https://scholars.lib.ntu.edu.tw/handle/123456789/496845
Title: | Growth inhibition and induction of apoptosis in MCF-7 breast cancer cells by fermented soy milk | Authors: | Chang W.-H. Liu J.-J. Chen C.-H. TIEN-SHANG HUANG Lu F.-J. |
Issue Date: | 2002 | Publisher: | Lawrence Erlbaum Associates Inc. | Journal Volume: | 43 | Journal Issue: | 2 | Start page/Pages: | 214-226 | Source: | Nutrition and Cancer | Abstract: | The effect of a fermented soy milk product (FSP) on various human breast carcinoma cell lines was investigated, and it was shown to have a growth-inhibitory effect, especially on MCF-7 cells. Thus the MCF-7 cell line was used to study the mechanism of action. In female severe combined immune deficiency mice implanted with MCF-7 cells, pretreatment with FSP significantly inhibited tumor growth. The inhibitory effect of FSP on MCF- 7 cells seemed to be caused by the additive effects of a wide variety of constituents. The active components of FSP are mainly in the water phase, and the lipid-soluble fraction, which includes the soy isoflavones such as genistein and daidzein, is relatively ineffective. A variety of methods were used to demonstrate that FSP caused apoptotic cell death in MCF-7 cells. FSP induced generation of reactive oxygen species (ROS). Growth inhibition and ROS generation induced by FSP could be inhibited by catalase and deferoxamine, indicating that the ROS production probably was the cause of this apoptotic cell death. This study suggests that FSP retards tumor growth in vivo and can trigger apoptosis in vitro. It may, therefore, be a potential nutritional supplement in chemotherapy. |
URI: | https://www.scopus.com/inward/record.uri?eid=2-s2.0-0036969177&doi=10.1207%2fS15327914NC432_12&partnerID=40&md5=c86def7a093d3e6e2cc80f800cf336cf https://scholars.lib.ntu.edu.tw/handle/123456789/496845 |
ISSN: | 0163-5581 | DOI: | 10.1207/S15327914NC432_12 | SDG/Keyword: | catalase; daidzein; deferoxamine; genistein; isoflavone; reactive oxygen metabolite; water; animal experiment; animal model; apoptosis; article; breast cancer; cancer cell; cancer inhibition; cell death; combined immunodeficiency; controlled study; diet supplementation; female; fermented soy milk product; growth inhibition; human; human cell; in vitro study; lipid solubility; milk; mouse; nonhuman; nutrient solution; nutritional support; Animalia; Mink cell focus-forming virus [SDGs]SDG3 |
Appears in Collections: | 醫學系 |
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