• 제목/요약/키워드: anticancer effect

검색결과 1,025건 처리시간 0.028초

지치뿌리로부터 분리한 Acetylshikonin의 LDL 산화 저해활성과 FPTase 저해활성 (Inhibitory Effect of Acetylshikonin from Roots of Lithospermum erythrorhizon on LDL Oxidation and FPTase Activity)

  • 김금숙;정태숙;권병목;김영옥;차선우;송경식;백남인
    • Journal of Applied Biological Chemistry
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    • 제52권4호
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    • pp.221-225
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    • 2009
  • Lithospermum erythrorhizon has been known well as one of traditional medicine for fever reduction, detoxication, and blood circulation improvement. This study was carried out to isolate biological active compounds from roots of Lithospermum erythrorhizon and to investigate their low density lipoprotein (LDL) antioxidant and anticancer activities. The hexane extract of Lithospermi Radix has been separated on silica gel chromatography and a naphthoquinone pigment compound 1 has been isolated. The structure of the compound 1 has been identified by spectroscopic technique, including MS and NMR, as acetylshikonin (1). Acetylshikonin showed significantly inhibitory activity on $Cu^{2+}$-induced human LDL oxidation with $IC_{50}$ value of $8.8\;{\mu}M$ and obvious anticancer effect by inhibiting farnesyl:protein transferase (FPTase) activity with $IC_{50}$ value of $23\;{\mu}M$, which suggested that acetylshikonin might be useful for the treatment of atherosclerosis and cancer.

Possible Anticancer Activity of Rosuvastatine, Doxazosin, Repaglinide and Oxcarbazepin

  • El Sharkawi, Fathia Zaky;El Shemy, Hany Abdelaziz;Khaled, Hussein Moustafa
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권1호
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    • pp.199-203
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    • 2014
  • Background: Rosuvastatine, doxazosin, repaglinide and oxcarbazepin are therapeutic drugs available in the market for the treatment of different diseases. Potential to display antitumor activities has also been suggested. The aim of the current study was to evaluate their in vitro effects on some human transformed cell lines. Materials and Methods: Cytotoxicity of the four drugs was tested in MCF-7, HeLa and HepG2 cells by the neutral red assay method and also the effect of rosuvastatine and doxazosin against Ehrlich Ascities Carcinoma Cells (EACC) by trypan blue assay. Results: Rosuvastatine exerted the greatest cytotoxic effect against HepG2 cells with an $IC_{50}$ value of $58.7{\pm}69.3$; in contrast doxazosin showed least activity with $IC_{50}=104.4{\pm}115.7$. Repaglinide inhibited the growth of both HepG2 and HeLa cells with $IC_{50}$ values of $87.6{\pm}117.5$ and $89.3{\pm}119.5$, respectively. Oxcarbazepine showed a potent cytotoxicity against both HeLa ($IC_{50}=19.4{\pm}43.9$) and MCF7 cancer cells (($IC_{50}=22{\pm}35.7$).On the other hand the growth of EACC was completely inhibited by doxazosine (100% inhibition) while rosuvastatine had weak inhibitory activity (11.6%). Conclusions: The four tested drugs may have cytotoxic effects against hepatic, breast and cervical carcinoma cells; also doxazosine may inhibit the growth of endometrial cancer cells. Further investigations in animals are needed to confirm these results.

Luteolin Arrests Cell Cycling, Induces Apoptosis and Inhibits the JAK/STAT3 Pathway in Human Cholangiocarcinoma Cells

  • Aneknan, Ploypailin;Kukongviriyapan, Veerapol;Prawan, Auemduan;Kongpetch, Sarinya;Sripa, Banchob;Senggunprai, Laddawan
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권12호
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    • pp.5071-5076
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    • 2014
  • Cholangiocarcinoma (CCA) is one of the aggressive cancers with a very poor prognosis. Several efforts have been made to identify and develop new agents for prevention and treatment of this deadly disease. In the present study, we examined the anticancer effect of luteolin on human CCA, KKU-M156 cells. Sulforhodamine B assays showed that luteolin had potent cytotoxicity on CCA cells with IC50 values of $10.5{\pm}5.0$ and $8.7{\pm}3.5{\mu}M$ at 24 and 48 h, respectively. Treatment with luteolin also caused a concentration-dependent decline in colony forming ability. Consistent with growth inhibitory effects, luteolin arrested cell cycle progression at the G2/M phase in a dose-dependent manner as assessed by flow cytometry analysis. Protein expression of cyclin A and Cdc25A was down-regulated after luteolin treatment, supporting the arrest of cells at the G2/M boundary. Besides evident G2/M arrest, luteolin induced apoptosis of KKU-M156 cells, demonstrated by a distinct sub-G1 apoptotic peak and fluorescent dye staining. A decrease in the level of anti-apoptotic Bcl-2 protein was implicated in luteolin-induced apoptosis. We further investigated the effect of luteolin on JAK/STAT3, which is an important pathway involved in the development of CCA. The results showed that interleukin-6 (IL-6)-induced JAK/STAT3 activation in KKU-M156 cells was suppressed by treatment with luteolin. Treatment with a specific JAK inhibitor, AG490, and luteolin diminished IL-6-stimulated CCA cell migration as assessed by wound healing assay. These data revealed anticancer activity of luteolin against CCA so the agent might have potential for CCA prevention and therapy.

Induction of apoptosis by methanol extracts of Ficus carica L. in FaDu human hypopharynx squamous carcinoma cells

  • Lee, Seul Ah;Park, Bo-Ram;Kim, Chun Sung
    • International Journal of Oral Biology
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    • 제45권3호
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    • pp.99-106
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    • 2020
  • Ficus carica L. (fig) is one of the first cultivated crops and is as old as humans. This plant has been extensively used as a traditional medicine for treating diseases, such as cough, indigestion, nutritional anemia, and tuberculosis. However, the physiological activity of fig leaves on oral cancer is as yet unknown. In this study, we investigated the anticancer effect of methanol extracts of Ficus carica (MeFC) and the mechanism of cell death in human FaDu hypopharyngeal squamous carcinoma cells. MeFC decreased the viability of oral cancer (FaDu) cells but did not affect the viability of normal (L929) cells, as determined by 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide assay and Live and Dead assay. In addition, MeFC induced apoptosis through the proteolytic cleavage of procaspase-3, -9, poly (ADP-ribose) polymerase (PARP), downregulation of Bcl-2, and upregulation of Bax, as determined by 4′,6-diamidino-2-phenylindole dihydrochloride staining and western blot analysis. Moreover, a concentration of MeFC without cytotoxicity (0.25 mg/mL) significantly suppressed colony formation, a hallmark of cancer development, and completely inhibited the colony formation at 1 mg/mL. Collectively, these results suggest that MeFC exhibits a potent anticancer effect by suppressing the growth of oral cancer cells and colony formation via caspase- and mitochondrial-dependent apoptotic pathways in FaDu human hypopharyngeal squamous carcinoma cells. Therefore, the methanol extract of Ficus carcica leaves provide a natural chemotherapeutic drug for human oral cancer.

인체 상피세포주와 암세포주에 대한 소목 추출물의 증식억제 효과 (Antiproliferative Effects of Caesalpinia sappan Extract on Human Epithelial Cell Line HaCaT and Cancer Cell Lines)

  • 한만덕;김응권
    • 치위생과학회지
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    • 제7권1호
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    • pp.31-35
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    • 2007
  • Caesalpinia sappan L. (Leguminosae) is an oriental medicinal herb distributed in China and Taiwan, and its heartwood has been traditionally used as an analgesic, a therapy for thrombosis or tumor. This study was to investigate the proliferation and inhibition effects of Caesalpinia sappan extracts against human epithelial cell and cancer cell lines. The methanol extract of dried C. sappan heartwood was evaporated (KS-6), and then sequentially extracted by hexane (KS-01), chloroform (KS-02), ethyl acetate (KS-03), n-butanol (KS-04), and water (KS-05). After 48 hr of exposure, these fractions at a concentration of $50{\mu}g/ml$ significantly increased, and reduced cell proliferation in both human normal epithelial and cancer cell lines. The ethyl acetate fraction (KS-03) among organic solvent fractions was 120.2% of the most proliferation activity ($50{\mu}g/ml$) against HaCaT human epithelial cell. However, fractions from chloroform, butanolic and methanolic extract had 7.2, 28.7 and 20.8% of antiproliferative effect on HaCaT cell, respectively. In cell proliferation effects of C. sappan extract on HeLa, SiHa and C33A human cervical cancer cells, chloroform fraction (KS-2) was the most antiproliferative activity, its antiproliferative rate (dosage, $50{\mu}g/ml$) relative to control was 25.8, 12.2 and 17.4% for SiHa, HeLa and C33A, respectively. The results indicated that the six extract fractions could induce cell cycle stimulate or arrest in some way. Finally, further investigation is needed to assess the molecular mechanisms mediated anticancer activities of this plant.

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발효쪽 추출물의 생리적 기능과 염색특성(제1보) (A Study on the Physiological Effects and Dyeing Properties of the Extract of Fermented (Part I))

  • 한신영;최석철
    • 한국의류학회지
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    • 제24권1호
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    • pp.96-104
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    • 2000
  • The purpose of this study was to investigate the antimicrobial activity, antimutagenic and anticancer effects and dyeing properties of the fermented indigo extract. The physiological effects of natural color extracts from colorant plants(gardenia, beet and indigo) were studied. The methanol extract of indigo showed an inhibitory effect on the growth of E. coli and Staph. aureus, and also showed a strong antimicrobial effect on Trich. mentagrophytes compared to others. The methanol extract of indigo showed antimutagenic activities against aflatoxin B1(AFB1) in the Ames test using Salmonella typhimurium TA 100. The proliferation of Clone M-3 mouse melanoma cells and A431 human epidermoid carcinoma cells was inhibited by the methanol extract of indigo. So we decided to use natural indigo for dyeing the fabrics because of those effects. Dried indigo leaves were fermented at variouss temperature and the fermented indigo was reduced by using alkaline(NaOH, Ca(OH)2) and glucose to dye the fabrics. The values of K/S fermented indigo showed the highest value when it was fermented at 3$0^{\circ}C$. The indigo fermented at 3$0^{\circ}C$ had the greatest number of total bacterial counts and we identified one of the main microorganisms as Aspergillus niger. This microorganism was responsible for the indigo fermentation and accelerated indigo fermentation. So it can be supposed to reduce the fermentation period of indigo by inoculating Aspergillus niger into the indigo leaves at 3$0^{\circ}C$.

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인간 간암세포주 HepG2에서 팔진항암단과 adriamycin의 병용처리에 의한 항종양 효과 (Anticancer Effect of Combination with Paljinhangahm-dan and Adriamycin on HepG2 Human Malignant Hepatoma Cell Line)

  • 백은기;문구;원진희;김동웅;백동기;윤준철;송봉길;이병호;박상구
    • 동의생리병리학회지
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    • 제17권5호
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    • pp.1243-1250
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    • 2003
  • This study was designed to elucidate the synergistic cytotoxic mechanisms of the co-treatment of adriamycin and Paljinhangahm-dan in human hepatoma malignant cancer cell line, HepG2. The combination of adriamycin and the ethanol extract of Paljinhangahm-dan synergistically augmented the cytotoxicity of Adriamycin and Paljinhangahm-dan in HepG2 cells. The cytotoxicity of two drugs was revealed as apoptosis characterized by DNA fragmentaton in agarose gel electrophoresis. The apoptotic cytotoxicity of adriamycin and Paljinhangahm-dan was accompanied by the cleavage of procaspase -3 protease and PARP. Of note, anti apoptotic Bcl2 protein was obviously decreased, but Fas was dramatically increased in HepG2 cells co-treated with Adriamycin and Paljinhangahm -dan. In addition, through 2-D gel electorphoresis, we observed that the expression levels of a lot of proteins were obviously changed by the status of drug treatments. This results suggest that the synergistic cytotoxicity of the co-treatment of adriamycin and Paljinhangahm-dan might be caused by the changes of the expression levels of a lot of proteins which play pivotal roles in cell survival or death.

TALP-32의 인체자궁암 세포주 HeLa에 대한 세포독성 (Cytocidal Effect of TALP-32 on Human Cervical Cancer Cell HeLa)

  • 박지훈;김종석;윤은진;송경섭;서강식;김훈;정연주;윤완희;임규;황병두;박종일
    • Toxicological Research
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    • 제22권4호
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    • pp.315-322
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    • 2006
  • TALP-32 is highly basic protein with a molecular weight of 32 kDa purified from human term placenta. Some basic proteins such as defensins and cecropins are known to induce cell death by increasing membrane permeability and some of them are under development as an anticancer drug especially targeting multi-drug resistant cancers. Therefore, we investigated cytotoxic effect and mechanism of TALP-32 When HeLa cell was incubated with TALP-32, cytotoxicity was increased in time and dose dependent manner. As time goes by, HeLa cells became round and plasma membrane was ruptured. Increase of plasma membrane permeability was determined with LDH release assay. Also in transmission electron microscopy, typical morphology of necrotic cell death, such as cell swelling and intracellular organelle disruption was observed, but DNA fragmentation and caspase activation was not. And necrotic cell death was determined with Annexin V/Pl staining. The cytotoxicity of TALP-32 was minimal and decreased or RBC and Hep3B respectively. These data suggests that TALP-32 induces necrosis on rapidly growing cells but not on slowly growing cells implicating the possibility of its development of anticancer peptide drug.

고삼이 항암제 cisplatin의 췌$\cdot$심장 부작용 감소에 미치는 영향 (Inhibitory Effects of Sophora Flavescens on the Pancreatic & Cardiac Side Effects of Chemotherapy by Cisplatin)

  • 김진철;임성철;정태영;서정철;한상원
    • 동의생리병리학회지
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    • 제19권4호
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    • pp.945-949
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    • 2005
  • The objective of this study is to investigate the inhibitor effects of an traditional oriental herb, Sophora flavescens on the pancreatic & cardiac side effects of chemotherapy were studied by using Bl6-BL6 melanoma-injected C57BL6 mouse tumor model. In this study, the effects of an traditional oriental herb, Sophora flavescens, on the side effects of chemotherapy were studied using B16 melanoma-injected C57BL6 mouse tumor model. Anticancer drugs widely used in clinical situation. Sophora flavescen has significant effect on the reduction of the side effects of chemotherapy. Water extract of Sophora flavescens significantly inhibited cisplatin-induced increase of amylase (AMY) which is a good indicator of pancreatic toxicity. Sophora flavescens extract does not decrease the anti-tumor activity of cisplatin showing that it can selectively inhibit side effects of anticancer drugs preserving beneficial effect. Theses results suggest a possibility that Sophora flavescens extract can be used for cancer patients for the reduction of the side effects and improving the quality of life during chemotherapy of cancer patients.

Mechanism of Apoptotic Cell Death by 2,4,3',5'-Tetramethoxystilbene in Human Promyelocytic Leukemic HL-60 Cells

  • Lee, Sang-Kwang;Chae, Ah-Reum;Chun, Young-Jin
    • Biomolecules & Therapeutics
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    • 제15권3호
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    • pp.145-149
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    • 2007
  • We have previously shown that 2,4,3',5'-tetramethoxystilbene (TMS), a synthetic trans-stilbene analogue acting as a potent inhibitor of human cytochrome P450 1B1, induces apoptotic cell death in human cancer cells. In the present studies, we report the mechanisms of apoptotic cell death by TMS in human promyelocytic leukemic HL-60 cells. We found that treatment of HL-60 cells with TMS suppressed the cell growth in a concentration-dependent manner with $IC_{50}$ value of about 0.8 ${\mu}M$. Immunoblot experiments revealed that DMHS-induced apoptosis was associated with cleavage of poly (ADP-ribose) polymerase. The release of cytochrome c from mitochondria into the cytosol was significantly increased in response to TMS. TMS caused activation of caspase-3 in a concentration-dependent manner and TMS-mediated caspase-3 activation was partially prevented by the caspase inhibitor, zVAD-fmk. Interestingly, we found that the cytotoxic effect of anticancer drugs such as paclitaxel, docetaxel, or etoposide was enhanced in the presence of TMS. Simultaneous treatment with TCDD also significantly increased cytotoxic effects of TMS alone or TMS and anti-cancer agents. Taken together, our present results indicated that TMS leads to apoptotic cell death in HL-60 cells through activation of caspase-3 activity and release of cytochrome c into cytosol. The ability of TMS to increase cytotoxic effect of anticancer drugs may contribute to its usefulness for cancer chemotherapy.