课题基金 / 基金详情

DEVELOPMENT OF TISSUE THERMOGENESIS IN NEWBORN ANIMALS

DEVELOPMENT OF TISSUE THERMOGENESIS IN NEWBORN ANIMALS
新生动物组织生热的发育
批准号:
3317521
负责人:
NAOMI NEUFELD
金额:
$14.39万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1984
资助国家:
美国
项目状态:
已结题
起止时间:
1984-09-01 至 1989-02-28

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中文摘要
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英文摘要
The overall objectives of this project are threefold. First, characterization of the development of brown adipose tissue (BAT) metabolism in the fetus and newborn will be continued. Second, the mechanism whereby thyroid hormones influence BAT function and metabolism in the fetus and newborn will be clarified, and finally, the role that BAT plays in diet induced thermogenesis (DIT) in the newborn will be evaluated. Our specific aims are: 1) To characterize the maturation of BAT mitochondrial purine nucleotide binding, catecholamine receptors, and adenyl cyclase activity in fetal and newborn rabbits. 2) To determine the effect of changes in thyroid status on BAT cellular respiration, lipolysis, lipogenesis, mithochondrial purine nucleotide binding, catecholamine receptors and adenyl cyclase activity in the newborn rabbit. 3) To determine the effect of a single meal and the chronic ingestion of a high fat or carbohydrate diet on in vivo oxygen consumption, BAT temperature, BAT composition, BAT cellular respiration, lipolysis, lipogenesis, mitochondrial purine nucleotide binding, catecholamine receptors and adenyl cyclase activity in the newborn rabbit. 4) To determine the effect of the chronic ingestion of a high fat or carbohydrate diet on body composition and growth in the newborn rabbit. 5) To determine if BAT mediated DIT can be manipulated by either diet, feeding frequency or blocking agents in the newborn rabbit. The methods used will include the measurement of in vivo oxygen consumption, BAT temperature, in vitro cellular respiration, lipolysis, lipogenesis, catecholamine receptors, cellular enzymes, thyroid hormones by RIA, and body composition. These studies will increase our understanding of neonatal thermogenesis and possibly lead to new therapeutic approaches that will minimize energy expenditure for thermogenesis and maximize energy utilization for growth in both premature and full term infants.
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