Sung, Dae Il;Park, Jameon;Kang, Choong Kyung;Kim, Han Bok
Korean Journal of Microbiology
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v.51
no.3
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pp.308-311
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2015
Chungkookjang (fermented soybeans) contains diverse peptides. Human breast cancer MDA-MB-231 cells were treated with peptide H derived from Chungkookjang, and $TNF{\alpha}$ expression in the cells was conspicuously repressed, suggesting peptide H's regulation of IL6 since IL6 is induced by $TNF{\alpha}$. The structure of peptide H was different from those of glucocorticoid and dexamethasone, suggesting different mechanisms of $TNF{\alpha}$ expression suppression. Peptide H which reduces $TNF{\alpha}$ expression can be developed as drugs for cancer, rheumatoid arthritis and Crohn's disease, after more investigation.
Apigenin, a common natural product that is found in many plants and vegetables, has been reported to have many biological activities, including antioxidative, anti-inflammatory, and anticancer effects. The triple-negative breast carcinoma cell line MDA-MB-231 is known to be highly invasive and resistant to chemotherapy. In this study, we investigated the anticancer effect of apigenin on human MDA-MB-231 cells. First, the cytotoxicity of apigenin toward MDA-MB-231 cells was analyzed by MTT assay. Then, the cell cycle and apoptotic effects of apigenin were examined, and the molecular mechanism underlying its anticancer activity was explored. Apigenin inhibited the growth of the cells in a dose-dependent manner, correlating with the cell cycle arrest at the G2-M phase as well as an increase of early apoptosis. The cell-cycle inhibitory effect was highly associated with the increased expression of p21 and decreased expression of CDK6, cyclin D1, and cyclin B1. The induction of apoptosis by apigenin was associated with the upregulated expression of cleaved PARP and cleaved caspase-3, -7, and -9.
Background: The current study investigated the effects of Piper longumine on radio-sensitization of human breast cancer MDA-MB-231 cells and underlying mechanisms. Materials and Methods: Human breast cancer MDA-MB-231 cells were cultured in vitro and those in logarithmic growth phase were selected for experiments divided into four groups: control, X-ray exposed, Piper longumine, and Piper longumine combined with X-rays. Conogenic assays were performed to determine the radio-sensitizing effects. Cell survival curves were fitted by single-hit multi-target model and then the survival fraction (SF), average lethal dose ($D_0$), quasi-threshold dose ($D_q$) and sensitive enhancement ratio (SER) were calculated. Cell apoptosis was analyzed by flow cytometry (FCM). Western blot assays were employed for expression of apoptosis-related proteins (Bc1-2 and Bax) after treatment with Piper longumine and/or X-ray radiation. The intracellular reactive oxygen species (ROS) level was detected by FCM with a DCFH-DA probe. Results: The cloning formation capacity was decreased in the group of piperlongumine plus radiation, which displayed the values of SF2, D0, Dq significantly lower than those of radiation alone group and the sensitive enhancement ratio (SER) of D0 was1.22 and 1.29, respectively. The cell apoptosis rate was increased by the combination treatment of Piper longumine and radiation. Piper longumine increased the radiation-induced intracellular levels of ROS. Compared with the control group and individual group, the combination group demonstrated significantly decreased expression of Bcl-2 with increased Bax. Conclusions: Piper longumine at a non-cytotoxic concentration can enhance the radio-sensitivity of MDA-MB-231cells, which may be related to its regulation of apoptosis-related protein expression and the increase of intracellular ROS level, thus increasing radiation-induced apoptosis.
Journal of the Korean Society of Food Science and Nutrition
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v.40
no.12
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pp.1654-1661
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2011
We investigated the effect of Angelica keiskei ethanol (AKE) extract on cell death in MDA-MB-231 human breast cancer cells. MDA-MB-231 cells were cultured in the presence 125, 150 and 175 ${\mu}g$/mL concentrations of AKE for 24 hours. MTT assays demonstrated that mitochondrial dehydrogenase activities decreased in a dose-dependent manner in MDA-MB-231 cells (p<0.05). In contrast, the proportion of dual staining with Hoechst 33342/ethidium bromide(EtBr) for cell death increased in a dose-dependent manner in MDA-MB-231 cells (p<0.05). In particular, the levels of cell death caused by apoptotic program showed marked increases in the 150 and 175 ${\mu}g$/mL AKE groups, as revealed by flow cytometry. An apoptotic suppressor gene, Bcl-2, significantly decreased at the transcript level (p<0.05). The expression levels of proapoptotic genes, both Bax and caspase 3 significantly increased (p<0.05). Furthermore, the ratio of Bcl-2/Bax mRNA which is considered to be an important indicator of apoptosis, significantly decreased in a dose-dependent manner (p<0.05). These results taken together indicate that, the AKE extract used in this study induces cell death in MDA-MB-231 human breast cancer cells.
Breast cancer has been estimated as one of the most common causes of cancer death among women. The major cause of death from breast cancer is the metastatic spread of the disease from the primary tumor to distant sites in the body. Lycopene is one of the major carotenoids in fruits and vegetables including tomatoes. Epidemiological studies have shown that the dietary intake of lycopene is associated with decreased risk of cancer. Although mounting evidence shows the chemopreventive effect of lycopene, the role of lycopene in the prevention of metastatic potential of breast cancer has not been determined yet. In the present study, we investigated the inhibitory effect of lycopene on invasive and migratory phenotypes of two highly aggressive breast cancer cell lines, H-Ras-transformed MCF10A human breast epithelial cells (H-Ras MCF10A) and MDA-MB-231 human breast cancer cells. Here, we report that lycopene significantly inhibits invasion and migration as well as proliferation of H-Ras MCF10A and MDA-MB-231 cells. This study suggested an in vitro anti-cancer and anti-metastatic potential of lycopene. We also showed that activations of ERKs and Akt were inhibited by lycopene in H-Ras MCF10A cells, suggesting that the ERKs and Akt signaling pathways may be involved in lycopene-induced anti-proliferative and/or anti-invasive/migratory effects in these cells. Taken in conjunction with the fact that breast cancer metastasis is one of the most lethal malignancies in women, our findings may provide useful information for the application of lycopene in establishing strategy to prevent the metastatic breast cancer.
Background: Coptisine, an isoquinoline alkaloid extracted from Coptidis rhizoma, has many biological activities such as antidiabetic, antimicrobial and antiviral actions. However, whether coptisine exerts anti-cancer metastasis effects remains unknown. Materials and Methods: Effects of coptisine on highly metastatic human breast cancer cell MDA-MB-231 proliferation were evaluated by trypan blue assay and on cell adhesion, migration and invasion by gelatin adhesion, wound-healing and matrigel invasion chamber assays, respectively. Expression of two matrix metalloproteinases (MMPs), MMP-9, MMP-2 and their specific inhibitors tissue inhibitor of metalloproteinase 1 (TIMP-1) and tissue inhibitor of metalloproteinase 2 (TIMP-2) were analyzed by RT-PCR. Results: Coptisine obviously inhibited adhesion to an ECM-coated substrate, wound healing migration, and invasion through the matrigel in MDA-MB-231 breast cancer cells. RT-PCR revealed that coptisine reduced the expression of the ECM degradation-associated gene MMP-9 at the mRNA level, and the expression of TIMP-1 was upregulated in MDA-MB-231 cells, while the expression of MMP-2 and its specific inhibitor TIMP-2 was not affected. Conclusions: Taken together, our data showed that coptisine suppressed adhesion, migration and invasion of MDA-MB-231 breast cancer cells in vitro, the down-regulation of MMP-9 in combination with the increase of TIMP-1 possibly contributing to the anti-metastatic function. Coptisine might be a potential drug candidate for breast cancer therapy.
Journal of the Korean Society of Food Science and Nutrition
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v.31
no.3
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pp.521-526
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2002
A number of experimental and epidemiological studies have implicated that antiestrogenic effects of estrogen-like compounds in legumes and plant seeds are responsible for lowering breast cancer risk in human. However, few studies have been conducted to illustrate the possible chemopreventive effects of Korean traditional food materials. This study was performed to determine the cytotoxic and apoptotic effects of yellow soybeans, black soybeans and brown rice extracts on hormone-dependent and hormone-independent human breast cancer cells. Methanol-or acetone-soluble fractions of soybeans or brown rice were incubated with hormone-dependent cells (MCF-7) or hormone-independent cells (MDA-MB-231). Cell cytotoxicity was measured by MTT assay at 24, 48 and 72 hrs of incubation. Apoptotic effects of these extracts toward breast cancer cells were also determined at 48 hrs of incubation by measuring DNA fragmentation. Results indicated that the acetone-soluble fraction of brown rice exerted strongest cytotoxic effect on MCF-7 ceIls, although other fractions also reduced the number of viable MCF-7 cells after 48 hrs of incubation. Both acetone and methanol soluble fractions of all samples exerted a significant cytotoxicity towards MDA-MB-231 cells after 24 hrs of incubation, and acetone and methanol soluble fractions of brown rice were especially effective in these cells. At 48 hrs of incubation, methanol fractions of all three samples induced apopotosis of MDA-MB-231 cells. These results indicate methaol or acetone soluble fractions of yellow soybeans, black soybeans and brown rice induce cytotoxicity in both hormone-dependent and hormone-independent breast cancer cells. Therefore, possible mechanisms of cell cytotoxicity do not necessarily include antiestrogenic effects of soybean or brown rice extract. A possible anticarcinogenic effect of brown rice methanol-soluble fraction may mediated through their apoptotic effect. Further studies are requried to elucidate responsible compounds and mechanisms involved in observed anticarcinogenesis.
An aristolactam-type alkaloid, isolated from Orophea enterocarpa, is enterocarpam-III (10-amino-2,3,4,6-tetramethoxyphenanthrene-1-carboxylic acid lactam). It is cytotoxic to various human and murine cancer cell lines; however, the molecular mechanisms remain unclear. The aims of this study were to investigate cytotoxic effects on and mechanism (s) of human cancer cell death in human hepatocellular carcinoma HepG2 and human invasive breast cancer MDA-MB-231 cells compared to normal murine fibroblast NIH3T3 cells. Cell viability was determined by MTT assay to determine $IC_{10}$, $IC_{20}$ and $IC_{50}$ levels, reactive oxygen species (ROS) production with 2',7'-dichlorohydrofluorescein diacetate and the caspase-3, -8 and -9 activities using specific chromogenic (p-nitroaniline) tetrapeptide substrates, viz., DEVD-NA, IETD-NA and LEHD-NA and employing a microplate reader. Mitochondrial transmembrane potential (MTP) was measured by staining with 3, 3'-dihexyloxacarbocyanine iodide ($DiOC_6$) and using flow cytometry. The compound was cytotoxic to HepG2 and MDA-MB-231 cells with the $IC_{50}$ levels of $26.0{\pm}4.45$ and $51.3{\pm}2.05{\mu}M$, respectively. For murine normal fibroblast NIH3T3 cells, the $IC_{50}$ concentration was $81.3{\pm}10.1{\mu}M$. ROS production was reduced in a dose-response manner in HepG2 cells. The caspase-9 and -3 activities increased in a concentration-dependent manner, whereas caspase-8 activity did not alter, indicating the intrinsic pathway activation. Enterocarpam-III decreased the mitochondrial transmembrane potential (MTP) dose-dependently in HepG2 cells, suggesting that the compound induced HepG2 cell apoptosis via the mitochondrial pathway. In conclusion, enterocarpam-III inhibited HepG2 and MDA-MB-231 cell proliferation and induced human HepG2 cells to undergo apoptosis via the intrinsic (mitochondrial) pathway and induction of caspase-9 activity.
Background: The consequence of Rho GDP dissociation inhibitor alpha (RhoGDI${\alpha}$) activity on migration and invasion of estrogen receptor positive ($ER^+$) and negative ($ER^-$) breast cancer cells has not been studied using the proteomic approach. Changes in expression of RhoGDI${\alpha}$ and other proteins interacting directly or indirectly with RhoGDI${\alpha}$ in MCF7 and MDA-MB-231, with different metastatic potentials is of particular interest. Materials and Methods: $ER^+$ MCF7 and ER- MDA-MB-231 cell lines were subjected to two-dimensional electrophoresis (2-DE) and spots of interest were identified by matrix-assisted laser desorption/ionization time of- flight/time-of-flight (MALDI-TOF/TOF) mass spectrometry (MS) analysis after downregulation of RhoGDI${\alpha}$ using short interfering RNA (siRNA) and upregulated using GFP-tagged ORF clone of RhoGDI${\alpha}$. Results: The results showed a total of 35 proteins that were either up- or down-regulated in these cells. Here we identifed 9 and 15 proteins differentially expressed with silencing of RhoGDI${\alpha}$ in MCF-7 and the MDA-MB-231 cells, respectively. In addition, 10 proteins were differentially expressed in the upregulation of RhoGDI${\alpha}$ in MCF7, while only one protein was identified in the upregulation of RhoGDI${\alpha}$ in MDA-MB-231. Based on the biological functions of these proteins, the results revealed that proteins involved in cell migration are more strongly altered with RhoGDI-${\alpha}$ activity. Although several of these proteins have been previously indicated in tumorigenesis and invasiveness of breast cancer cells, some ohave not been previously reported to be involved in breast cancer migration. Hence, these proteins may serve as useful candidate biomarkers for tumorigenesis and invasiveness of breast cancer cells. Conclusions: Future studies are needed to determine the mechanisms by which these proteins regulate cell migration. The combination of RhoGDI${\alpha}$ with other potential biomarkers may be a more promising approach in the inhibition of breast cancer cell migration.
This research examined the effects of Compositae extract on the inhibition of proliferation and apoptosis in human breast and human gastric cancer cells. Compositae extracts which is used in the experiment are Taraxacum coreanum (TC), Youngia sonchifolia (YS) and Ixeris dentata (ID). The proliferation of SK-BR-3, MDA-MB-231 and AGS cells were investigated by MTT assay. ID and YS extracts inhibited proliferation of SK-BR-3, MDA-MB-231 and AGS cells in a dose-dependent manner, but TC have barely affected. In addition, the most effective extract was ID. To assess the apoptosis of ID extract, the nuclei of human cancer cells were stained with DAPI solution respectively. Chromatin condensation, indicated apoptosis, was increased in a dose-dependent manner. We investigated change of ID extract-induced apoptosis proteins on human cancer cells by western blot analysis. The level of Bcl-2 decreased, whereas the level of Bax, cleaved-PARP increased in dose-dependent manner compared with non-treatment. Also Bax/Bcl-2 ratio, which is used in clinical indicator of apoptosis, was increased at ID extract treatment group compared with non-treatment. Moreover the Bax/Bcl-2 ratio of MDA-MB-231 cell was significantly increased as against SK-BR-3, AGS cells. These results indicated that ID extract have anti-proliferation effect better than YS or TC, and induced apoptosis in human breast cancer MDA-MB-231 cell better than human breast cancer SK-BR-3 cell, human gastric cancer. Even if further research is needed, ID can be developed as a chemopreventive or therapeutic agent of breast cancer.
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