Clark K J, Grant P G, Sarr A B, Belakere J R, Swaggerty C L, Phillips T D, Woode G N
Department of Veterinary Pathobiology, College of Veterinary Medicine, Texas A&M University, College Station 77843-4467, USA.
Vet Microbiol. 1998 Oct;63(2-4):147-57. doi: 10.1016/s0378-1135(98)00242-9.
Crude theaflavin was extracted from black tea and then fractionated by HPLC into five components (initial peaks (IP), TF1, TF2A, TF2B, and TF3). The crude extract and the various fractions of theaflavin were collected and tested, individually and in combination, for antirotaviral activity. The mean effective concentration (EC50) was calculated and compared. Activity varied from the most active being the uncharacterized theaflavin-like initial peaks (IP) with an EC50 of 0.125 microgram/ml to the least active being theaflavin-3 monogallate (TF2A) with an EC50 of 251.39 micrograms/ ml. The combination of TF1 + TF2A + TF2B + TF3 was more active than the sum of the activities of these four fractions individually, indicating synergism among the peaks. Only the crude extract was assayed for activity against coronavirus; the EC50 was 34.7 micrograms/ml.
从红茶中提取粗茶黄素,然后通过高效液相色谱法将其分离为五个组分(初始峰(IP)、茶黄素-1(TF1)、茶黄素-2A(TF2A)、茶黄素-2B(TF2B)和茶黄素-3(TF3))。收集粗提取物和茶黄素的各个组分,分别以及组合起来测试其抗轮状病毒活性。计算并比较平均有效浓度(EC50)。活性差异较大,活性最高的是未鉴定的茶黄素样初始峰(IP),EC50为0.125微克/毫升,活性最低的是茶黄素-3-没食子酸酯(TF2A),EC50为251.39微克/毫升。TF1 + TF2A + TF2B + TF3的组合比这四个组分各自活性的总和更具活性,表明这些峰之间存在协同作用。仅对粗提取物进行了抗冠状病毒活性测定;EC50为34.7微克/毫升。