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MICROHETEROGENEITY OF HUMAN ALPHA-FETOPROTEIN

MICROHETEROGENEITY OF HUMAN ALPHA-FETOPROTEIN
人类 α-胎蛋白的微观异质性
批准号:
3322035
负责人:
BROOKS ALLEN KEEL
金额:
$13.36万
依托单位国家:
美国
项目类别:
财政年份:
1987
资助国家:
美国
项目状态:
已结题
起止时间:
1987-09-01 至 1995-01-31

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中文摘要
翻译
甲胎蛋白(AFP)是一种糖蛋白,产生于高
英文摘要
Alpha fetoprotein (AFP) is a glycoprotein which is produced in high amounts during pregnancy. Biochemically, AFP exhibits charge lectin microheterogeneity. Results from our laboratory have shown that the microheterogeneous nature of AFP changes markedly during normal development. However, it is currently not certain if these findings reflect a physiological change in AFP function or merely indicate an alteration in the biochemistry of this glycoprotein. AFP isolated from term core blood, although not mitogenic itself, can enhance the mitogenic activity of growth factors and may function to modulate cell proliferation during fetal development. No mitogenic activity was observed in midgestation amniotic fluid, which also contains increased levels of AFP. Thus, AFP proliferative activity may vary with fetal development. The relationship between developmental changes in AFP microheterogeneity and biological activity is of major interest. In the series of experiments proposed herein, we will attempt to characterize the developmental aspects of AFP microheterogeneity and biological activity. We will use the monkey as a model to carefully define these ontogenic changes and to compliment and extend data obtained from the use of human fetal material, which is obviously limited. The charge and lectin microheterogeneity of AFP will be evaluated in the species throughout gestation. Monkey fetal tissue will be removed at various stages of gestation to allow the characterization of the production of AFP by these tissues. Additionally, we will use both the monkey and the human to elucidate the relationships between charge and lectin microheterogeneity and the expression of AFP proliferative activity. Finally, the biochemical basis for AFP microheterogeneity and biological activity will be elucidated. The results of these studies will greatly add to our knowledge of the biochemical and physiological importance of AFP to normal fetal development.
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SMALL INSTRUMENTATION GRANT
MINORITY HIGH SCHOOL STUDENT RESEARCH APPRENTICE PROGRAM
MICROHETEROGENEITY OF HUMAN ALPHAFETOPROTEIN
MICROHETEROGENEITY OF HUMAN ALPHAFETOPROTEIN
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