• Title/Summary/Keyword: Anticancer agent

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Anti-metastatic Potential of Ethanol Extract of Saussurea involucrata against Hepatic Cancer in vitro

  • Byambaragchaa, Munkhzaya;de la Cruz, Joseph;Yang, Seung Hak;Hwang, Seong-Gu
    • Asian Pacific Journal of Cancer Prevention
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    • v.14 no.9
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    • pp.5397-5402
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    • 2013
  • The rates of morbidity and mortality of hepatocellular carcinoma (HCC) have not lessened because of difficulty in treating tumor metastasis. Mongolian Saussurea involucrata (SIE) possesses various anticancer activities, including apoptosis and cell cycle arrest. However, detailed effects and molecular mechanisms of SIE on metastasis are unclear. Thus, the present study was undertaken to investigate antimetastatic effects on HCC cells as well as possible mechanisms. Effects of SIE on the growth, adhesion, migration, aggregation and invasion of the SK-Hep1 human HCC cell line were investigated. SIE inhibited cell growth of metastatic cells in dose- and time-dependent manners. Incubation of SK-Hep1 cells with $200-400{\mu}g/mL$ of SIE significantly inhibited cell adhesion to gelatin-coated substrate. In the migration (wound healing) and aggregation assays, SIE treated cells showed lower levels than untreated cells. Invasion assays revealed that SIE treatment inhibited cell invasion capacity of HCC cells substantially. Quantitative real time PCR showed inhibitory effects of SIE on MMP-2/-9 and MT1-MMP mRNA levels, and stimulatory effects on TIMP-1, an inhibitor of MMPs. The present study not only demonstrated that invasion and motility of cancer cells were inhibited by SIE, but also indicated that such effects were likely associated with the decrease in MMP-2/-9 expression of SK-Hep1 cells. From these results, it was suggested that SIE could be used as potential anti-tumor agent.

Luteolin Induces Apoptosis via Mitochondrial Pathway and Inhibits Invasion and Migration of Oral Squamous Cell Carcinoma by Suppressing Epithelial-Mesenchymal Transition Induced Transcription Factors

  • Park, Bong-Soo;Kil, Jong-Jin;Kang, Hae-Mi;Yu, Su-Bin;Park, Dan-Bi;Park, Jin-A;Kim, In-Ryoung
    • International Journal of Oral Biology
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    • v.43 no.2
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    • pp.69-76
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    • 2018
  • Oral squamous cell carcinoma (OSCC) is the most common type of oral malignancy. Numerous therapies have been proposed for its cure. Research is continually being conducted to develop new forms of treatment as current therapies are associated with numerous side-effects. Luteolin, a common dietary flavonoid, has been demonstrated to possess strong anti-cancer activity against various human cancer cell lines. Nevertheless, research into luteolin-based anticancer activity against oral cancer remains scarce. Thus, the objective of this study was to assess the effect of luteolin as an anti-cancer agent. After treatment with luteolin, Ca9-22 and CAL-27 oral cancer cells showed condensed nuclei and enhanced apoptotic rate with evidence of mitochondria-mediated apoptosis. Epithelialmesenchymal transition (EMT) is closely related to tumor migration and invasion. Luteolin suppressed cancer cell invasion and migration in the current study. Elevated expression of E-cadherin, an adherens junction protein, was evident in both cell lines after luteolin treatment. Luteolin also significantly inhibited transcription factors (i.e., N-cadherin, Slug, Snail, Twist, and ZEB-1) that regulated expression of tumor suppressors such as E-cadherin based on Western blot analysis and quantitative PCR. Thus, luteolin could induce mitochondrial apoptosis and inhibit cancer cell invasion and migration by suppressing EMT-induced transcription factors.

Effects of polysaccharides derived from Orostachys japonicus on induction of cell cycle arrest and apoptotic cell death in human colon cancer cells

  • Ryu, Deok-Seon;Baek, Geum-Ok;Kim, Eun-Young;Kim, Ki-Hoon;Lee, Dong-Seok
    • BMB Reports
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    • v.43 no.11
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    • pp.750-755
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    • 2010
  • Crude Orostachys japonicus polysaccharide extract (OJP) was prepared by hot steam extraction. Polysaccharides (OJPI) were separated from OJP by gel filtration chromatography and phenol-sulfuric acid assay. The average molecular weight of the OJPI was 30-50 kDa. The anti-proliferative effect of OJPI on HT-29 human colon cancer cells was investigated via morphology study, cell viability assay, apoptosis assay, cell cycle analysis, and cDNA microarray. OJPI inhibited proliferation and growth of HT29 cells and also stimulated apoptosis in a dose- and time-dependent manner. In cell cycle analysis, treatment with OJPI resulted in a marked increase of cells in the G0 (sub G1) and G2/M phases. To screen for genes involved in the induction of cell cycle arrest and apoptosis, the gene expression profiles of HT-29 cells treated with OJPI were examined by cDNA microarray, revealing that a number of genes were up- or down-regulated by OJPI. Whereas several genes involved in anti-apoptosis, cell proliferation and growth, and cell cycle regulation were down-regulated, expression levels of several genes involved in apoptosis, tumor suppression, and other signal transduction events were up-regulated. These results suggest that OJPI inhibits the growth of HT-29 human colon cancer cells by various apoptosis-aiding activities as well as apoptosis itself. Therefore, OJPI deserve further development as an effective agent exhibiting anticancer activity.

Extraction of Taxol and Baccatin III from Needles of Taxus Cuspidata by Using Supercritical Carbon Dioxide with Cosolvents (초임계 이산화탄소와 보조용매를 이용한 주목잎에서의 Taxol과 Baccatin III의 추출)

  • 신혜원;전문균이훈
    • KSBB Journal
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    • v.11 no.1
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    • pp.100-106
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    • 1996
  • The extraction of taxol and baccatin III from the ground needles of Taxus cuspidata were carried out by using supercritical carbon dioxide with and without cosolvents such as ethylacetate and methanol at 300 bar and 313K. Taxol is a promising anticancer agent and baccatin III is a precursor of semisysthesis of taxol. The taxol and baccatin III contents in the extracts were determined by a HPLC. The highest yields of taxol and baccatin III could be obtained by the supercritical extraction with 3wt% methanol and ethylacetate, respectively, as cosolvents. It was also found that the selectivity of taxol and baccatin III were 0.117 and 1.245wt%, respectively, with 0.7wt% ethylacetate, which demonstrated that the selectivity of taxol and baccatin III were increased about 1.8 and 19 times than those of conventional organic solvent extraction.

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The effects of Somok on apoptosis of human liver cancer HepG2 cell. (소목(蘇木)이 사람 간암 세포주인 HepG2의 세포사멸에 미치는 영향과 그 경로)

  • Kim, Pan-Jun;Yun, Hyun-Joung;Lee, Young-Tae;Seo, Kyo-Soo;Park, Sun-Dong
    • Herbal Formula Science
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    • v.13 no.2
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    • pp.111-123
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    • 2005
  • The purpose of this study was to investigate the anticancer effects of Caesalpiniae Lignum (Somok) on HepG2 cells, a human liver cancer cell line. To study the cytotoxic effect of Caesalpiniae Lignum methanol extract (CL-MeOH) on HepG2 cells, the cells were treated with various concentrations of CL-MeOH and then cell viability was determined by XTT reduction method and trypan blue exclusion assay. CL-MeOH reduced proliferation of HepG2 cells in a dose-dependent manner. To confirm the induction of apoptosis, HepG2 cells were treated with various concentrations of CL-MeOH. The activation of caspase 3 and the cleavage of poly ADP-ribose polymerase (PARP), a substrate for caspase-3 and a typical sign of apoptosis, was examined by western blot analysis. CL-MeOH decreased procaspase 3 level in a dose-dependent manner and induced the clevage of PARP at concentration> $200{\mu}/ml$. Mitogen-activated protein (MAP) kinase signaling cascades are multi-functional signaling networks that influence cell growth, differentiation, apoptosis, and cellular responses to stress. CL-MeOH-induced MAPK activation was examined by Western blot for phosphorylated ERK, p38 and JNK. CL-MeOH significantly increased p38 phosphorylation and JNK phosphorylation in a dose-dependent manner. Inhibition of p38 function using the selective inhibitor SB20358O results in inhibition of apoptosis by CL-MeOH. These results suggest that CL-MeOH-induced apoptosis is MAP kinase-dependent apoptoric pathway. These results suggest that CL-MeOH is potentially useful as a chemotherapeutic agent in human liver cancer.

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Surfactin Blocks NO Production in Lipopolysaccharide-activated Macrophages by Inhibiting $NF-{\kappa}B$ Activation

  • Byeon, Se-Eun;Lee, Yong-Gyu;Kim, Byung-Hun;Shen, Ting;Lee, Sang-Yeol;Park, Hwa-Jin;Park, Seung-Chun;Rhee, Man-Hee;Cho, Jae-Youl
    • Journal of Microbiology and Biotechnology
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    • v.18 no.12
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    • pp.1984-1989
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    • 2008
  • Surfactin is a natural biosurfactant derived from Bacillus subtilis and has various biological activities such as anticancer, antiplatelet, and anti-inflammatory effects. In this study, the inhibitory mechanism of surfactin in NO production from macrophages was examined. Surfactin down regulated LPS-induced NO production in RAW264.7 cells and primary macrophages with $IC_{50}$ values of 31.6 and $22.4{\mu}M$, respectively. Immunoblotting analysis showed that surfactin strongly blocked the phosphorylation of IKK and $l{\kappa}B{\alpha}$ and the nuclear translocation of $NF-{\kappa}B$ (p65). Therefore, these data suggest that surfactin may act as a bacterium-derived anti-inflammatory agent with anti-$NF-{\kappa}B$ activity.

Anti-platelet Effects of Isoscopoletin through Regulation of PI3K/Akt and MAPK on Collagen-induced Human Platelets (콜라겐-유도의 사람 혈소판에서 PI3K/Akt 및 MAPK 조절을 통한 Isoscopoletin의 항혈소판 효과)

  • Lee, Dong-Ha
    • Korean Journal of Pharmacognosy
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    • v.51 no.3
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    • pp.151-157
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    • 2020
  • When blood vessels are damaged, a rapid hemostatic reaction occurs to minimize blood loss and maintain normal circulation. Platelet activation and aggregation is essential in this process. However, excessive platelet aggregation or abnormal platelet aggregation may be the cause of cardiovascular disease, such as thrombosis, stroke and atherosclerosis. Therefore, it is important to prevent and treat cardiovascular disease by finding substances that can regulate platelet activation and suppress aggregation reactions. Isoscopoletin, which is mainly found in the roots of plants Artemisia or Scopolia, has been reported to have potential pharmacological effects on anticancer and Alzheimer's disease, but its role and mechanisms for platelet aggregation and thrombus formation are unknown. This study confirmed the effect of isoscopoletin on major regulation of collageninduced human platelet aggregation, TXA2 production and intracellular granular secretion (ATP and serotonin release). In addition, the effects of isoscopoletin on phosphorylation of phosphorylated proteins PI3K/Akt and MAPK involved in signal transduction in platelet aggregation was studied. As a result, isoscopoletin significantly inhibited the phosphorylation of PI3K/Akt and MAPK, significantly inhibiting platelet aggregation through TXA2 production and intracellular granular secretion (ATP and serotonin release). Therefore, we suggest that isoscopoletin is an anti-platelet substance that regulates phosphorylation of phosphorus proteins such as PI3K/Akt and MAPK and is valuable as a preventive and therapeutic agent for platelet-derived cardiovascular disease.

Cantharidin Overcomes Imatinib Resistance by Depleting BCR-ABL in Chronic Myeloid Leukemia

  • Sun, Xiaoyan;Cai, Xueting;Yang, Jie;Chen, Jiao;Guo, Caixia;Cao, Peng
    • Molecules and Cells
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    • v.39 no.12
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    • pp.869-876
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    • 2016
  • Cantharidin (CTD) is an active compound isolated from the traditional Chinese medicine blister beetle and displayed anticancer properties against various types of cancer cells. However, little is known about its effect on human chronic myeloid leukemia (CML) cells, including imatinib-resistant CML cells. The objective of this study was to investigate whether CTD could overcome imatinib resistance in imatinib-resistant CML cells and to explore the possible underlying mechanisms associated with the effect. Our results showed that CTD strongly inhibited the growth of both imatinib-sensitive and imatinib-resistant CML cells. CTD induced cell cycle arrest at mitotic phase and triggered DNA damage in CML cells. The ATM/ATR inhibitor CGK733 abrogated CTD-induced mitotic arrest but promoted the cytotoxic effects of CTD. In addition, we demonstrated that CTD downregulated the expression of the BCR-ABL protein and suppressed its downstream signal transduction. Real-time quantitative PCR revealed that CTD inhibited BCR-ABL at transcriptional level. Knockdown of BCR-ABL increased the cell-killing effects of CTD in K562 cells. These findings indicated that CTD overcomes imatinib resistance through depletion of BCR-ABL. Taken together, CTD is an important new candidate agent for CML therapy.

Antioxidative and Cytotoxic Effects of Solvent Fractions from Elaeagnus multiflora (뜰보리수 열매의 용매분획별 항산화 및 암세포 증식 억제 효과)

  • Kim, Sung-Ae;Oh, Se-In;Lee, Mee-Sook
    • The Korean Journal of Food And Nutrition
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    • v.20 no.2
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    • pp.134-142
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    • 2007
  • This study was performed to determine the antioxidative and cytotoxic effects of Elaeagnus multiflora by examining its scavenging effects on the 1,1-diphenyl-2-picryl-hydrazyl(DPPH) radical, the inhibition of lipid peroxidation, and its inhibitory effects on cancer cell proliferation in HeLa cells, MCF-7 cells, and SNU-638 cells by MTT assay. Here, dried samples were extracted in ehtanol at room temperature and fractionated into five different solvent types: hexane, dichloromethane, ethylacetate, butanol, and aqueous partition layers. The hexane(62.92${\pm}$2.45%) and dichloromethane(65.25${\pm}$4.74%) fractions of Elaeagnus multiflora's flesh, and the aqueous(94.65${\pm}$0.02%) and ethylacetate(93.83${\pm}$0.02%) fractions of Elaeagnus multiflora's seeds, inhibited DPPH radical production. The DPPH radical scavenging effects of the flesh and seed were different according to solvent fractions. The inhibition of lipid peroxidation by the flesh and seed extracts were 76.11${\pm}$3.66 and 69.57${\pm}$2.27, respectively, for hexane and 67.57${\pm}$2.43 and 62.09${\pm}$0.90, respectively, for the dichloromethane fraction. Among the various partition layers of Elaeagnus multiflora's flesh, hexane and dichloromethane showed the strong cytotoxicities on all the cancer cell lines used in the study. Also all the fractions of Elaeagnus multiflora's seed exhibited significant effects on the inhibition of cancer cell growth(hexane > dichloromethane > ethylacetate > butanol > aqueous partition layers). These results indicate that the haxane and dichloromethane partition layers of Elaeagnus multiflora's flesh and seed extracts have possible antioxidative and anticancer capacities. Although further studies are needed, the present work suggests that Elaeagnus multiflora may be an antioxidative and chemopreventive agent.

Induction of Apoptosis and Its Mechanism by Siegesbeckia Glabrescens in HepG2 cells (간암 세포주에서의 희렴의 Apoptosis 유도와 기전)

  • Kim, Yoon-Tae;Lee, Heon-Jae;Kim, Gil-Whon;Shin, Heung-Mook
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.19 no.3
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    • pp.640-646
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    • 2005
  • This study was performed for the investigation of anticancer effects of Siegesbeckia glabrescens(SG) on HepG2 cells, a human hepatoma cell line. In the previous study, we examined the involvement of nitric oxide (NO) on anti-proliferative and apoptotic efficacy of SG in vascular smooth muscle cells. The possible mechanism of the apoptotic effects of SG was investigated in HepG2 cells. SG showed potent cytotoxic activity in HepG2 but not chang cells, liver normal cells. SG treatment caused morphological change such as cell shrinkage, nuclei condensation and cell blebbing in HepG2 cells. SG also increased the nitrite production of HepG2 cells in a dose-dependent manner. Furthermore, L-NNA treatment inhibited the anti-proliferative effect of SG. From RT-PCR, SG decreased Bcl-2 but no affected on Bax. Western blot for procaspase-3 and COX-2 showed that degradation of procaspase-3 protein level or inhibition of COX-2 protein expression by SG treatment. In addition, the apoptotic effect of SG was also demonstrated by DNA laddering. In conclusion, SG-induced HepG2 cells death can occur via apoptosis which was dose-dependent, and associated with apoptosis-related Bcl-2/Bax gene expressions, COX-2 inhibition, caspase-3 activation and NO pathway. These results suggest that SG is potentially useful as a chemotherapeutic/chemopreventive agent in hepatocellular carcinoma.