• Title/Summary/Keyword: human prostate cancer cell

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Resveratrol Induces Apoptosis in Primary Human Prostate Cancer Cells (Primary 인체 전립선 암세포에서 Resveratrol의 Apoptosis 유도 효과)

  • Kang, Hye-In;Kim, Jae-Yong;Cho, Hyun-Dong;Park, Kyung-Wuk;Kang, Jum-Soon;Seo, Kwon-Il
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.8
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    • pp.1119-1125
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    • 2010
  • To evaluate resveratrol as a prostate cancer preventive material, we investigated its anti-proliferative and apoptotic effects in RC-58T/h/SA#4 primary human prostate cancer cells. Resveratrol significantly decreased the number of viable RC-58T/h/SA#4 cells in a dose- and time-dependent manner. Resveratrol showed cytotoxicity against RC-58T/h/SA#4, LNCaP, PC-3 human prostate cancer cells with $IC_{50}$ values of 245, 320 and $340\;{\mu}M$, respectively. However the cytotoxic potential of resveratrol against normal RWPE-1 cells was lower ($IC_{50}=982\;{\mu}M$). Resveratrol induced cell death as evidenced by the increased formation of apoptotic bodies, nuclear condensation, sub-G1 phase, and DNA fragmentation. Resveratrol activated initiator caspases 8, and 9 as well as effector caspase 3 in a dose-dependent manner. Furthermore, the general caspase inhibitor z-VAD-fmk significantly inhibited resveratrol-induced apoptosis compared to cells without treatment. These results clearly indicate that resveratrol-induced apoptosis was dependent on caspase activation. Further, resveratrol modulated the down regulation of Bcl-2 (anti-apoptotic), and Bid. However, the level of Bax (pro-apoptotic) remained unchanged. These results suggest that resveratrol induced apoptosis in RC-58T/h/SA#4 cells via a mitochondrial-mediated caspase-dependent pathway, suggesting therapeutic potential against prostate cancer.

Green Tea (-) Epigallocatechin-gallate Induces the Apoptotic Death of Prostate Cancer Cells (녹차 (-)Epigallocatechin-gallate에 의한 전립선암 세포주 DU145 세포고사 기전)

  • 이지현;정원훈;박지선;신미경;손희숙;박래길
    • Toxicological Research
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    • v.18 no.2
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    • pp.183-190
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    • 2002
  • The mechanism by which catechin-mediated cytotoxicity against tumor cells remains to be elusive. To elucidate the mechanical mights of anti-tumor effects, (-)epigallocatechin-gallate (EGCG) of catechin was applied to human prostate cancer DU 145 cells. Cell viability was measured by crystal violet staining. Cell lysates were wed to measure the catalytic activity of caspases by using fluorogenic peptide: Ac-DEVD-AMC for caspase-3 protease, Z-IETD-AFC for caspase-8 protease, Ac-LEHD-AFC for caspase-9 protease as substrates. The equal amounts of protein from cell lysate was separated on SDS-PAGE and analyzed by western blotting with anti-Fas antibody, anti-FasL antibody, anti-BCL2 antibody and anti-Bax antibody. (-)EGCG induced the death of DUl45 cells, which was revealed as apoptosis shown by DNA fragmentation. (-)EGCG induced the activation of caspase family cysteine proteases including caspase-3, -8 and -9 proteases in DU145 cells. Also, (-)EGCG increased the expression of Fas and Fas ligand (FasL) protein in DU145 colls. The expression level of BCL2 was decreased in (-)EGCG treated DU145 cells, whereas Bax protein was increased in a time-dependent manner. We suggest that (-)EGCG-induced apoptosis of DU145 cells is mediated by signaling pathway involving caspase family cysteine protease, mitochondrial BCL2-family protein and Fas/FasL.

Antiproliferative effect of Schisandrae Fructus extract on PC-3 human prostate cancer cells (오미자(五味子) 추출물의 인간 전립선암 세포주 PC-3에 대한 성장 억제 효과)

  • Moon, Jung-Min;Seok, Ga-Hyeong;Cho, Su-In
    • The Korea Journal of Herbology
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    • v.27 no.4
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    • pp.17-23
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    • 2012
  • Objectives : Schisandrae Fructus (SF) has traditionally been used to balance level of body fluid and to strengthen kidney function. It has been reported that the SF extract has antioxidant, hepatoprotective, neuroprotective and anticancer effects. This study investigated an antiproliferative effect of SF extract on PC-3 human prostate cancer cells and analyzed active ingredients of SF extract qualitatively and quantitatively. Methods : We examined the antiproliferative effect of SF extract with MTT assay, DAPI staining and annexin-V/7-AAD double staining. The active ingredients of SF extract were identified by using HPTLC and HPLC/DAD system. Results : SF-chloroform fraction inhibited growth of PC-3 cells and changed the morphology of nucleus in a dose dependent manner. A dose-dependent apoptotic cell death was also measured by flow cytometry analysis. It was analyzed that SF-chloroform fraction contained more schizandrin than other fractions by using HPTLC and HPLC/DAD system. Conclusions : These results suggest that SF extract and schizandrin may be a potential chemotherapeutic agent for the control of PC-3 human prostate cancer cells.

Conditioned Media of ASC-17D Sertoli Cells Induce G1-Growth Arrest of DU145 Human Prostate Cancer Cells

  • Kang, Hyeog;Kang, Sang-Wook;Choi, Sang-Hyun;Lee, Kwang-Ho;Chun, Boe-Gwun;Min, Bon-Hong
    • BMB Reports
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    • v.31 no.5
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    • pp.508-514
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    • 1998
  • We studied the effects of ASC-17D rat Sertoli cell-conditioned media (rSCCM) on the proliferation of the DU145 prostate cancer cells. rSCCM was prepared from ASC-17D cells cultured in DMEM/F-12 serum-free media at a nonpermissive temperature of $40^{\circ}C$, which is the condition for the high expression of c1usterin. We found that rSCCM could inhibit the proliferation of DU145 cells by arresting the cell cycle in the G1 phase in a dose-dependent manner. This growth arresting activity was abolished by boiling rSCCM for 5 min. The G1 growth-inhibiting activity of rSCCM was also detected in other prostate-originated cancer cells examined (i.e., LNCaP and PC-3) but not in other cells (ASC-17D, HepG2, SK-N-SH, and NIH3T3). Western blot analysis of partially purified growth inhibiting fractions with the clusterin antibody showed that the cytostatic factor in rSCCM was not c1usterin. This cytostatic factor was semi purified by DEAE-Sepharose, ammonium sulfate precipitation, and Phenyl-Sepharose column chromatography, and was estimated to have a molecular weight of 88 kDa by Sephacryl S-300 gel filtration.

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Chestnut extract induces apoptosis in AGS human gastric cancer cells

  • Lee, Hyun-Sook;Kim, Eun-Ji;Kim, Sun-Hyo
    • Nutrition Research and Practice
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    • v.5 no.3
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    • pp.185-191
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    • 2011
  • In Korea, chestnut production is increasing each year, but consumption is far below production. We investigated the effect of chestnut extracts on antioxidant activity and anticancer effects. Ethanol extracts of raw chestnut (RCE) or chestnut powder (CPE) had dose-dependent superoxide scavenging activity. Viable numbers of MDA-MD-231 human breast cancer cells, DU145 human prostate cancer cells, and AGS human gastric cancer cells decreased by 18, 31, and 69%, respectively, following treatment with $200{\mu}g/mL$ CPE for 24 hr. CPE at various concentrations ($0-200{\mu}g/mL$) markedly decreased AGS cell viability and increased apoptotic cell death dose and time dependently. CPE increased the levels of cleaved caspase-8, -7, -3, and poly (ADP-ribose) polymerase in a dose-dependent manner but not cleaved caspase-9. CPR exerted no effects on Bcl-2 and Bax levels. The level of X-linked inhibitor of apoptosis protein decreased within a narrow range following CPE treatment. The levels of Trail, DR4, and Fas-L increased dose-dependently in CPE-treated AGS cells. These results show that CPE decreases growth and induces apoptosis in AGS gastric cancer cells and that activation of the death receptor pathway contributes to CPE-induced apoptosis in AGS cells. In conclusion, CPE had more of an effect on gastric cancer cells than breast or prostate cancer cells, suggesting that chestnuts would have a positive effect against gastric cancer.

Antioxidant and Anticancer Properties of Methanolic Extracts from Different Parts of White, Yellow, and Red Onion

  • Jeong, Chang-Ho;Heo, Ho-Jin;Choi, Sung-Gil;Shim, Ki-Hwan
    • Food Science and Biotechnology
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    • v.18 no.1
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    • pp.108-112
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    • 2009
  • Antioxidant and anticancer effects of methanolic extracts from the flesh (WFME) and peel (WPME) of white onion, the flesh (YFME) and peel (YPME) of yellow onion, the flesh (RFME) and peel (RPME) of red onion were studied. The content of total phenolics in WFME, WPME, YPME, YFME, RPME, and RFME were $0.260{\pm}0.01$, $4.480{\pm}0.23$, $0.319{\pm}0.02$, $719.12{\pm}37.36$, $0.248{\pm}0.01$, and $806.21{\pm}26.38\;mg/g$, respectively. The quercetin content of WFME, WPME, YFME, YPME, RFME, and RPME were $12.56{\pm}0.19$, $3.57{\pm}0.14$, $15.24{\pm}0.65$, $755.29{\pm}22.24$, $5.70{\pm}0.23$, and $774.03{\pm}29.48\;mg$/100 g, respectively. Like total phenolics, the highest 2,2'-diphenyl-1-picrylhydrazyl (DPPH) scavenging activities were found in RPME. However, inhibitory effects on lipid oxidation of RPME were similar to those of WPME and YPME. In addition, inhibitory effect of WPME, YPME, and RPME for human breast cancer cell (MCF-7) growth were 78.43, 81.90, and 96.52% while those on human prostate cancer cell (LNcap) were 71.58, 77.93, and 98.47% at $100{\mu}g/mL$, respectively. Total phenolics, quercetin content, antioxidant, and anticancer activities exhibited significant variation among the 3 onion varieties in this experiment. Therefore, it is assumed that antioxidant and anticancer activities were affected by the total phenolics and quercetin level of onion.

Induction of S phase Arrest of the Cell Cycle by Oak Smoke Flavoring (Holyessing) in Human Prostate Carcinoma Cells (인체 전립선 암세포에서 참나무 목초액에 의한 세포주기 S기 arrest 유발에 관한 연구)

  • Park Cheol;Lee Won Ho;Choi Byung Tae;Kim Kyoung Chul;Lee Yong Tae;Choi Yung Hyun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.17 no.5
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    • pp.1309-1314
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    • 2003
  • We examined the effects of Oak Smoke Flavoring (OSF, Holyessing) on the cell proliferation of DU145 and PC3 human prostate carcinoma cell line. OSF treatment resulted in a concentration-dependent inhibition of the cell viability in both DU145 and PC3 cell lines. The anti-proliferative effects by OSF treatment in DU145 and PC3 cells were associated with morphological changes such as membrane shrinking and cell rounding up. DNA flow cytometric histograms showed that population of S phase of the cell cycle was increased by OSF treatment in a dose-dependent manner. Western blot analysis revealed that cyclin B1 and cdc2 proteins were reduced by OSF treatment in DU145 cells, whereas cyclin A was markedly inhibited in PC3 cells. Furthermore, we observed an increase of Cdk inhibitor p16 and p27 protein, and an inhibition of phosphorylation of pRB by OSF treatment in a dose-dependent manner. The present results indicated that OSF-induced inhibition of human prostate carcinoma cell proliferation is associated with the blockage of S phase progression.

Identification of simvastatin-regulated targets associated with JNK activation in DU145 human prostate cancer cell death signaling

  • Jung, Eun Joo;Chung, Ky Hyun;Kim, Choong Won
    • BMB Reports
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    • v.50 no.9
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    • pp.466-471
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    • 2017
  • The results of this study show that c-Jun N-terminal kinase (JNK) activation was associated with the enhancement of docetaxel-induced cytotoxicity by simvastatin in DU145 human prostate cancer cells. To better understand the basic molecular mechanisms, we investigated simvastatin-regulated targets during simvastatin-induced cell death in DU145 cells using two-dimensional (2D) proteomic analysis. Thus, vimentin, Ras-related protein Rab-1B (RAB1B), cytoplasmic hydroxymethylglutaryl-CoA synthase (cHMGCS), thioredoxin domain-containing protein 5 (TXNDC5), heterogeneous nuclear ribonucleoprotein K (hnRNP K), N-myc downstream-regulated gene 1 (NDRG1), and isopentenyl-diphosphate Delta-isomerase 1 (IDI1) protein spots were identified as simvastatin-regulated targets involved in DU145 cell death signaling pathways. Moreover, the JNK inhibitor SP600125 significantly inhibited the upregulation of NDRG1 and IDI protein levels by combination treatment of docetaxel and simvastatin. These results suggest that NDRG1 and IDI could at least play an important role in DU145 cell death signaling as simvastatinregulated targets associated with JNK activation.