Mechanism Underlying Curcumin-induced Apoptosis and Cell Cycle Arrest on SCC25 Human Tongue Squamous Cell Carcinoma Cell Line

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' Mechanism Underlying Curcumin-induced Apoptosis and Cell Cycle Arrest on SCC25 Human Tongue Squamous Cell Carcinoma Cell Line' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 치과의학, 이비인후과학, 안과학
  • apoptosis
  • cell cycle arrest
  • curcumin
  • oral squamous cell carcinoma
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' Mechanism Underlying Curcumin-induced Apoptosis and Cell Cycle Arrest on SCC25 Human Tongue Squamous Cell Carcinoma Cell Line' 의 참고문헌

  • [Cell cycle regulation after exposure to ionizing radiation]
    Teyssier F Bull Cancer 86 : 345 ~ 357 [1999]
  • Tongue cancer: Is there a difference in survival compared with other subsites in the oral cavity?
    Bell RB J Oral Maxillofac Surg 65 : 229 ~ 236 [2007]
  • Three-dimensional structure of the apoptosome : implications for assembly, procaspase-9 binding, and activation
    Acehan D Mol Cell 9 : 423 ~ 432 [2002]
  • The role of the ubiquitin-proteasome pathway in apoptosis
    Orlowski RZ Cell Death Differ 6 : 303 ~ 313 [1999]
  • The chemopreventive properties and therapeutic modulation of green tea polyphenols in oral squamous cell carcinoma
    Lee UL ISRN Oncol 2011 : 403707 ~ [2011]
  • The biochemistry of apoptosis
    Hengartner MO Nature 407 : 770 ~ 776 [2000]
  • Serum cytochrome c indicates in vivo apoptosis and can serve as a prognostic marker during cancer therapy
    Barczyk K Int J Cancer 116 : 167 ~ 173 [2005]
  • Role of apoptosisinducing factor(Aif)in the T cell lineage
    Prabhu SB Indian J Med Res 138 : 577 ~ 590 [2013]
  • Requirement of p27Kip1 for restriction point control of the fibroblast cell cycle
    Coats S Science 272 : 877 ~ 880 [1996]
  • Report of the Tenth International Symposium of the Foundation for Promotion of Cancer Research : Basic and Clinical Research in Head and Neck cancer
    Clayman GL Jpn J Clin Oncol 27 : 361 ~ 368 [1997]
  • Regulation of p53stability and activity in response to genotoxic stress
    Colman MS Mutat Res 462 : 179 ~ 188 [2000]
  • Protein translocation in apoptosis
    Porter AG Trends Cell Biol 9 : 394 ~ 401 [1999]
  • Proteasomes play an essential role in thymocyte apoptosis
    Grimm LM EMBO J 15 : 3835 ~ 3844 [1996]
  • Proteasomes modulate balance among proapoptotic and antiapoptotic Bcl-2 family members and compromise functioning of the electron transport chain in leukemic cells
    Marshansky V J Immunol 166 : 3130 ~ 3142 [2001]
  • Proteasome inhibitor-induced apoptosis of glioma cells involves the processing of multiple caspases and cytochrome c release
    Wagenknecht B J Neurochem 75 : 2288 ~ 2297 [2000]
  • Programmed cell death: apoptosis and oncogenesis
    Williams GT Cell 65 : 1097 ~ 1098 [1991]
  • Polycystin-1 induced apoptosis and cell cycle arrest in G0/G1 phase in cancer cells
    Zheng R Cell Biol Int 32 : 427 ~ 435 [2008]
  • Outcomes of oral squamous cell carcinoma in Taiwan after surgical therapy : factors affecting survival
    Lo WL J Oral Maxillofac Surg 61 : 751 ~ 758 [2003]
  • Nutraceuticals as new treatment approaches for oral cancer: II. Green tea extracts and resveratrol
    Zlotogorski A Oral Oncol 49 : 502 ~ 506 [2013]
  • Notch-1 down-regulation by curcumin is associated with the inhibition of cell growth and the induction of apoptosis in pancreatic cancer cells
    Wang Z Cancer 106 : 2503 ~ 2513 [2006]
  • Nitric oxide induces apoptosis in GM-CSF-treated eosinophils via caspase-6-dependent lamin and DNA fragmentation
    Ilmarinen-Salo P Pulm Pharmacol Ther 23 : 365 ~ 371 [2010]
  • Molecular mechanisms of G0/G1 cellcycle arrest and apoptosis induced by terfenadine in human cancer cells
    Liu JD Mol Carcinog 37 : 39 ~ 50 [2003]
  • Modulation of multidrug resistance p-glycoprotein activity by flavonoids and honokiol in human doxorubicin-resistant sarcoma cells(MES-SA/DX-5) : implications for natural sedatives as chemosensitizing agents in cancer therapy
    Angelini A J Biol Regul Homeost Agents 24 : 197 ~ 205 [2010]
  • Mitochondrion-mediated cell death : dissecting yeast apoptosis for a better understanding of neurodegeneration
    Braun RJ Front Oncol 2 : 182 ~ [2012]
  • Mitochondrio-nuclear translocation of AIF in apoptosis and necrosis
    Daugas E FASEB J 14 : 729 ~ 739 [2000]
  • Mitochondrial regulation of apoptotic cell death
    Orrenius S Toxicol Lett 149 : 19 ~ 23 [2004]
  • Mitochondrial gateways to cancer
    Galluzzi L Mol Aspects Med 31 : 1 ~ 20 [2010]
  • Mitochondrial control of cell death
    Kroemer G Nat Med 6 : 513 ~ 519 [2000]
  • Mitochondrial Dysfunction in Cancer
    Boland ML Front Oncol 3 : 292 ~ [2013]
  • Mechanisms of cyclin-dependent kinase regulation : structures of Cdks, their cyclin activators, and Cip and INK4 inhibitors
    Pavletich NP J Mol Biol 287 : 821 ~ 828 [1999]
  • Magnoliae Flos inhibits mast cell-dependent immediate-type allergic reactions
    Kim, H.M Pharmacol Res 39 : 107 ~ 111 [2002]
  • Liposome-encapsulated curcumin suppresses growth of head and neck squamous cell carcinoma in vitro and in xenografts through the inhibition of nuclear factor kappaB by an AKTindependent pathway
    Wang D Clin Cancer Res 14 : 6228 ~ 6236 [2008]
  • Lesson learned from nature for the development of novel anti-cancer agents : implication of isoflavone, curcumin, and their synthetic analogs
    Sarkar FH Curr Pharm Des 16 : 1801 ~ 1812 [2010]
  • Inhibition of proteasome function induces programmed cell death in proliferating endothelial cells
    Drexler HC FASEB J 14 : 65 ~ 77 [2000]
  • Inhibition of growth and survival of human head and neck squamous cell carcinoma cells by curcumin via modulation of nuclear factor-kappaB signaling
    Aggarwal S Int J Cancer 111 : 679 ~ 692 [2004]
  • Induction of apoptosis by Uncaria tomentosa through reactive oxygen species production, cytochrome c release, and caspases activation in human leukemia cells
    Cheng AC Food Chem Toxicol 45 : 2206 ~ 2218 [2007]
  • In vitro antimicrobial and anticancer potential of hinokitiol against oral pathogens and oral cancer cell lines
    Shih YH Microbiol Res 168 : 254 ~ 262 [2013]
  • Head and neck squamous cell carcinoma : new translational therapies
    Prince A Mt Sinai J Med 77 : 684 ~ 699 [2010]
  • Functional proteomics of resveratrol-induced colon cancer cell apoptosis : caspase-6-mediated cleavage of lamin A is a major signaling loop
    Lee SC Proteomics 6 : 2386 ~ 2394 [2006]
  • Eponemycin exerts its antitumor effect through the inhibition of proteasome function
    Meng L Cancer Res 59 : 2798 ~ 2801 [1999]
  • Enhancement of cisplatin induced apoptosis by suberoylanilide hydroxamic acid in human oral squamous cell carcinoma cell lines
    Shen J Biochem Pharmacol 73 : 1901 ~ 1909 [2007]
  • Effect of Syzygium aromaticum extract on immediate hypersensitivity in rats
    Kim, H.M J Ethnopharmacol 60 : 125 ~ 131 [1998]
  • Curcumin suppresses activation of NF-kappaB and AP-1 induced by phorbol ester in cultured human promyelocytic leukemia cells
    Han SS J Biochem Mol Biol 35 : 337 ~ 342 [2002]
  • Curcumin protects cardiac cells against ischemia-reperfusion injury : effects on oxidative stress, NF-kappaB, and JNK pathways
    Fiorillo C Free Radic Biol Med 45 : 839 ~ 846 [2008]
  • Curcumin inhibits NFkappaB mediated radioprotection and modulate apoptosis related genes in human neuroblastoma cells
    Aravindan N Cancer Biol Ther 7 : 569 ~ 576 [2008]
  • Curcumin induces the apoptosis of human monocytic leukemia THP-1 cells via the activation of JNK/ERK pathways
    Yang CW BMC Complement Altern Med 12 : 22 ~ [2012]
  • Curcumin induces apoptosis in human non-small cell lung cancer NCI-H460cells through ER stress and caspase cascade-and mitochondria-dependent pathways
    Wu SH Anticancer Res 30 : 2125 ~ 2133 [2010]
  • Curcumin induces EGFR degradation in lung adenocarcinoma and modulates p38 activation in intestine:the versatile adjuvant for gefitinib therapy
    Lee JY PLoS One 6 : e23756 ~ [2011]
  • Curcumin downregulates the inflammatory cytokines CXCL1 and-2 in breast cancer cells via NFkappaB
    Bachmeier BE Carcinogenesis 29 : 779 ~ 789 [2008]
  • Curcumin down-regulates AR gene expression and activation in prostate cancer cell lines
    Nakamura K Int J Oncol 21 : 825 ~ 830 [2002]
  • Curcumin attenuates glucoseinduced monocyte chemoattractant protein-1 synthesis in aortic endothelial cells by modulating the nuclear factorkappaB pathway
    Panicker SR Pharmacology 85 : 18 ~ 26 [2010]
  • Curcumin and cancer cells: how many ways can curry kill tumor cells selectively?
    Ravindran J AAPS J 11 : 495 ~ 510 [2009]
  • Cloning of p27Kip1, a cyclindependent kinase inhibitor and a potential mediator of extracellular antimitogenic signals
    Polyak K Cell 78 : 59 ~ 66 [1994]
  • Cell death : the significance of apoptosis
    Wyllie AH Int Rev Cytol 68 : 251 ~ 306 [1980]
  • Bcl-2-family proteins and the role of mitochondria in apoptosis
    Kuwana T Curr Opin Cell Biol 15 : 691 ~ 699 [2003]
  • Bcl-2 family : life-or-death switch
    Tsujimoto Y FEBS Lett 466 : 6 ~ 10 [2000]
  • Bax degradation by the ubiquitin/proteasomedependent pathway : involvement in tumor survival and progression
    Li B Proc Natl Acad Sci USA 97 : 3850 ~ 3855 [2000]
  • Basal levels and patterns of anticancer druginduced activation of nuclear factor-kappaB(NF-kappaB), and its attenuation by tamoxifen, dexamethasone, and curcumin in carcinoma cells
    Chuang SE Biochem Pharmacol 63 : 1709 ~ 1716 [2002]
  • BCL-2 family members and the mitochondria in apoptosis
    Gross A Genes Dev 13 : 1899 ~ 1911 [1999]
  • Apoptosis of eosinophils and lymphocytes in allergic inflammation
    Ohta K J Allergy Clin Immunol 104 : 14 ~ 21 [1999]
  • Apoptosis and disease
    Carson DA Lancet 341 : 1251 ~ 1254 [1993]
  • Antiproliferative effects of goniothalamin on Ca9-22 oral cancer cells through apoptosis, DNA damage and ROS induction
    Yen CY Mutat Res 747 : 253 ~ 258 [2012]
  • Anti-tumor effect of radiation response by combined treatment with angiogenesis inhibitor, TNP-470, in oral squamous cell carcinoma
    Shintani S Oral Oncol 42 : 66 ~ 72 [2006]
  • Anti-allergic Psidium guajava extracts exert an antitumor effect by inhibition of T regulatory cells and resultant augmentation of Th1 cells
    Seo N Anticancer Res 25 : 3763 ~ 3770 [2005]
  • An APAF-1.cytochrome c multimeric complex is a functional apoptosome that activates procaspase-9
    Zou H J Biol Chem 274 : 11549 ~ 11556 [1999]