• Title/Summary/Keyword: Tumor Proliferation

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Growth Inhibition of Human Hepatoma and Bladder Carcinoma Cells by DNA Topoisomerae Inhibitor β-lapachone (DNA topoisomerase 억제제인 β-lapachone에 의한 인체 간암 및 방광암세포 증식억제에 관한 연구)

  • Choi Da Yean;Lee Jae Il;Chung Hyun Sup;Seo Han Gyeol;Woo Hyun Joo;Choi Yung Hyun
    • Journal of Life Science
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    • v.15 no.3 s.70
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    • pp.323-331
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    • 2005
  • The objective of the present study was to investigate the effect of $\beta-lapachone$, a quinone obtained from the bark of the lapacho tree (Tabebuia avellanedae) in South America, on the cell growth of human hepatoma (HepG2) and bladder (T24) carcinoma cells. Exposure of cancer cells to $\beta-lapachone$ resulted in growth inhibition, morphological changes and apoptosis in a concentration-dependent manner, which could be proved by MTT assay and flow cytometry analysis. Reverse transcription-polymerase chain reaction (RT-PCR) and Western blot analyses revealed that $\beta-lapachone$ did not affect the levels of tumor suppressor p53 and cyclin-dependent kinase (Cdk) inhibitor p21 (WAFl/CIPl) expression. However, the transcriptional factor Sp-l and proliferating cell nuclear antigen (PCNA) protein levels were significantly down-regulated by $\beta-lapachone$ in both cell lines. Moreover, $\beta-lapachone$ treatment caused a dose-dependent inhibition of the expression of telomere regulatory gene products such as human telomere reverse transcriptase (hTERT) and telomerase-associated protein-l (TEP-l). Taken together, these findings suggest that $\beta-lapachone$-induced inhibition of human hepatoma and bladder carcinoma cell proliferation is associated with the induction of apoptotic cell death via modulation of several major growth regulatory gene products, and provide important new insights into the additional mechanisms of the anti-cancer activity of $\beta-lapachone$.

Immunomodulatory activities of crude polysaccharide fraction separated from Perilla frutescens Britton var. acuta Kudo (자소엽(Perilla frutescens Britton var. acuta Kudo) 조다당류 추출물의 면역활성 효과)

  • Byun, Eui-Hong
    • Korean Journal of Food Science and Technology
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    • v.49 no.5
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    • pp.559-566
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    • 2017
  • This aim of this study was to examine the immunomodulatory activities of crude polysaccharides from Perilla frutescens Britton var. acuta Kudo (PCP) in mouse bone marrow-derived dendritic cells (BMDC) and splenocytes. The immunomodulatory activity was determined by cell viability, nitric oxide (NO) production, cell surface marker expression (CD 80/86 and MHC class I/II), and cytokine production in BMDC, and cell viability, and cytokine production in splenocytes. Cell proliferation and cytokine production (tumor necrosis factor; TNF-${\alpha}$, interleukin (IL)-6, IL-$1{\beta}$, and IL-12) tested in BMDC were significantly increased by PCP treatment. Additionally, the cell surface markers (CD 80/86, MHC class I/II) were highly increased by PCP treatment. For cytokine production in splenocytes, PCP treatment significantly increased the production of Th 1 cytokines [IL-2 and interferon (IFN)-${\gamma}$], but not Th 2 cytokines (IL-4). Therefore, PCP can induce immune cell activation and is a potential candidate for the development of nutraceuticals to boost the immune system.

Induction of Apoptotic Cell Death by Aqueous Extract of Cordyceps militaris Through Activation of Caspase-3 in Human Hepatocarcinoma Hep3B Cells (Hep3B 간암세포에서 Caspase-3 활성화를 통한 동충하초 열수추출물의 Apoptosis 유도에 관한 연구)

  • Kim, Kyung-Mi;Park, Cheol;Seo, Sang-Ho;Hong, Sang-Hoon;Lee, Won-Ho;Choi, Yung-Hyun
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.37 no.6
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    • pp.714-720
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    • 2008
  • Cordyceps militaris is a medicinal fungus which has been used for patient suffering from cancer in Oriental medicine. It was previously reported that C. militaris extracts are capable of inhibiting tumor growth and inducing apoptosis; however, the anti-poliferative effects of human cancer cells have been poorly understood. In this study, to elucidate the anti-cancer mechanisms of human cancer cells by treatment with aqueous extract of C. militaris (AECM), we investigated the anti-proliferative effects of AECM in human hepatocarcinoma Hep3B cells. AECM treatment inhibited the growth of Hep3B cells and induced the apoptotic cell death in a concentration-dependent manner such as formation of apoptotic bodies and increased populations of apoptotic-sub G1 phase. The induction of apoptosis by AECM was connected with a proteolytic activation of caspase-3 and caspase-8. and concomitant degradation of poly (ADP-ribose) polymerase (PARP) and ${\beta}$-catenin proteins. Furthermore, caspase-3 inhibitor, z-DEVD-fmk, significantly inhibited AECM-induced apoptosis demonstrating the important role of caspase-3 in the bserved cytotoxic effect. Taken together, these findings suggest that AECM-induced inhibition of human hepatocarcinoma cell proliferation is associated with the induction of apoptotic cell death via activation of caspase-3 and C. militaris may have therapeutic potential in human cancer.

Use of Real-Time Quantitative PCR to Identify High Expressed Genes in Head and Neck Squamous Cell Carcinoma Cell Lines

  • Lee, Yong-Gyoo;Chun, So-Young;Lee, Hae-Ahm;Sohn, Yoon-Kyung;Kang, Ku-Seong;Kim, Joung-Ok;Yun, Sang-Mo;Kim, Jung-Wan;Jang, Hyun-Jung
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • v.32 no.1
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    • pp.69-75
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    • 2006
  • Head and neck squamous cell carcinoma(HNSCC) is the sixth most common cancer among men in the developed world affecting the tongue, pharynx, larynx and oral cavity. HNSCC is thought to represent a multistep process whereby carcinogen exposure leads to genetic instability in the tissue and accumulation of specific genetic events, which result in dysregulation of proliferation, differentiation, and cell loss and the acquisition of invasive capacity. Despite therapeutic and diagnostic progress in oncology during the past decades, the prognosis of HNSCC remains poor. Thus it seems that finding a biological tumor markers which will increase the early diagnosis and treatment monitoring rates, is of paramount importance in respect to improving prognosis. In an effort to identify gene expression signatures that may serve as biomarkers, this study several genes were selected, such as H3,3A, S100A7, UCHL1, GSTP1, PAI-2, PLK, TGF${\beta}$1 and bFGF, and used 7 HNSCC cell lines that were established various anatomical sites, and also 17 other cancer cell lines were used for control group using real-time quantitative RT-PCR and immunocytochemical analysis with a monoclonal antibody. In this study, S100A7 showed a clearly restricted occurrence in tongue originated cell line, and GSTP1 expression level in the pharynx originated cell line was very increased, relative to corresponding other cell lines. These results suggest that S100A7 and GSTP1 genes' expression can occur during tongue and pharynx originated head and neck tumorigenesis and that genetic change is an important driving force in the carcinogenesis process. This data indicate that S100A7 and GSTP1 expression pattern in HNSCC reflect both diagnostic clue and biological marker. And this is provides a foundation for the development of site-specific diagnostic strategies and treatments for HNSCC.

Constitutive Activation of $p70^{S6k}$ in Cancer Cells

  • Kwon, Hyoung-Keun;Bae, Gyu-Un;Yoon, Jong-Woo;Kim, Yong-Kee;Lee, Hoi-Young;Lee, Hyang-Woo;Han, Jeung-Whan
    • Archives of Pharmacal Research
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    • v.25 no.5
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    • pp.685-690
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    • 2002
  • The mitogen-stimulated serine/threonine kinase $p70^{S6k}$ plays an important role in the progression of cells from $G_0/G$_1$$ to S phase of the cell cycle by translational up-regulation of a family of mRNA transcripts family of mRNA transcripts which contain polypyrimidine tract at their 5 transcriptional start site. Here, we report that $p70^{S6k}$ was constitutively phosphorylated and activated to various degrees in serum-deprived AGS, A2058, HT-1376, MG63, MCF7, MDA-MB-435S, MDA-MB-231 and MB-157. Rapamycin treatment induced a significant dephosphorylation and inactivation of $p70^{S6k}$ in all cancer cell lines, while wortmannin, a specific inhibitor of PI3-K, caused a mild dephosphorylation of $p70^{S6k}$ in AGS, MDA-MB-435S and MB-157. In addition, SQ20006, methylxanthine phosphodiesterase inhibitor, reduced the phosphorylation of $p70^{S6k}$ in all cancer cells tested. Consistent with inhibitory effect of rapamycin on $p70^{S6k}$ activity, rapamycin inhibited [$^3H$]-thymidine incorporation and increased the number of cells at $G_{0}G_{1}$ phase. Furthermore, these inhibitory effects were accompanied by the decrease in growth of cancer cells. Taken together, the results indicate that the antiproliferative activity of rapamycin might be attributed to cell cycle arrest at $G_{0}G_{1}$ phase in human cancer cells through the inhibition of constitutively activated $p70^{S6k}$ of cancer cells and suggest $p70^{S6k}$ as a potential target for therapeutic strategies aimed at preventing or inhibiting tumor growth.

Role of NFAT5 in Osteogenic Differentiation of Human Adipose Tissue-Derived Mesenchymal Stem Cells (인체 지방 유래 중간엽 줄기세포의 골분화 조절 기전에서 NFAT5의 역할)

  • Lee, Sun Young;Yang, Ji won;Jung, Jin Sup
    • Journal of Life Science
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    • v.23 no.4
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    • pp.471-478
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    • 2013
  • Human adipose tissue-derived mesenchymal stem cells (hADSCs) have therapeutic potential, including the ability to self-renew and differentiate into multiple lineages. Understanding of molecular mechanisms of stem cell differentiation is important for improving the therapeutic efficacies of stem cell transplantation. In this study, we determined the role of nuclear factor of activated T cells (NFAT5) in the osteogenic differentiation of hADSCs. The down-regulation of NFAT5 expression by the transfection of a specific siRNA significantly inhibited osteogenic differentiation of hADSCs and decreased the activity of the nuclear factor kappa-light-chain-enhancer of activated B cells (NF-${\kappa}B$) promoter without affecting their proliferation and adipogenic differentiation. The inhibition of NFAT5 expression inhibited the basal and Tumor Necrosis Factor ${\alpha}$ (TNF-${\alpha}$) induced activation of NF-${\kappa}B$, but it did not affect TNF-${\alpha}$-induced degradation of the $I{\kappa}B$ protein. These findings indicate that NFAT5 plays an important role in the osteogenic differentiation of hADSCs through the modulation of the NF-${\kappa}B$ pathway.

Role of Sp in the Regulation of Notch1 Gene Expression by Curcumin (커큐민에 의한 노치발현 조절에서 Sp의 역할)

  • Park, Seon-Yeong;Kang, Yong-Gyu;Bae, Yun-Hee;Kim, Su-Ryun;Park, Hyun-Joo;Kang, Young-Soon;Kim, Mi-Kyoung;Wee, Hee-Jun;Jang, Hye-Ock;Bae, Moon-Kyoung;Woo, Jae Suk;Bae, Soo-Kyung
    • KSBB Journal
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    • v.28 no.1
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    • pp.1-6
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    • 2013
  • Curcumin has diverse anticancer activities that lead to tumor growth inhibition of cancer cells and induction of apoptosis. Curcumin is involved in the regulation of multiple genes via transcription factors including NF-${\kappa}B$, STATs, AP1, and SP. Notch signaling plays critical roles in maintaining the balance between cell proliferation, differentiation and apoptosis, and thereby may contribute to the development of various cancers involving breast cancer. This study was to investigate the effects of curcumin on Notch1 gene expression and to explore the underlying mechanism. Here, we found that curcumin decreased the levels of Notch1 mRNA and protein in MDA-MB-231 human breast cancer cells, along with the downregulation of Sp family genes (Sp1, Sp2, Sp3, and Sp4). The repressive effect of curcumin on Notch1 gene transcription was confirmed by performing Notch1 promoter-driven reporter assay and three Sp-binding sites were identified on Notch1 promoter that may act as curcumin-respose elements. Moreover, treatment with mitramycin A, a specific Sp inhibitor, decreased the levels of Notch1 mRNA and protein in human breast cancer cells. Taken together, our results indicate that Notch1 gene expression is downregulated by curcumin, at least in part, through the suppression of Sp family, which may lead to apoptosis in human breast cancer cells.

The Mitochondrial Warburg Effect: A Cancer Enigma

  • Kim, Hans H.;Joo, Hyun;Kim, Tae-Ho;Kim, Eui-Yong;Park, Seok-Ju;Park, Ji-Kyoung;Kim, Han-Jip
    • Interdisciplinary Bio Central
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    • v.1 no.2
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    • pp.7.1-7.7
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    • 2009
  • "To be, or not to be?" This question is not only Hamlet's agony but also the dilemma of mitochondria in a cancer cell. Cancer cells have a high glycolysis rate even in the presence of oxygen. This feature of cancer cells is known as the Warburg effect, named for the first scientist to observe it, Otto Warburg, who assumed that because of mitochondrial malfunction, cancer cells had to depend on anaerobic glycolysis to generate ATP. It was demonstrated, however, that cancer cells with intact mitochondria also showed evidence of the Warburg effect. Thus, an alternative explanation was proposed: the Warburg effect helps cancer cells harness additional ATP to meet the high energy demand required for their extraordinary growth while providing a basic building block of metabolites for their proliferation. A third view suggests that the Warburg effect is a defense mechanism, protecting cancer cells from the higher than usual oxidative environment in which they survive. Interestingly, the latter view does not conflict with the high-energy production view, as increased glucose metabolism enables cancer cells to produce larger amounts of both antioxidants to fight oxidative stress and ATP and metabolites for growth. The combination of these two different hypotheses may explain the Warburg effect, but critical questions at the mechanistic level remain to be explored. Cancer shows complex and multi-faceted behaviors. Previously, there has been no overall plan or systematic approach to integrate and interpret the complex signaling in cancer cells. A new paradigm of collaboration and a well-designed systemic approach will supply answers to fill the gaps in current cancer knowledge and will accelerate the discovery of the connections behind the Warburg mystery. An integrated understanding of cancer complexity and tumorigenesis is necessary to expand the frontiers of cancer cell biology.

TREATMENT OF CAPILLARY HEMANGIOMA ON MAXILLARY BUCCAL MUCOSA : A CASE REPORT (상악 협측 치은에 발생한 모세혈관종 치험례)

  • Kang, Keun-Young;Choi, Nam-Ki;Kim, Seon-Mi;Yang, Kyu-Ho
    • Journal of the korean academy of Pediatric Dentistry
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    • v.31 no.4
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    • pp.680-684
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    • 2004
  • The hemangioma, a benign proliferation of blood vessel, is the most common tumor of infancy and childhood. In many instances, the lesion probably represents a hamartoma or malformation rather than a true neoplasm. In the oral cavity, common sites are lips, followed by tongue, buccal mucosa and palate. Clinical characteristics appear as a flat or raised reddish-blue lesion and are generally solitary. They are classified on the basis of their histological appearance into capillary, mixed, cavernous or a sclerosing variety. A 6-year-old male of this case was referred to the Department of Pediatric Dentistry, Chonnam National University with a chief complaint of swelling lesion on gingiva. The strawberry appearance mass was detected by clinical examination on attached gingiva at the upper left primary lateral incisor and canine. Surgical excision and biopsy were carried out for histological examination and the lesion was diagnosed with a capillary hemangioma. The risk of recurrence after this therapy is rare, and there is no malignant transformation. Despite their benign origins and behaviour, hemangiomas in the region of oral cavity are always clinically important to the dental profession because of bleeding tendency.

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Induction of G2/M Arrest of the Cell Cycle by Genistein in Human Bladder Carcinoma and Leukemic Cells (인체 방광암 및 백혈병세포에서 genistein에 의한 세포주기 G2/M arrest 유발에 관한 연구)

  • Kim, Eu-Kyum;Myong, You-Ho;Song, Kwan-Sung;Lee, Ki-Hong;Rhu, Chung-Ho;Choi, Yung-Hyun
    • Journal of Life Science
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    • v.16 no.4
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    • pp.589-597
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    • 2006
  • Genistein, a natural isoflavonoid phytoestrogen, is a strong inhibitor of protein tyrosine kinase and DNA topoisomerase activities. There are several studies documenting molecular alterations leading to cell cycle arrest and induction of apoptosis by genistein as a chemopreventive agent in a variety of cancer cell lines; however, its mechanism of action and its molecular targets on human bladder carcinoma and leukemic cells remain unclear. In the present study, we have addressed the mechanism of action by which genistein suppressed the proliferation of T24 bladder carcinoma and U937 leukemic cells. Genistein significantly inhibited the cell growth and induced morphological changes, and induced the G2/M arrest of the cell cycle in both T24 and U937 cells with a relatively stronger cytotoxicity in U937. The G2/M arrest in T24 cells was associated with the inhibition of cyclin A, cyclin B1 and Cdc25C protein expression without alteration of tumor suppressor p53 and cyclin-dependent kinase (Cdk) inhibitor p21(WAF1/CIP1). However, the inhibitory effects of genistein on the cell growth of U937 cells were connected with a marked inhibition of cyclin B1 and an induction of Cdk inhibitor p21 proteins by p53-independent manner. These data suggest that genistein may exert a strong anticancer effect and additional studies will be needed to evaluate the different mechanisms between T24 and U937 cells.