TAXOL PRODUCTION UTILIZING A NODULE CULTURE SYSTEM
TAXOL PRODUCTION UTILIZING A NODULE CULTURE SYSTEM
批准号:
3199550
负责人:
DAVID ELLIS
金额:
$14.73万
依托单位国家:
美国
项目类别:
财政年份:
1991
资助国家:
美国
项目状态:
已结题
起止时间:
1991-09-20 至 1994-08-31
关键词:
Conifera antineoplastics bioperiodicity bioreactors biotechnology cell differentiation cell type drug design /synthesis /production growth media high performance liquid chromatography immunocytochemistry indoleacetate mass spectrometry medicinal plants nuclear magnetic resonance spectroscopy paclitaxel photobiology plant extracts plant genetics tissue /cell culture
中文摘要
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英文摘要
Taxol, a diterpenoid extracted from tissues of the slow growing Taxus
brevifolia Pacific yew) tree, shows considerable promise as an anticancer
drug. However, a reliable large scale supply of taxol is not available.
Tissue culture of Taxus may provide an alternative supply. Unfortunately,
taxol, by binding to microtubules, is likely toxic to most cells; thus the
development of a microculture system for the high level production of taxol
may require the differentiation of cell types capable of partitioning the
toxic compound away from actively dividing cells. To achieve this, we
propose to develop a nodule culture system for Taxus based on work done
with other woody plants. Nodules are dense cell clusters which form, grow
and multiply as a cohesive unit. Nodules are particularly attractive for
taxol production as they display a high degree of both cellular and tissue
differentiation. Nodule cultures can theoretically serve as a production
system for taxol since the outer rapidly dividing cell layers maintain the
growth needed for biomass proliferation while the inner differentiated
cells provide an isolated location for taxol production. Nodule cultures
will also serve as a manipulatable model for studies of taxol biosynthesis.
We will investigate the conditions which affect nodule development, growth
and tissue HPLC taxane profiles. To understand the requirements taxol
production, immunocytological localization of taxanes within intact plants
and the seasonal environmental influences will be determined. Such
information will be used to deduce the conditions required for maximal
taxol synthesis in nodule cultures. The influence of batch and perfused
bioreactor systems on production will also be determined. Once the
development of a Taxus nodule system for enhanced taxol production is
accomplished, then it can be used to extend the research to the elucidation
of the enzymes and genes involved in taxol synthesis.
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TAXOL PRODUCTION UTILIZING A NODULE CULTURE SYSTEM
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批准号:3199549
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项目类别:
-
资助金额:$16.58万
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财政年份:1991
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负责人:DAVID ELLIS
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依托单位:
海外基金