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細胞番号 : 細胞名
RCB1974 : SAS  update : 2023/01/04
細胞特性(Comment:英)Human cell line derived from tongue cancer. Squamous cell carcinoma. TKG0470 (Deposited from Tohoku Univ.).
細胞特性(日)ヒト舌癌由来細胞株。Squamous cell carcinoma. TKG0470 (東北大学医用細胞資源センターからの寄託)。
細胞特性(寄託者記述:英)
細胞特性(寄託者記述:日)
使用条件(英)There is no restriction regarding use for basic researches. In relation to commercial use and use for patent filing, first of all please contact the RIKEN BRC.
使用条件(日)基礎的研究につきましては、使用制限はありません。商業利用や特許取得を目的とする場合は、事前に必ず理研細胞バンクに連絡をすること。
備考(英)
備考(日)
提供申込書類(英) Order Form(C-0005.pdf)   MTA(C-0007.pdf)   MTA(C-0007p.pdf)  
Regarding MTA between user institutions and RIKEN BRC, there are two kinds of MTA, not-for-profit academic purpose (C-XXXX) and for-profit research purpose (C-XXXXp) , depending on the sort of user institutions and the purposes of use. Please use an appropriate MTA(to see). In relation to commercial use and use for patent filing, first of all Please contact RIKEN BRC (cellbank.brc@riken.jp).
提供申込書類(日) 依頼書C-0001.pdf   同意書(非営利学術目的)C-0003.pdf   同意書(営利目的)C-0003p.pdf  
提供同意書は、使用機関の種類や目的に応じて、非営利学術目的 (C-XXXX) と営利目的 (C-XXXXp) の2種類があります。該当する提供同意書をご使用ください(詳細)。特許等の取得及び商業利用等は事前に必ず cellbank.brc@riken.jp までご連絡ください。
提供手数料 手数料とお支払いについてはこちらをご覧ください。
細胞基本情報 寄託者 Obinata, Masuo
樹立者 Takahashi, K.
寄託日 2004
元の細胞 TKG0470
動物種 _human < Mammals
属名 Homo
種名 sapiens
採取組織 tongue
病名 squamous cell carcinoma of tongue
細胞分類 cancer
入手歴 Cell Resource Center for Biomedical Research, Tohoku University(TKG0470)
細胞寿命 infinite
細胞形態 epithelial-like
Cellosaurus(Expasy) CVCL_1675
細胞培養・検査情報
寄託時情報
ロット情報
培地・試薬情報 培地・試薬一覧はこちらをご覧ください。
培養形態 Adherent cells
培地 RPMI1640 + 10% FBS
抗生物質 Free
継代方法 0.25% Trypsin
継代密度 1 : 8 split
継代・培地交換頻度 Subculture : 2 times/week
培養最適温度 37 ℃
二酸化炭素濃度 5 %
凍結培地 Medium + 10% DMSO
凍結方法 Slow freezing
マイコプラズマ (-)
アイソザイム検査 LD, NP
個体識別検査 OK
画像情報
寄託時情報
ロット情報
文献情報 Reference(英) 1件
Reference(日) 1件
利用者成果(英) 120件
利用者成果(日) 2件

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Reference(英)
5067  Yoshida H, Hasegawa S, Kuromi H, Inagaki N, Seino S, Takahashi K, Sato K.  A variant form of laminin is responsible for the neurite outgrowth-promoting activity in conditioned medium from a squamous carcinoma cell line.  Connect Tissue Res  1993  30(1):23-35.  PubMed ID: 8149742   DOI: 10.3109/03008209309032928

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Reference(日)
3475  高橋 喜久雄, 金沢 春幸, 秋山 行弘, 田崎 滋子, 高原 正明, 武藤 寿孝, 丹沢 秀樹, 佐藤 研一  ヒト舌癌原発巣より得られた低分化型扁平上皮癌細胞株 (SAS) の樹立  日本口腔科学会雑誌  1989  38:20-28    DOI: 10.11277/stomatology1952.38.20

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利用者成果(英)
19752  Ichikawa T, Suekane A, Nakahata S, Iha H, Shimoda K, Murakami T, Morishita K.  Inhibition of PRMT5/MEP50 Arginine Methyltransferase Activity Causes Cancer Vulnerability in NDRG2low Adult T-Cell Leukemia/Lymphoma  Int J Mol Sci  2024  25(5):2842  PubMed ID: 38474089   DOI: 10.3390/ijms25052842
19774  Kasamatsu A, Nozaki R, Kawasaki K, Saito T, Minemura C, Seki N, Moss J, Uzawa K.  Synthetic Circular RNA for microRNA-1269a Suppresses Tumor Progression in Oral Squamous Cell Carcinoma  Cancers (Basel)  2024  16(6):1242  PubMed ID: 38539573   DOI: 10.3390/cancers16061242
19675  Watanabe T, Yoshikawa T, Tanaka H, Kinashi Y, Kashino G, Masunaga SI, Hayashi T, Uehara K, Ono K, Suzuki M.  Pharmacokinetic Study of 14C-Radiolabeled p-Boronophenylalanine (BPA) in Sorbitol Solution and the Treatment Outcome of BPA-Based Boron Neutron Capture Therapy on a Tumor-Bearing Mouse Model  Eur J Drug Metab Pharmacokinet  2023  48(4):443-453  PubMed ID: 37198368   DOI: 10.1007/s13318-023-00830-y
19730  Katase N, Kudo K, Ogawa K, Sakamoto Y, Nishimatsu SI, Yamauchi A, Fujita S.  DKK3/CKAP4 axis is associated with advanced stage and poorer prognosis in oral cancer  Oral Dis  2023  29(8):3193-3204  PubMed ID: 35708905   DOI: 10.1111/odi.14277
19759  Takanori Takenawa, Koji Harada, Tarannum Ferdous, Keisuke Kawasaki, Yasuhiro Kuramitsu, Katsuaki Mishima  Silencing of Tropomyosin 1 suppresses the proliferation, invasion and metastasis of oral squamous cell carcinoma in vitro  Journal of Oral and Maxillofacial Surgery, Medicine, and Pathology  2023  35:282-287    DOI: 10.1016/j.ajoms.2022.10.004
19861  Hirose K, Sato M, Ichise K, Aoki M.  Dose Rate Effect on Cell Survival in BNCT  Curr Issues Mol Biol  2023  45(9):6986-6994  PubMed ID: 37754225   DOI: 10.3390/cimb45090441
19893  Ishinaga H, Okugawa Y, Hou B, He F, Yin C, Murata M, Toiyama Y, Takeuchi K.  The role of miR-21 as a predictive biomarker and a potential target to improve the effects of chemoradiotherapy against head and neck squamous cell carcinoma  J Radiat Res  2023  64(4):668-676  PubMed ID: 37312615   DOI: 10.1093/jrr/rrad043
19964  Takahashi K, Kobayashi M, Katsumata H, Tokizaki S, Anzai T, Ikeda Y, Alcaide DM, Maeda K, Ishihara M, Tahara K, Kubota Y, Itoh F, Park J, Takahashi K, Matsunaga YT, Yoshimatsu Y, Podyma-Inoue KA, Watabe T.  CD40 is expressed in the subsets of endothelial cells undergoing partial endothelial-mesenchymal transition in tumor microenvironment  Cancer Sci  2023  Dec 18  PubMed ID: 38111334   DOI: 10.1111/cas.16045
21374  Hu N, Suzuki M, Masunaga SI, Kashino G, Kinashi Y, Chen YW, Liu Y, Uehara K, Mitsumoto T, Tanaka H, Ono K.  Experimentally determined relative biological effectiveness of cyclotron-based epithermal neutrons designed for clinical BNCT: in vitro study.  J Radiat Res  2023    PubMed ID: 37607589   DOI: 10.1093/jrr/rrad056
21402  Sato K, Yoshino H, Sato Y, Nakano M, Tsuruga E.  ΔNp63 Regulates Radioresistance in Human Head and Neck Squamous Carcinoma Cells.  Curr Issues Mol Biol  2023  45(8):6262-6271  PubMed ID: 37623213   DOI: 10.3390/cimb45080394
17668  Tsukasa SAKAMOTO , Yuichi OHNISHI, Masami NOZAKI, Masahiro NAKAJIMA, Tomoharu OKAMURA, Kazuya TOMINAGA  Relation to HGF/c‐Met pathway and PD‐L1 expression in oral squamous cell carcinoma  Journal of Osaka Dental University  2022  56:51-61    DOI: 10.18905/jodu.56.1_51
17696  Minemura C, Asai S, Koma A, Kase-Kato I, Tanaka N, Kikkawa N, Kasamatsu A, Yokoe H, Hanazawa T, Uzawa K, Seki N.  Identification of Tumor-Suppressive miR-30e-3p Targets: Involvement of SERPINE1 in the Molecular Pathogenesis of Head and Neck Squamous Cell Carcinoma  Int J Mol Sci  2022  23(7):3808  PubMed ID: 35409173   DOI: 10.3390/ijms23073808
20559  Komatsu M, Saito K, Miyamoto I, Koike K, Iyoda M, Nakashima D, Kasamatsu A, Shiiba M, Tanzawa H, Uzawa K.  Aberrant GIMAP2 expression affects oral squamous cell carcinoma progression by promoting cell cycle and inhibiting apoptosis.  Oncol Lett  2022  23(2):49  PubMed ID: 34992682   DOI: 10.3892/ol.2021.13167
16172  Suzuki S, Toyoma S, Kawasaki Y, Yamada T.  Irradiated fibroblasts increase interleukin-6 expression and induce migration of head and neck squamous cell carcinoma  PLoS One  2022  17(1):e0262549  PubMed ID: 35089951   DOI: 10.1371/journal.pone.0262549
16203  Sasabe E, Tomomura A, Liu H, Sento S, Kitamura N, Yamamoto T.  Epidermal growth factor/epidermal growth factor receptor signaling blockage inhibits tumor cell-derived exosome uptake by oral squamous cell carcinoma through macropinocytosis  Cancer Sci   2022  113(2):609-621  PubMed ID: 34874595   DOI: 10.1111/cas.15225
16528  Nyui T, Yoshino H, Nunota T, Sato Y, Tsuruga E.  cGAS Regulates the Radioresistance of Human Head and Neck Squamous Cell Carcinoma Cells  Cells  2022  11(9):1434  PubMed ID: 35563740   DOI: 10.3390/cells11091434
20783  Fujibayashi E, Mukai S, Torigata K, Ando Y, Uchihashi T, Nozaki M, Tanaka S, Okada M, Kogo M, Nojima H, Yabuta N.  LATS kinases and SLUG regulate the transition to advanced stage in aggressive oral cancer cells.  Sci Rep  2022  12(1):12363  PubMed ID: 35859006   DOI: 10.1038/s41598-022-16667-5
20817  Minemura C, Asai S, Koma A, Kikkawa N, Kato M, Kasamatsu A, Uzawa K, Hanazawa T, Seki N.  Identification of Antitumor miR-30e-5p Controlled Genes; Diagnostic and Prognostic Biomarkers for Head and Neck Squamous Cell Carcinoma.  Genes (Basel)  2022  13(7)  PubMed ID: 35886008   DOI: 10.3390/genes13071225
17100  Izumi A, Yamamoto K, Kawaguchi M, Yamashita F, Fukushima T, Kiwaki T, Tanaka H, Yamashita Y, Kataoka H.  Insufficiency of hepatocyte growth factor activator inhibitor-1 confers lymphatic invasion of tongue carcinoma cells  Cancer Sci  2022  113(6):2179-2193  PubMed ID: 35332604   DOI: 10.1111/cas.15346
20838  Kobayashi M, Fujiwara K, Takahashi K, Yoshioka Y, Ochiya T, Podyma-Inoue KA, Watabe T.  Transforming growth factor-β-induced secretion of extracellular vesicles from oral cancer cells evokes endothelial barrier instability via endothelial-mesenchymal transition.  Inflamm Regen  2022  42(1):38  PubMed ID: 36057626   DOI: 10.1186/s41232-022-00225-7
20870  Takahashi K, Podyma-Inoue KA, Saito M, Sakakitani S, Sugauchi A, Iida K, Iwabuchi S, Koinuma D, Kurioka K, Konishi T, Tanaka S, Kaida A, Miura M, Hashimoto S, Okada M, Uchihashi T, Miyazono K, Watabe T.  TGF-β generates a population of cancer cells residing in G1 phase with high motility and metastatic potential via KRTAP2-3.  Cell Rep  2022  40(13):111411  PubMed ID: 36170816   DOI: 10.1016/j.celrep.2022.111411
20885  Zuo N, Ma L, Hu W, Deng Y, Wei L, Liu Q.  Detection of Alternative End-Joining in HNSC Cell Lines Using DNA Double-Strand Break Reporter Assays.  Bio Protoc  2022  12(17)  PubMed ID: 36213110   DOI: 10.21769/BioProtoc.4506
21140  Asai S, Koma A, Nohata N, Kinoshita T, Kikkawa N, Kato M, Minemura C, Uzawa K, Hanazawa T, Seki N.  Impact of miR-1/miR-133 Clustered miRNAs: PFN2 Facilitates Malignant Phenotypes in Head and Neck Squamous Cell Carcinoma.  Biomedicines  2022  10(3)  PubMed ID: 35327465   DOI: 10.3390/biomedicines10030663
20085  Kase Y, Uzawa K, Wagai S, Yoshimura S, Yamamoto JI, Toeda Y, Okubo M, Eizuka K, Ando T, Nobuchi T, Kawasaki K, Saito T, Iyoda M, Nakashima D, Kasamatsu A, Tanzawa H.  Engineered exosomes delivering specific tumor-suppressive RNAi attenuate oral cancer progression.  Sci Rep  2021  11(1):5897  PubMed ID: 33723306   DOI: 10.1038/s41598-021-85242-1
20133  Nakamura A, Kakihara Y, Funayama A, Haga K, Mikami T, Kobayashi D, Yoshida Y, Izumi K, Kobayashi T, Saeki M.  HEATR1, a novel interactor of Pontin/Reptin, stabilizes Pontin/Reptin and promotes cell proliferation of oral squamous cell carcinoma.  Biochem Biophys Res Commun  2021  557:294-301  PubMed ID: 33894417   DOI: 10.1016/j.bbrc.2021.04.021
20227  Yamamoto K, Yamashita F, Kawaguchi M, Izumi A, Kiwaki T, Kataoka H, Kaneuji T, Yamashita Y, Fukushima T.  Decreased prostasin expression is associated with aggressiveness of oral squamous cell carcinoma.  Hum Cell  2021    PubMed ID: 34250582   DOI: 10.1007/s13577-021-00575-3
15868  Itashiki Y, Harada K, Takenawa T, Ferdous T, Ueyama Y, Mishima K.  Antitumor effects of bevacizumab in combination with fluoropyrimidine drugs on human oral squamous cell carcinoma  Oncol Lett  2021  22(4):730  PubMed ID: 34429770   DOI: 10.3892/ol.2021.12991
20466  Kawahara K, Nagata M, Yoshida R, Hirosue A, Tanaka T, Matsuoka Y, Arita H, Nakashima H, Sakata J, Yamana K, Kawaguchi S, Gohara S, Nagao Y, Hirayama M, Takahashi N, Hirayama M, Nakayama H.  miR-30a attenuates drug sensitivity to 5-FU by modulating cell proliferation possibly by downregulating cyclin E2 in oral squamous cell carcinoma.  Biochem Biophys Rep  2021  28:101114  PubMed ID: 34589618   DOI: 10.1016/j.bbrep.2021.101114
20509  Tanaka N, Minemura C, Asai S, Kikkawa N, Kinoshita T, Oshima S, Koma A, Kasamatsu A, Hanazawa T, Uzawa K, Seki N.  Identification of miR-199-5p and miR-199-3p Target Genes: Paxillin Facilities Cancer Cell Aggressiveness in Head and Neck Squamous Cell Carcinoma.  Genes (Basel)  2021  12(12)  PubMed ID: 34946859   DOI: 10.3390/genes12121910
16094  Islam W, Matsumoto Y, Fang J, Harada A, Niidome T, Ono K, Tsutsuki H, Sawa T, Imamura T, Sakurai K, Fukumitsu N, Yamamoto H, Maeda H.  Polymer-conjugated glucosamine complexed with boric acid shows tumor-selective accumulation and simultaneous inhibition of glycolysis  Biomaterials  2021  269:120631  PubMed ID: 33450582   DOI: 10.1016/j.biomaterials.2020.120631
16138  Ando T, Kasamatsu A, Kawasaki K, Hiroshima K, Fukushima R, Iyoda M, Nakashima D, Endo-Sakamoto Y, Uzawa K.  Tumor Suppressive Circular RNA-102450: Development of a Novel Diagnostic Procedure for Lymph Node Metastasis from Oral Cancer  Cancers (Basel)  2021  13(22):5708  PubMed ID: 34830863   DOI: 10.3390/cancers13225708
16139  Kase-Kato I, Asai S, Minemura C, Tsuneizumi K, Oshima S, Koma A, Kasamatsu A, Hanazawa T, Uzawa K, Seki N.  Molecular Pathogenesis of the Coronin Family: CORO2A Facilitates Migration and Invasion Abilities in Oral Squamous Cell Carcinoma  Int J Mol Sci   2021  22(23):12684  PubMed ID: 34884487   DOI: 10.3390/ijms222312684
16206  Koma A, Asai S, Minemura C, Oshima S, Kinoshita T, Kikkawa N, Koshizuka K, Moriya S, Kasamatsu A, Hanazawa T, Uzawa K, Seki N.  Impact of Oncogenic Targets by Tumor-Suppressive miR-139-5p and miR-139-3p Regulation in Head and Neck Squamous Cell Carcinoma  Int J Mol Sci  2021  22(18):9947  PubMed ID: 34576110   DOI: 10.3390/ijms22189947
16862  Kawasaki M, Sakabe T, Kodani I, Umekita Y.  Cytoplasmic-only Expression of Maspin Predicts Poor Prognosis in Patients With Oral Squamous Cell Carcinoma  Anticancer Res  2021  41(9):4563-4570  PubMed ID: 34475084   DOI: 10.21873/anticanres.15269
11965  Fujii S, Tajiri Y, Hasegawa K, Matsumoto S, Yoshimoto RU, Wada H, Kishida S, Kido MA, Yoshikawa H, Ozeki S, Kiyoshima T.  The TRPV4-AKT axis promotes oral squamous cell carcinoma cell proliferation via CaMKII activation.  Lab. Invest.  2020    PubMed ID: 31857698   DOI: 10.1038/s41374-019-0357-z
12037  Nakagawa F, Higashi S, Ando E, Ohsumi T, Watanabe S, Takeuchi H.  Modification of TRPV4 activity by acetaminophen.  Heliyon  2020    PubMed ID: 32051870   DOI: 10.1016/j.heliyon.2020.e03301
12128  Hazawa M, Yoshino H, Nakagawa Y, Shimizume R, Nitta K, Sato Y, Sato M, Wong RW, Kashiwakura I.  Karyopherin-β1 Regulates Radioresistance and Radiation-Increased Programmed Death-Ligand 1 Expression in Human Head and Neck Squamous Cell Carcinoma Cell Lines.  Cancers (Basel)  2020    PubMed ID: 32276424   DOI: 10.3390/cancers12040908
13063  Yamamoto T, Hirosue A, Nakamoto M, Yoshida R, Sakata J, Matsuoka Y, Kawahara K, Nagao Y, Nagata M, Takahashi N, Hiraki A, Shinohara M, Nakao M, Saitoh N, Nakayama H.  BRD4 promotes metastatic potential in oral squamous cell carcinoma through the epigenetic regulation of the MMP2 gene.  Br J Cancer  2020    PubMed ID: 32499570   DOI: 10.1038/s41416-020-0907-6
13102  Takahashi K, Akatsu Y, Podyma-Inoue KA, Matsumoto T, Takahashi H, Yoshimatsu Y, Koinuma D, Shirouzu M, Miyazono K, Watabe T.  Targeting all transforming growth factor-β isoforms with an Fc chimeric receptor impairs tumor growth and angiogenesis of oral squamous cell cancer.  J Biol Chem  2020    PubMed ID: 32631954   DOI: 10.1074/jbc.RA120.012492
13781  Yamazaki M, Maruyama S, Abé T, Tsuneki M, Kato H, Izumi K, Tanuma JI, Cheng J, Saku T.  Rac1-dependent phagocytosis of apoptotic cells by oral squamous cell carcinoma cells: A possible driving force for tumor progression  Exp Cell Res  2020  392(1):112013  PubMed ID: 32320683   DOI: 10.1016/j.yexcr.2020.112013
13903  Aika Tanzawa et al.  Comprehensive gene expression analysis of semaphorins in oral squamous cell carcinoma  Oral Science International  2020  17(2):67-72    DOI: 10.1002/osi2.1044
14501  Ichikawa T, Shanab O, Nakahata S, Shimosaki S, Manachai N, Ono M, Iha H, Shimoda K, Morishita K.  Novel PRMT5-mediated arginine methylations of HSP90A are essential for maintenance of HSP90A function in NDRG2 low ATL and various cancer cells  Biochim Biophys Acta Mol Cell Res  2020  1867(2):118615  PubMed ID: 31765670   DOI: 10.1016/j.bbamcr.2019.118615
17200  Watanabe J, Sakai K, Urata Y, Toyama N, Nakamichi E, Hibi H.  Extracellular Vesicles of Stem Cells to Prevent BRONJ  J Dent Res  2020  99(5):552-560  PubMed ID: 32119600   DOI: 10.1177/0022034520906793
11354  Nakamura Y, Nakahata S, Kondo Y, Izumi A, Yamamoto K, Ichikawa T, Tamura T, Noumi K, Yamashita Y, Morishita K.  Overexpression of absent in melanoma 2 in oral squamous cell carcinoma contributes to tumor progression.  Biochem. Biophys. Res. Commun.  2019    PubMed ID: 30587341   DOI: 10.1016/j.bbrc.2018.12.066
11377  Inoue K, Hatano K, Hanamatsu Y, Saigo C, Kito Y, Bunai K, Shibata T, Takeuchi T.  Pathobiological role of cleft palate transmembrane protein 1 family proteins in oral squamous cell carcinoma.  J. Cancer Res. Clin. Oncol.  2019    PubMed ID: 30635792   DOI: 10.1007/s00432-019-02843-0
11405  Uzawa K, Kasamatsu A, Saito T, Kita A, Sawai Y, Toeda Y, Koike K, Nakashima D, Endo Y, Shiiba M, Takiguchi Y, Tanzawa H.  Growth suppression of human oral cancer cells by candidate agents for cetuximab-side effects.  Exp. Cell Res.  2019    PubMed ID: 30690028   DOI: 10.1016/j.yexcr.2019.01.016
11497  Yasukochi A, Kawakubo-Yasukochi T, Morioka M, Hazekawa M, Nishinakagawa T, Ono K, Nakashima M, Nakamura S.  Regulation of collagen type XVII expression by miR203a-3p in oral squamous cell carcinoma cells.  J. Biochem.  2019    PubMed ID: 30918974   DOI: 10.1093/jb/mvz024
11616  Hano K, Hatano K, Saigo C, Kito Y, Shibata T, Takeuchi T.  An adiponectin paralog protein, CTRP6 decreased the proliferation and invasion activity of oral squamous cell carcinoma cells: possible interaction with laminin receptor pathway.  Mol. Biol. Rep.  2019    PubMed ID: 31254244   DOI: 10.1007/s11033-019-04947-9
11759  Uzawa K, Amelio AL, Kasamatsu A, Saito T, Kita A, Fukamachi M, Sawai Y, Toeda Y, Eizuka K, Hayashi F, Kato-Kase I, Sunohara M, Iyoda M, Koike K, Nakashima D, Ogawara K, Endo-Sakamoto Y, Shiiba M, Takiguchi Y, Yamauchi M, Tanzawa H.  Resveratrol Targets Urokinase-Type Plasminogen Activator Receptor Expression to Overcome Cetuximab-Resistance in Oral Squamous Cell Carcinoma.  Sci Rep  2019    PubMed ID: 31434965   DOI: 10.1038/s41598-019-48717-w
11775  Hazekawa M, Nishinakagawa T, Kawakubo-Yasukochi T, Nakashima M.  Evaluation of IC50 levels immediately after treatment with anticancer reagents using a real-time cell monitoring device.  Exp Ther Med  2019    PubMed ID: 31555392   DOI: 10.3892/etm.2019.7876
9696  Kazuya Hiroshima, Masashi Shiiba, Noritoshi Oka, Fumihiko Hayashi, Sho Ishida, Reo Fukushima, Kazuyuki Koike, Manabu Iyoda, Dai Nakashima, Hideki Tanzawa, Katsuhiro Uzawa  Tspan15 Plays a Crucial Role in Metastasis in Oral Squamous Cell Carcinoma  Exp Cell Res  2019  384(2):111622  PubMed ID: 31518558   DOI: 10.1016/j.yexcr.2019.111622
9758  Hiromasa Fujita, Katsumi Hirose, Mariko Sato, Ichitaro Fujioka, Tamaki Fujita, Masahiko Aoki, Yoshihiro Takai  Metformin Attenuates Hypoxia-Induced Resistance to Cisplatin in the HepG2 Cell Line  Oncol Lett  2019  17(2):2431-2440  PubMed ID: 30719114   DOI: 10.3892/ol.2018.9869
9890  Noritoshi Oka, Atsushi Kasamatsu, Yosuke Endo-Sakamoto, Keitaro Eizuka, Sho Wagai, Nao Koide-Ishida, Isao Miyamoto, Manabu Iyoda, Hideki Tanzawa, Katsuhiro Uzawa  Centromere Protein N Participates in Cellular Proliferation of Human Oral Cancer by Cell-Cycle Enhancement  J Cancer  2019  10(16):3728-3734  PubMed ID: 31333790   DOI: 10.7150/jca.32281
11921  Okada R, Koshizuka K, Yamada Y, Moriya S, Kikkawa N, Kinoshita T, Hanazawa T, Seki N.  Regulation of Oncogenic Targets by miR-99a-3p (Passenger Strand of miR-99a-Duplex) in Head and Neck Squamous Cell Carcinoma.  Cells  2019    PubMed ID: 31795200   DOI: 10.3390/cells8121535
12457  Eizuka K, Nakashima D, Oka N, Wagai S, Takahara T, Saito T, Koike K, Kasamatsu A, Shiiba M, Tanzawa H, Uzawa K.  SYT12 plays a critical role in oral cancer and may be a novel therapeutic target  J Cancer  2019  10(20):4913-4920  PubMed ID: 31598163   DOI: 10.7150/jca.32582
12460  Nozaki M, Yabuta N, Fukuzawa M, Mukai S, Okamoto A, Sasakura T, Fukushima K, Naito Y, Longmore GD, Nojima H.  LATS1/2 kinases trigger self-renewal of cancer stem cells in aggressive oral cancer  Oncotarget  2019  10(10):1014-1030  PubMed ID: 30800215   DOI: 10.18632/oncotarget.26583
12585  Suzuki S, Toyoma S, Tsuji T, Kawasaki Y, Yamada T.  CD147 mediates transforming growth factor-β1-induced epithelial-mesenchymal transition and cell invasion in squamous cell carcinoma of the tongue  Exp Ther Med  2019  17(4):2855-2860  PubMed ID: 30906472   DOI: 10.3892/etm.2019.7230
12586  Sato K, Shi L, Ito F, Ohara Y, Motooka Y, Tanaka H, Mizuno M, Hori M, Hirayama T, Hibi H, Toyokuni S.  Non-thermal plasma specifically kills oral squamous cell carcinoma cells in a catalytic Fe(II)-dependent manner  J Clin Biochem Nutr  2019  65(1):8-15  PubMed ID: 31379408   DOI: 10.3164/jcbn.18-91
10549  Adachi Y, Yoshimura M, Nishida K, Usuki H, Shibata K, Hattori M, Kondo N, Yatabe Y, Iwata H, Kikumori T, Kodera Y, Nakanishi H.  Acute phase dynamics of circulating tumor cells after paclitaxel and doxorubicin chemotherapy in breast cancer mouse models.  Breast Cancer Res. Treat.  2018  167:439-450  PubMed ID: 29027049   DOI: 10.1007/s10549-017-4532-x
10623  Bunai K, Okubo H, Hano K, Inoue K, Kito Y, Saigo C, Shibata T, Takeuchi T.  TMEM207 hinders the tumour suppressor function of WWOX in oral squamous cell carcinoma.  J. Cell. Mol. Med.  2018  22:1026-1033  PubMed ID: 29164763   DOI: 10.1111/jcmm.13456
10649  Koshizuka K, Hanazawa T, Kikkawa N, Katada K, Okato A, Arai T, Idichi T, Osako Y, Okamoto Y, Seki N.  Antitumor miR-150-5p and miR-150-3p inhibit cancer cell aggressiveness by targeting SPOCK1 in head and neck squamous cell carcinoma.  Auris Nasus Larynx  2018  45:854-865  PubMed ID: 29233721   DOI: 10.1016/j.anl.2017.11.019
10664  Ohnishi Y, Yasui H, Nozaki M, Nakajima M.  Molecularly-targeted therapy for the oral cancer stem cells.  Jpn Dent Sci Rev  2018  54:88-103  PubMed ID: 29755619   DOI: 10.1016/j.jdsr.2017.11.001
10682  Yamamoto JI, Kasamatsu A, Okubo Y, Nakashima D, Fushimi K, Minakawa Y, Kasama H, Shiiba M, Tanzawa H, Uzawa K.  Evaluation of tryptophan-aspartic acid repeat-containing protein 34 as a novel tumor-suppressor molecule in human oral cancer.  Biochem. Biophys. Res. Commun.  2018  495:2469-2474  PubMed ID: 29278705   DOI: 10.1016/j.bbrc.2017.12.138
10806  Okubo Y, Kasamatsu A, Yamatoji M, Fushimi K, Ishigami T, Shimizu T, Kasama H, Shiiba M, Tanzawa H, Uzawa K.  Diacylglycerol lipase alpha promotes tumorigenesis in oral cancer by cell-cycle progression.  Exp. Cell Res.  2018  367:112-118  PubMed ID: 29614312   DOI: 10.1016/j.yexcr.2018.03.041
10820  Fukamachi M, Kasamatsu A, Endo-Sakamoto Y, Fushimi K, Kasama H, Iyoda M, Minakawa Y, Shiiba M, Tanzawa H, Uzawa K.  Multiple coagulation factor deficiency protein 2 as a crucial component in metastasis of human oral cancer.  Exp. Cell Res.  2018  368:119-125  PubMed ID: 29679592   DOI: 10.1016/j.yexcr.2018.04.021
11226  Fukushima R, Kasamatsu A, Nakashima D, Higo M, Fushimi K, Kasama H, Endo-Sakamoto Y, Shiiba M, Tanzawa H, Uzawa K.  Overexpression of Translocation Associated Membrane Protein 2 Leading to Cancer-Associated Matrix Metalloproteinase Activation as a Putative Metastatic Factor for Human Oral Cancer.  J Cancer  2018    PubMed ID: 30271493   DOI: 10.7150/jca.25666
11306  Kakuguchi W, Nomura T, Kitamura T, Otsuguro S, Matsushita K, Sakaitani M, Maenaka K, Tei K.  Suramin, screened from an approved drug library, inhibits HuR functions and attenuates malignant phenotype of oral cancer cells.  Cancer Med  2018    PubMed ID: 30449075   DOI: 10.1002/cam4.1877
4236  Nanbu T, Umemura N, Ohkoshi E, Nanbu K, Sakagami H, Shimada J.  Combined SN-38 and gefitinib treatment promotes CD44 degradation in head and neck squamous cell carcinoma cells.  Oncol. Rep.  2018    PubMed ID: 29192320   DOI: 10.3892/or.2017.6105
4237  Yamanouchi R, Harada K, Ferdous T, Ueyama Y.  Low carbonyl reductase 1 expression is associated with poor prognosis in patients with oral squamous cell carcinoma.  Mol Clin Oncol  2018    PubMed ID: 29456845   DOI: 10.3892/mco.2018.1548
4345  Hou B, Ishinaga H, Midorikawa K, Nakamura S, Hiraku Y, Oikawa S, Ma N, Takeuchi K, Murata M.  Let-7c inhibits migration and epithelial-mesenchymal transition in head and neck squamous cell carcinoma by targeting IGF1R and HMGA2.  Oncotarget  2018    PubMed ID: 29507664   DOI: 10.18632/oncotarget.23826
14677  Yamamoto K, Kawaguchi M, Shimomura T, Izumi A, Konari K, Honda A, Lin CY, Johnson MD, Yamashita Y, Fukushima T, Kataoka H.  Hepatocyte growth factor activator inhibitor type-2 (HAI-2)/ SPINT2 contributes to invasive growth of oral squamous cell carcinoma cells  Oncotarget  2018  9(14):11691-11706.  PubMed ID: 29545930   DOI: 10.18632/oncotarget.24450
16201  Sawai Y, Kasamatsu A, Nakashima D, Fushimi K, Kasama H, Iyoda M, Kouzu Y, Shiiba M, Tanzawa H, Uzawa K.  Critical role of deoxynucleotidyl transferase terminal interacting protein 1 in oral cancer  Lab Invest  2018  98(8):980-988  PubMed ID: 29855544   DOI: 10.1038/s41374-018-0070-3
10148  Takahara T, Kasamatsu A, Yamatoji M, Iyoda M, Kasama H, Saito T, Takeuchi S, Endo-Sakamoto Y, Shiiba M, Tanzawa H, Uzawa K.  SIPA1 promotes invasion and migration in human oral squamous cell carcinoma by ITGB1 and MMP7.  Exp. Cell Res.  2017  352:357-363  PubMed ID: 28237246   DOI: 10.1016/j.yexcr.2017.02.026
10155  Koide N, Kasamatsu A, Endo-Sakamoto Y, Ishida S, Shimizu T, Kimura Y, Miyamoto I, Yoshimura S, Shiiba M, Tanzawa H, Uzawa K.  Evidence for Critical Role of Lymphocyte Cytosolic Protein 1 in Oral Cancer.  Sci Rep  2017  7:43379  PubMed ID: 28230172   DOI: 10.1038/srep43379
10191  Takeuchi S, Kasamatsu A, Yamatoji M, Nakashima D, Endo-Sakamoto Y, Koide N, Takahara T, Shimizu T, Iyoda M, Ogawara K, Shiiba M, Tanzawa H, Uzawa K.  TEAD4-YAP interaction regulates tumoral growth by controlling cell-cycle arrest at the G1 phase.  Biochem. Biophys. Res. Commun.  2017  486:385-390  PubMed ID: 28315328   DOI: 10.1016/j.bbrc.2017.03.050
10395  Takada H, Ibaragi S, Eguchi T, Okui T, Obata K, Masui M, Morisawa A, Takabatake K, Kawai H, Yoshioka N, Hassan NMM, Shimo T, Hu GF, Nagatsuka H, Sasaki A.  Semaphorin 4D promotes bone invasion in head and neck squamous cell carcinoma.  Int. J. Oncol.  2017  51:625-632  PubMed ID: 28656278   DOI: 10.3892/ijo.2017.4050
10418  Kita A, Kasamatsu A, Nakashima D, Endo-Sakamoto Y, Ishida S, Shimizu T, Kimura Y, Miyamoto I, Yoshimura S, Shiiba M, Tanzawa H, Uzawa K.  Activin B Regulates Adhesion, Invasiveness, and Migratory Activities in Oral Cancer: a Potential Biomarker for Metastasis.  J Cancer  2017  8:2033-2041  PubMed ID: 28819404   DOI: 10.7150/jca.18714
10929    Assessment of Cytotoxicity of Imatinib for Oral Squamous Cell Carcinoma by a Real-Time Cell Analysis System.  Electronic Journal of Biology  2017  13: 56-62   
4555  Furukawa Y, Takasu A, Yura Y.  Role of autophagy in oncolytic herpes simplex virus type 1-induced cell death in squamous cell carcinoma cells.  Cancer Gene Ther.  2017  24(9):393-400  PubMed ID: 28984290   DOI: 10.1038/cgt.2017.33
4574  Yasui H, Ohnishi Y, Nakajima M, Nozaki M.  Migration of oral squamous cell carcinoma cells are induced by HGF/c-Met signalling via lamellipodia and filopodia formation.  Oncol Rep  2017  37(6):3674-3680  PubMed ID: 28440510   DOI: 10.3892/or.2017.5587
6024  Hamada M, Kameyama H, Iwai S, Yura Y.  Induction of autophagy by sphingosine kinase 1 inhibitor PF-543 in head and neck squamous cell carcinoma cells.  Cell Death Discov  2017  3:17047  PubMed ID: 29109864   DOI: 10.1038/cddiscovery.2017.47
6027  lNorihisa Ichimura et al  Notch3 is frequently downregulated in oral cancer  Journal of Oral and Maxillofacial Surgery, Medicine, and Pathology   2017  29:504-510    DOI: 10.1016/j.ajoms.2017.06.006
6029  Ishida S et al  Novel mechanism of aberrant ZIP4 expression with zinc supplementation in oral tumorigenesis.  Biochem Biophys Res Commun  2017  483(1):339-345  PubMed ID: 28017725   DOI: 10.1016/j.bbrc.2016.12.142
12679  Tamura T, Ichikawa T, Nakahata S, Kondo Y, Tagawa Y, Yamamoto K, Nagai K, Baba T, Yamaguchi R, Futakuchi M, Yamashita Y, Morishita K.  Loss of NDRG2 Expression Confers Oral Squamous Cell Carcinoma with Enhanced Metastatic Potential  Cancer Res  2017  77(9):2363-2374  PubMed ID: 28209617   DOI: 10.1158/0008-5472.CAN-16-2114
14231  Harada K, Ferdous T, Harada T, Takenawa T, Ueyama Y.  Gimeracil enhances the antitumor effect of cisplatin in oral squamous cell carcinoma cells in vitro and in vivo  Oncol Lett  2017  14(3):3349-3356.  PubMed ID: 28927087   DOI: 10.3892/ol.2017.6602
14306  Noriko Komatsu, Kenichi Mitsui, Osamu Kusano-Arai, Hiroko Iwanari, Kazuto Hoshi, Tsuyoshi Takato, Takahiro Abe and Takao Hamakubo  Enhancement of anti-robo1 immunotoxin cytotoxicity to head and neck squamous cell carcinoma via photochemical internalization  Archives in Cancer Research  2017  5   
14365  Koshizuka K, Hanazawa T, Kikkawa N, Arai T, Okato A, Kurozumi A, Kato M, Katada K, Okamoto Y, Seki N.  Regulation of ITGA3 by the anti-tumor miR-199 family inhibits cancer cell migration and invasion in head and neck cancer  Cancer Sci  2017  108(8):1681-1692  PubMed ID: 28612520   DOI: 10.1111/cas.13298
14638  Ohnishi Y, Yasui H, Kakudo K, Nozaki M.  Regulation of cell migration via the EGFR signaling pathway in oral squamous cell carcinoma cells  Oncol Lett  2017  13(2):930-936  PubMed ID: 28356980   DOI: 10.3892/ol.2016.5500
14649  Kuo YZ, Fang WY, Huang CC, Tsai ST, Wang YC, Yang CL, Wu LW.  Hyaluronan synthase 3 mediated oncogenic action through forming inter-regulation loop with tumor necrosis factor alpha in oral cancer  Oncotarget  2017  8(9):15563-15583  PubMed ID: 28107185   DOI: 10.18632/oncotarget.14697
9616  Kitajima D, Kasamatsu A, Nakashima D, Miyamoto I, Kimura Y, Saito T, Suzuki T, Endo-Sakamoto Y, Shiiba M, Tanzawa H, Uzawa K.  Tie2 Regulates Tumor Metastasis of Oral Squamous Cell Carcinomas.  J Cancer  2016  7:600-7  PubMed ID: 27053959   DOI: 10.7150/jca.13820
9630  Kimura Y, Kasamatsu A, Nakashima D, Yamatoji M, Minakawa Y, Koike K, Fushimi K, Higo M, Endo-Sakamoto Y, Shiiba M, Tanzawa H, Uzawa K.  ARNT2 Regulates Tumoral Growth in Oral Squamous Cell Carcinoma.  J Cancer  2016  7:702-10  PubMed ID: 27076852   DOI: 10.7150/jca.14208
9762  Tachibana H, Sho R, Takeda Y, Zhang X, Yoshida Y, Narimatsu H, Otani K, Ishikawa S, Fukao A, Asao H, Iino M.  Circulating miR-223 in Oral Cancer: Its Potential as a Novel Diagnostic Biomarker and Therapeutic Target.  PLoS ONE  2016  11:e0159693  PubMed ID: 27441818   DOI: 10.1371/journal.pone.0159693
9851  Masui A, Hamada M, Kameyama H, Wakabayashi K, Takasu A, Imai T, Iwai S, Yura Y.  Autophagy as a Survival Mechanism for Squamous Cell Carcinoma Cells in Endonuclease G-Mediated Apoptosis.  PLoS ONE  2016  11:e0162786  PubMed ID: 27658240   DOI: 10.1371/journal.pone.0162786
9900  Harada K, Ferdous T, Ueyama Y.  Gimeracil Exerts Radiosensitizing Effects on Oral Squamous Cell Carcinoma Cells In Vitro and In Vivo.  Anticancer Res.  2016  36:5923-5930  PubMed ID: 27793917   DOI: 10.21873/anticanres.11179
6036  Suzuki T, Kasamatsu A, Miyamoto I, Saito T, Higo M, Endo-Sakamoto Y, Shiiba M, Tanzawa H, Uzawa K.  Overexpression of TMOD1 is associated with enhanced regional lymph node metastasis in human oral cancer.  Int J Oncol.  2016  48(2):607-12  PubMed ID: 26718916   DOI: 10.3892/ijo.2015.3305
6042  Unozawa M, Kasamatsu A, Higo M, Fukumoto C, Koyama T, Sakazume T, Nakashima D, Ogawara K, Yokoe H, Shiiba M, Tanzawa H, Uzawa  Cavin-2 in oral cancer: A potential predictor for tumor progression.  Mol Carcinog  2016  55(6):1037-47  PubMed ID: 26086332   DOI: 10.1002/mc.22347
14581  Yasukawa M, Fujihara H, Fujimori H, Kawaguchi K, Yamada H, Nakayama R, Yamamoto N, Kishi Y, Hamada Y, Masutani M.  Synergetic Effects of PARP Inhibitor AZD2281 and Cisplatin in Oral Squamous Cell Carcinoma in Vitro and in Vivo  Int J Mol Sci  2016  17(3):272  PubMed ID: 26927065   DOI: 10.3390/ijms17030272
7175  Ohnishi Y, Yasui H, Kakudo K, Nozaki M.  Cetuximab-resistant oral squamous cell carcinoma cells become sensitive in anchorage-independent culture conditions through the activation of the EGFR/AKT pathway.  Int. J. Oncol.  2015  47:2165-72  PubMed ID: 26497980   DOI: 10.3892/ijo.2015.3215
7532  IIKAWA N, YAMAMOTO Y, KAWASAKI Y, YOSHIOKA T, NISHIJIMA A, ENOMOTO K  Intra-Golgi Connexin26 behaves in a pro-oncogenic manner in head and neck cancer cells.  Akita J Med  2015  42:87-94   
6044  Kasama H et al   Adenosine A2b receptor promotes progression of human oral cancer.  BMC Cancer  2015  15:563  PubMed ID: 26228921   DOI: 10.1186/s12885-015-1577-2
6052  Saito T et al  Semaphorin7A Promotion of Tumoral Growth and Metastasis in Human Oral Cancer by Regulation of G1 Cell Cycle and Matrix Metalloproteases: Possible Contribution to Tumoral Angiogenesis.  PLoS One  2015  10(9):e0137923  PubMed ID: 26378920   DOI: 10.1371/journal.pone.0137923
6053  Miyamoto I et al  Kinesin family member 14 in human oral cancer: A potential biomarker for tumoral growth.  Biochem Biophys Rep  2015  3:26-31  PubMed ID: 29124166   DOI: 10.1016/j.bbrep.2015.07.008
14460  Hosokawa Y, Monzen S, Yoshino H, Terashima S, Nakano M, Toshima K, Saga R, Kashiwakura I.  Effects of X‑ray irradiation in combination with ascorbic acid on tumor control  Mol Med Rep  2015  12(4):5449-54  PubMed ID: 26238154   DOI: 10.3892/mmr.2015.4108
14987  Kaneko T, Kanno C, Ichikawa-Tomikawa N, Kashiwagi K, Yaginuma N, Ohkoshi C, Tanaka M, Sugino T, Imura T, Hasegawa H, Chiba H.  Liver X receptor reduces proliferation of human oral cancer cells by promoting cholesterol efflux via up-regulation of ABCA1 expression  Oncotarget  2015  6(32):33345-57  PubMed ID: 26452260   DOI: 10.18632/oncotarget.5428
15057  Ohmura G, Tsujikawa T, Yaguchi T, Kawamura N, Mikami S, Sugiyama J, Nakamura K, Kobayashi A, Iwata T, Nakano H, Shimada T, Hisa Y, Kawakami Y.  Aberrant Myosin 1b Expression Promotes Cell Migration and Lymph Node Metastasis of HNSCC  Mol Cancer Res  2015  13(4):721-31  PubMed ID: 25421751   DOI: 10.1158/1541-7786.MCR-14-0410
6003  Aoyama 1, Ota Y, Kajiwara K, Hirayama N, Kimura M.  Frequent mutations in NOTCH1 ligand-binding regions in Japanese oral squamous cell carcinoma.  Biochem Biophys Res Commun  2014  452(4):980-5  PubMed ID: 25234595   DOI: 10.1016/j.bbrc.2014.09.021
6023  Watanabe M, Ohnishi Y, Inoue H, Wato M, Tanaka A, Kakudo K, Nozaki M.  NANOG expression correlates with differentiation, metastasis and resistance to preoperative adjuvant therapy in oral squamous cell carcinoma.  Oncol Lett  2014  7(1):35-40  PubMed ID: 24348816   DOI: 10.3892/ol.2013.1690
6006  Ohnishi Y, Watanabe M, Yasui H, Kakudo K.  Effects of epidermal growth factor on the invasive activity and cytoskeleton of oral squamous cell carcinoma cell lines.  Oncol Lett  2014  7(5):1439-1442  PubMed ID: 24765152   DOI: 10.3892/ol.2014.1946
15800  Yoshida R, Nakayama H, Nagata M, Hirosue A, Tanaka T, Kawahara K, Nakagawa Y, Matsuoka Y, Sakata J, Arita H, Hiraki A, Shinohara M, Ito T.  Overexpression of nucleostemin contributes to an advanced malignant phenotype and a poor prognosis in oral squamous cell carcinoma  Br J Cancer  2014  111(12):2308-15  PubMed ID: 25314067   DOI: 10.1038/bjc.2014.539
5057  Tsujikawa T, Yaguchi T, Ohmura G, Ohta S, Kobayashi A, Kawamura N, Fujita T, Nakano H, Shimada T, Takahashi T, Nakao R, Yanagisawa A, Hisa Y, Kawakami Y.  Autocrine and paracrine loops between cancer cells and macrophages promote lymph node metastasis via CCR4/CCL22 in head and neck squamous cell carcinoma.  Int J Cancer.  2013  132(12):2755-66  PubMed ID: 23180648   DOI: 10.1002/ijc.27966
6077  Mikami T, Hada T, Chosa N, Ishisaki A, Mizuki H, Takeda Y. Author information  Expression of Wilms' tumor 1 (WT1) in oral squamous cell carcinoma.  J Oral Pathol Med  2013  42(2):133-9  PubMed ID: 22672247   DOI: 10.1111/j.1600-0714.2012.01182.x
16080  Chai H, Hazawa M, Hosokawa Y, Igarashi J, Suga H, Kashiwakura I.  Novel acridine-based N-acyl-homoserine lactone analogs induce endoreduplication in the human oral squamous carcinoma cell line SAS  Biol Pharm Bull  2012  35(8):1257-63  PubMed ID: 22863922   DOI: 10.1248/bpb.b12-00033
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6109  Inoue H, Ohnishi Y, Nakajima M, Kakudo K, Nozaki M.  A novel function of EpCAM in oral squamous cell carcinoma cells under anchorage-independent conditions.  Int J Oncol  2011  39(6):1401-5  PubMed ID: 21785818   DOI: 10.3892/ijo.2011.1137
6111  Hiroshi Inoue, Yuichi Ohnishi, Masahiro Watanabe, Tomoko Fujii, Yuki Minamino, Yoshihide Ugaki, Suguru Dateoka, Mitsuchika Sugitatsu, Masayuki Tsunokuma, Hirohito Kubo, Masahiro Nakajima, Kenji Kakudo  Effect of EpCAM localization on proliferation of an oral squamous cell carcinoma cell line  Journal of Osaka Dental UniversityJournal of Osaka Dental University  2011  45:259-264    DOI: 10.18905/jodu.45.2_259
6112  lHiroshi Inoue et al  Effects of a gamma secretase inhibitor on the proliferation and invasiveness of oral squamous cell carcinoma cell lines  Asian Journal of Oral and Maxillofacial Surgery   2011  23:1-6    DOI: 10.1016/j.ajoms.2010.10.001
6118  Suguru Dateoka, Yuichi Ohnishi, Kenji Kakudo  Synergistic anti-tumor effect of CDDP with CRM197, a specific inhibitor of HB-EGF, in oral cancer  Journal of Osaka Dental University  2011  45:31-36    DOI: 10.18905/jodu.45.1_31
18708  Takiguchi M, Darwish WS, Ikenaka Y, Ohno M, Ishizuka M.  Metabolic activation of heterocyclic amines and expression of CYP1A1 in the tongue  Toxicol Sci  2010  116(1):79-91  PubMed ID: 20308224   DOI: 10.1093/toxsci/kfq087
18753  Kimura S, Naganuma S, Susuki D, Hirono Y, Yamaguchi A, Fujieda S, Sano K, Itoh H.  Expression of microRNAs in squamous cell carcinoma of human head and neck and the esophagus: miR-205 and miR-21 are specific markers for HNSCC and ESCC  Oncol Rep  2010  23(6):1625-33  PubMed ID: 20428818   DOI: 10.3892/or_00000804
6122  Nomi N, Kodama S, Suzuki M.  Toll-like receptor 3 signaling induces apoptosis in human head and neck cancer via survivin associated pathway.  Oncol Rep  2010  24(1):225-31  PubMed ID: 20514466   DOI: 10.3892/or_00000850

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15484  安井 大樹, 大西 祐一, 渡辺 昌広, 藤井 智子, 木村 一貴, 窪 寛仁, 赤根 昌樹, 覚道 健治  口腔扁平上皮癌細胞株におけるCD44,NFκBの発現とsulfasalazineの影響に関する検討  歯科医学  2015  78:64-70    DOI: 10.18905/shikaigaku.78.2_64
15485  大西 祐一, 渡辺 昌広, 安井 大樹, 藤井 智子, 伊達岡 聖, 窪 寛仁, 木村 一貴, 赤根 昌樹, 覚道 健治  セツキシマブ耐性口腔扁平上皮癌細胞における自律増殖性の解析  歯科医学  2015  78:57-63    DOI: 10.18905/shikaigaku.78.2_57



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