Undaria pinnatifada has been used as a natural diet food with few calories and as a source of iodine. Even though U. pinnatifida has been regarded as a diet food, the mechanisms of its inhibitory effects on adipocyte differentiation and the accumulation of fat in adipocytes are poorly understood. In this study, the effect and mechanism of U. pinnatifida ethanol extract on 3T3-L1 differentiation into adipocytes were investigated. The effects of U. pinnatifida ethanol extract on cell viability and the anti-adipogenic effect were investigated via MTT assay, Oil red O staining, RT-PCR, and western blot. The U. pinnatifida ethanol extract did not show toxicity up to a concentration of 50 ${\mu}g/ml$. The addition of U. pinnatifida ethanol extract decreased triglyceride contents by 40% when 50 ${\mu}g/ml$ of U. pinnatifida ethanol extract was added during 3T3-L1 differentiation and adipocyte triglyceride formation. The transcription and expression of peroxisome proliferator-activated receptor ${\gamma}$ ($PPAR{\gamma}$), leptin, and hormone-sensitive lipase (HSL) as adipocyte-specific proteins were determined by RT-PCR and western blot. The overexpression of $PPAR{\gamma}$ could accelerate adipocyte differentiation. Also, leptin was secreted for triglyceride accumulation in the adipocytes and the increase of adipocyte cell size. Thus, $PPAR{\gamma}$ and leptin were used as indicators of obesity. $PPAR{\gamma}$ and leptin were repressed by the increased addition of U. pinnatifida ethanol extract. This indicates that U. pinnatifida was effective as an anti-obesity agent by repressing the differentiation of 3T3-L1 into adipocytes and inhibiting triglyceride formation in adipocytes.
It had been evaluated the recombinant Circumsporozoite(CS) protein of Plasmodium viva in serologic diagnosis of vivax malaria. Western blot was done to analyse the sera of malaria patients according to the days after onset. The sera which have the terms within 15 days were shown 43.8%(14/32) of positive rates and the sera over the 16 days were shown 94.4%(17/18) of positive rates. So the total positive rate was 62%(31/50). It was 22.6%(7/31) which was shown negative response in Western blot, even though they were shown positive response in Immuuofluorescent antibody test(1FAT) using whole blood stage antigens. The positive rate of non-epidemic area(Yechon-gun, Kyongsangbuk-do) was 10.7%(3/28), and epidemic area(Kangwha-gun, Inchon-shi) was 27.6%(13/47) in Western blot analysis using recombinant CS protein. In order to applicate the recombinant CS protein in seroepidemiological survey, blood samples of 422 inhabitants were collected who lived in malaria epidemic areas, Chosm-ri, Majeong-ri, Hyangyang-ri and Noejo-n in Paju-shi, Kyonggi-do. All of them were negative in microscopic examination and two(0.5%) of them were positive in Polymerase Chain Reaction. 42(10.0%) of them were seropositive in FAT using whole blood antigens and 71(16.8%) of them were seropositive in Enzyme-linked immunosorbent assay using recombinant CS protein. It was figured out the positive rates were much higher according to the distances of villages which were closed to the demilitalized zone(DMZ) in all kind of diagnostic methods, respectively.
The aim of this study is to investigate the melanogenic effect of Oenanthe javanica ethanolic extracts (OJE) containing quercetin and kaempferol in melanoma cells (B16F1). In order to determine whether OJE inhibits melanin synthesis at the cellular level, the melanoma cells were cultured in the presence of different concentrations of OJE. In the present study, the antioxidant effects of OJE on DPPH radical scavenging, power reduction, lipid peroxidation, and DNA oxidation were evaluated in a cell free system. Furthermore, the effect of OJE on the production of melanin was determined by dopaquinone (DOPA) assay and tyrosinase activity. In addition, the protein expression of tyrosinase, as well as antioxidant enzymes such as superoxide dismutase (SOD)-1, SOD-2 and glutathione reductase (GSH), were examined using Western blot analysis. In this study, it was observed that OJE exhibited an inhibitory effect on lipid peroxidation and blocked the DNA oxidation induced by the hydroxyl radical produced by Fenton's reagent. OJE increased melanin synthesis above 50 ${\mu}g/ml$ and tyrosinase activity was detected above 50 ${\mu}g/ml$. In Western blot analysis, OJE increased the expression levels of tyrosinase, SOD-1, SOD-2, and GSH in a dose-dependent manner. These findings indicate that OJE with antioxidant activity can regulate the tyrosinase activity and melanin production in melanocyte, suggesting that it could promote the development of black hair as well as protect skin from oxidative stress.
Objectives : This study is aimed to investigate the effects of bee venom and melittin on cell death in synovial cell line. Methods : It was evaluated by using MTT assay, morphologic method, DNA fragmenation, NO generation, flow cytometry, immunocytochemistry analysis, RT-PCR, Western blot. Results : The obtained results are summarized as follows: 1. The MTT assay demonstrated that synovial cell viability was significantly inhibitted dose-dependently by treatment with bee venom and melittin in comparison with control. 2. The morphologic study demonstrated that synovial cell showed apoptosis after treatment with bee venom and melittin for 6 hours using microscope. 3. In case of NO generation bee venom group and melittin group showed significant inhibition in comparison with control. 4. The Flow cytometry demonstrated that apoptosis of synovial cell treated with bee venom and melittin was related with stop of cell cycle in stage of $G_0/G_1$. 5. DNA fragmenation demonstrated that synovial cell treated with bee venom and melittin showed DNA ladder below l Kbp. 6. Immunocytochemistry assay demonstrated that COX-II and PLA2 were strongly down-regulated by treatment with bee venom and melittin whereas iNOS was almostly not expressed by bee venom treatment and slightly expressed by melittin treatment. 7. RT-PCR analysis demonstrated that iNOS were strongly down-regulated by treatment with bee venom and melittin whereas COX-II was almostly not expressed by bee venom treatment and slightly expressed by melittin treatment. 8. Western blot demonstrated that iNOS were strongly down-regulated by treatment with $15{\mu}g/ml$ bee venom whereas COX-II was strongly down-regulated from $5{\mu}g/ml$ bee venom. Conclusions : These results suggest that bee venom and melittin have significant effect on cell death in synovial cell line and further study is needed in vivo.
Objectives : This study was designed to investigate the effects of Saenggantanggami-bang (SG) on nonalcoholic fatty liver disease. Methods : HepG2 cells were used in an in vitro model. HepG2 cells were divided into three groups. The Normal group was incubated with no fatty acid. The Control group was incubated with 1mM palmitic acid to introduce fat overloading. The PA-SG group was incubated with 1mM palmitic acid and various concentrations of Saenggantanggami-bang (SG). Cell viability and cytotoxicity were analyzed by MTT assay and LDH assay. Intracellular triglyceride (TG) levels, reactive oxygen species (ROS) levels, ATP amount, and GST activity were measured. Cell death pattern and protective effect of SG on cell death were studied by DNA fragmentation and caspase-3 intensity (western blot). Results : Compared with the Control group, cell viability of the PA-SG group significantly increased (P<0.01), cytotoxicity of the PA-SG group decreased (P<0.01), and intracellular TG levels and ROS levels of the PA-SG group decreased (P<0.05). In DNA fragmentation assay, necrotic pattern was observed and DNA fragment decreased in the PA-SG group. In western blot, apoptotic pattern was observed, caspase-3 intensity of the PA-SG group was reduced significantly, but there were no significant differences in intracellular ATP amount and GST activity between the control group and the PA-SG group. Conclusion : The results suggest that Saenggantanggami-bang can be a potential candidate for the clinical treatment of nonalcoholic fatty liver disease.
Background: Black ginseng (Ginseng Radix nigra, BG) refers to the ginseng steamed for nine times and fine roots (hairy roots) of that is called fine black ginseng (FBG). It is known that the content of saponin of FBG is higher than that of BG. Therefore, in this study, we examined antitumor effects against MCF-7 breast cancer cells to target the FBG extract and its main component, ginsenoside Rg5 (Rg5). Methods: Action mechanism was determined by MTT assay, cell cycle assay and western blot analysis. Results: The results from MTT assay showed that MCF-7 cell proliferation was inhibited by Rg5 treatment for 24, 48 and 72 h in a dose-dependent manner. Rg5 at different concentrations (0, 25, 50 and $100{\mu}M$), induced cell cycle arrest in G0/G1 phase through regulation of cell cycle-related proteins in MCF-7 cells. As shown in the results from western blot analysis, Rg5 increased expression of p53, $p21^{WAF1/CIP1}$ and $p15^{INK4B}$ and decreased expression of Cyclin D1, Cyclin E2 and CDK4. Expression of apoptosiserelated proteins including Bax, PARP and Cytochrome c was also regulated by Rg5. These results indicate that Rg5 stimulated cell apoptosis and cell cycle arrest at G0/G1 phase via regulation of cell cycle-associated proteins in MCF-7 cells. Conclusion: Rg5 promotes breast cancer cell apoptosis in a multi-path manner with higher potency compared to 20(S)-ginsenoside Rg3 (Rg3) in MCF-7 (HER2/ER+) and MDA-MB-453 (HER2+/ER) human breast cancer cell lines, and this suggests that Rg5 might be an effective natural new material in improving breast cancer.
Objective : This study is designed to investigate the effects of bee venom and melittin on cell death in neuroblastoma cell line after pretreatment with NG(nerve growth inhibitory substance) Methods : It was evaluated by using MTT assay, morphological method, DNA fragmenation, flow cytometry, immunocytochemistry analysis, RT-PCR and Western blot. Results : The MTT assay demonstrated that neuroblastoma cell viability was significantly inhibited dose-dependently by treatment with bee venom and melittin after pretreatment with NG in comparison awith control. The morphological study and fow cytometry demonstrated that neuroblastoma cell showed apoptosis. DNA fragmenation showed DNA ladder below 1 Kbp. Immunocytochemistry assay demonstrated that Fos and MAPK were down-regulated. RT-PCR analysis demonstrated that Fos and MAPK was down-regulated. Western blot demonstrated that Fos and MAPK were down-regulated from $1{\mu}g/ml$ bee venom in neuroblastoma cell pretreated with NG. Conclusion : These result suggests that bee venom and melittin after NG treatment have significant anti-cancer effect and further study is needed in vivo.
Park, Min Jeong;Kim, Junse;Kong, Chang-Suk;Seo, Youngwan
Ocean and Polar Research
/
v.41
no.2
/
pp.79-88
/
2019
In this study, the inhibitory effect of Atriplex gmelinii C. A. Mey. against the activity of MMP-2 and MMP-9 secreted from phorbol-12-myristate-13-acetate (PMA)-stimulated HT-1080 cells was evaluated by gelatin zymography and enzyme-linked immunosorbent assay (ELISA), reverse transcription polymerase-chain reaction (RT-PCR), and Western blot assay. Specimens of the halophyte A. gmelinii were extracted twice for 24 hr with methylene chloride ($CH_2Cl_2$), and then twice with methanol (MeOH), in turn. Each extract significantly inhibited the enzymatic activities in gelatin zymography and MMP ELISA kit, and expression of MMP-2 and 9 in mRNA and protein levels. Two crude extracts were combined and then the combined crude extracts were fractionated into n-hexane, 85% aqueous methanol (85% aq.MeOH), n-butanol (n-BuOH), and water ($H_2O$) fractions, according to solvent polarity. Among solvent-partitioned fractions, the 85% aq.MeOH fraction showed the strongest inhibitory effect against MMP-2 and -9 in gelatin zymography and MMP ELISA kit. In RT-PCR, all solvent-partitioned fractions significantly suppressed mRNA expression of MMP-2 and -9. On the other hand, in Western blot assay, all solvent-partitioned fractions except $H_2O$ significantly reduced expression levels of protein. HT 1080 cell migration was most significantly inhibited by the n-BuOH fraction followed by the 85% aq.MeOH and $H_2O$ fractions. These results suggest that A. gmelinii could be used as a potential source to inhibit tumor cell metastasis.
Matrix metalloproteinases (MMPs) are associated with the invasion and metastasis of malignant tumors composed of cancer cells in an increased state of expression. This study evaluates the inhibitory effect of Carex pumila on MMP-2 and MMP-9 activity in phorbol-12-myristate-13-acetate (PMA)-stimulated HT-1080 human fibrosarcoma cells using gelatin zymography, MMPs enzyme-linked immunosorbent assay (ELISA), reverse transcription-polymerase chain reaction (RT-PCR) and Western blot assay. C. pumila was extracted twice with dichloromethane ($CH_2Cl_2$) and methanol (MeOH). Treatment with $CH_2Cl_2$ extract and MeOH extract in PMA-stimulated HT-1080 cells effectively reduced the production of MMP-2 and 9. Also, the combined crude extracts ($CH_2Cl_2$ and MeOH) significantly inhibited the enzymatic activities and the expression of MMP-2 and MMP-9 in mRNA and protein levels. The combined crude extracts were partitioned between $CH_2Cl_2$ and water. The organic layer was further fractionated with n-hexane, 85% aqueous methanol (85% aq.MeOH) and the aqueous layer was separated into n-butanol and water, successively. Of the fractions, 85% aq.MeOH fraction showed the highest inhibitory activity of MMP-2 and MMP-9 in gelatin zymography and MMP ELISA kit. Furthermore, 85% aq.MeOH fraction most significantly suppressed cell migration. In RT-PCR and Western blot assay, n-butanol and 85% aq.MeOH fractions exerted the greatest inhibition on mRNA and protein expression of MMP-2 and MMP-9, respectively. As a result, C. pumila can be used as a good anti-invasive agent source.
Background: This study investigated the anti-inflammatory effects of bee venom (BV) through the inhibition of nuclear factor kappa beta ($NF-{\kappa}B$) expression in macrophages and keratinocytes. Methods: Cell viability assays were performed to investigate the cytotoxicity of BV in activated macrophages [lipopolysaccharide (LPS)] and keratinocytes [interferon-gamma/tumor necrosis factor-alpha ($IFN-{\gamma}/TNF-{\alpha}$)]. A luciferase assay was performed to investigate the cellular expression of $NF-{\kappa}B$ in relation to BV dose. The expression of $NF-{\kappa}B$ inhibitors ($p-I{\kappa}B{\alpha}$, $I{\kappa}B{\alpha}$, and p50 and p65) were determined by Western Blot analysis, and the electromobility shift assay. A nitrite quantification assay was performed to investigate the effect of BV, and $NF-{\kappa}B$ inhibitor on nitric oxide (NO) production in macrophages. In addition, Western Blot analysis was performed to investigate the effect of BV on the expression of mitogen-activated protein kinases (MAPK) in activated macrophages and keratinocytes. Results: BV was not cytotoxic to activated macrophages and keratinocytes. Transcriptional activity of $NF-{\kappa}B$, and p50, p65, and $p-I{\kappa}B{\alpha}$ expression was reduced by treatment with BV in activated macrophages and keratinocytes. Treatment with BV and an $NF-{\kappa}B$ inhibitor, reduced the production of NO by activated macrophages, and also reduced $NF-{\kappa}B$ transcriptional activity in activated keratinocytes (compared with either BV, or $NF-{\kappa}B$ inhibitor treatment). Furthermore, BV decreased p38, p-p38, JNK, and p-JNK expression in LPS-activated macrophages and $IFN-{\gamma}/TNF-{\alpha}$-activated keratinocytes. Conclusion: BV blocked the signaling pathway of $NF-{\kappa}B$, which plays an important role in the inflammatory response in macrophages and keratinocytes. These findings provided the possibility of BV in the treatment of atopic dermatitis.
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