwork and
thus contribute to the regulation of intraocular pressure. Enzyme
activities and biochemical properties of lysosomal enzymes from
human trabecular tissue excised from normal and glaucomatous
eyes will be compared. In addition, studies are proposed to
investigate the biochemical properties of lysosomal enzymes in
trabecular cells and to determine factors that influence their
cellular and extracellular localization. The mechanism by which
these enzymes are targeted to lysosomes and extracellular fluids
will be investigated by determining the types of carbohydrate
structure on the lysosomal enzymes from trabecular cells. The
localization and biochemical properties of lysosomal enzymes in
cultured trabecular cells will also be evaluated after treatment
with experimental agents that are known to affect intraocular
pressure.
调控水流出的精确机制是
项目成果
期刊论文数量(0)
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ARNOLD L MILLER其他文献
ARNOLD L MILLER的其他文献
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{{ truncateString('ARNOLD L MILLER', 18)}}的其他基金
TURNOVER OF SUBSTANCES IN THE OUTFLOW PATHWAY OF THE EYE
眼睛流出通道中的物质周转
- 批准号:
3263908 - 财政年份:1988
- 资助金额:
$ 15.62万 - 项目类别:
TURNOVER OF SUBSTANCES IN THE OUTFLOW PATHWAY OF THE EYE
眼睛流出通道中的物质周转
- 批准号:
3263905 - 财政年份:1988
- 资助金额:
$ 15.62万 - 项目类别:
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