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富硒茶叶硒的相对生物利用率及其对大鼠吞噬细胞功能的影响
引用本文:胡秋辉,潘根兴,安辛欣,朱建春,丁瑞兴.富硒茶叶硒的相对生物利用率及其对大鼠吞噬细胞功能的影响[J].南京农业大学学报,2000,23(3):89-92.
作者姓名:胡秋辉  潘根兴  安辛欣  朱建春  丁瑞兴
作者单位:1. 南京农业大学食品科技学院
2. 资源与环境科学学院,南京,210095
基金项目:江苏省科委资助!(BL980 5 7)
摘    要:试验大鼠40只分为5组,分别2饲以基础饲料(含硒量为0.01μg/g)并饮用自来水(对照)、亚硒酸钠溶液、低硒茶浸出液、人工富硒茶及天然富硒茶浸出液,观察天然和人工富硒茶叶硒的相对生物利用率及其对大鼠吞噬细胞功能的影响。结果表明:大鼠对富硒茶叶硒的相对利用率比对照和亚硒酸钠高,富硒茶叶硒的利用率为68.05% ̄70.40%,而对照的硒利用率为65.38%,NaSeO3硒的利用率为65.41%。显示

关 键 词:富硒茶叶    利用率  大鼠  吞噬细胞
修稿时间:2000-05-10

Study on selenium relative bioavailability of Se-enriched tea and its effect on rat phagocytic cell function
Hu Qiuhui,An Xinxin,Pan Genxing,Zhu Jianchun,Ding Ruixing.Study on selenium relative bioavailability of Se-enriched tea and its effect on rat phagocytic cell function[J].Journal of Nanjing Agricultural University,2000,23(3):89-92.
Authors:Hu Qiuhui  An Xinxin  Pan Genxing  Zhu Jianchun  Ding Ruixing
Abstract:rats were divided into five groups and fed with low Se content diet and supplemented with water(Se deficiency),sodium selenite,extraction solutions of low Se content tea,Se enriched tea and nature high Se tea.The relative bioavailability of Se,the Se content in blood and liver and phagocytic cell function in rats were determined after 4 weeks.The results showed that the Se biological utilization rates were 65 41%,68 05% and 70 40% in sodium selenite,Se enriched tea and nature high Se tea respectively.It also indicated that selenium content in blood and liver were significantly raised by feeding extraction of Se enriched tea and sodium selenite compared with low Se tea extraction and water.The higher effectivity was produced by selenium of Se enriched tea compared with sodium selenite in the same Se intake.The significant difference was obtained in rat phagocytic cell percentage and phagocytic index among the rats drinking water and other tea extraction and sodium selenite.All results proved that Se enriched tea could increase rat phagocytic cell function and be used as a good source for supplementing selenium intake.
Keywords:Se  enriched tea  selenium  utilization  rats  phagocytic cell
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