Terms: = Head and neck cancer AND WIF1, WIF-1, 11197, ENSG00000156076
35 results:
1. SOX10-Internal Tandem Duplications and PLAG1 or HMGA2 Fusions Segregate Eccrine-Type and Apocrine-Type Cutaneous Mixed Tumors.
Macagno N; Kervarrec T; Thanguturi S; Sohier P; Pissaloux D; Mescam L; Jullie ML; Frouin E; Osio A; Faisant M; Le Loarer F; Cribier B; Calonje E; Luna EVE; Massi D; Goto K; Nishida H; Paindavoine S; Houlier A; Tantot J; Benzerdjeb N; Tirode F; De la Fouchardière A; Battistella M
Mod Pathol; 2024 Mar; 37(3):100430. PubMed ID: 38266920
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2. Expanding the histological spectrum of salivary gland neoplasms with HMGA2::wif1 fusion emphasising their malignant potential: a report of eight cases.
Katabi N; Sukhadia P; DiNapoli SE; Weinreb I; Hahn E; Ghossein R; Xu B
Histopathology; 2024 Jan; 84(2):387-398. PubMed ID: 37849332
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3. HMGA2-wif1 Rearrangements Characterize a Distinctive Subset of Salivary Pleomorphic Adenomas With Prominent Trabecular (Canalicular Adenoma-like) Morphology.
Agaimy A; Ihrler S; Baněčková M; Costés Martineau V; Mantsopoulos K; Hartmann A; Iro H; Stoehr R; Skálová A
Am J Surg Pathol; 2022 Feb; 46(2):190-199. PubMed ID: 34324456
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4. Crucifera sulforaphane (SFN) inhibits the growth of nasopharyngeal carcinoma through DNA methyltransferase 1 (DNMT1)/Wnt inhibitory factor 1 (wif1) axis.
Chen L; Chan LS; Lung HL; Yip TTC; Ngan RKC; Wong JWC; Lo KW; Ng WT; Lee AWM; Tsao GSW; Lung ML; Mak NK
Phytomedicine; 2019 Oct; 63():153058. PubMed ID: 31394414
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5. Methylation of tumour suppressor genes associated with thyroid cancer.
Botezatu A; Iancu IV; Plesa A; Manda D; Popa O; Bostan M; Mihaila M; Albulescu A; Fudulu A; Vladoiu SV; Huica I; Dobrescu R; Anton G; Badiu C
Cancer Biomark; 2019; 25(1):53-65. PubMed ID: 31006665
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6. The effect of EBV on wif1, NLK, and APC gene methylation and expression in gastric carcinoma and nasopharyngeal cancer.
Zhao Z; Liu W; Liu J; Wang J; Luo B
J Med Virol; 2017 Oct; 89(10):1844-1851. PubMed ID: 28543390
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7. DNA methylation profiling of esophageal adenocarcinoma using Methylation Ligation-dependent Macroarray (MLM).
Guilleret I; Losi L; Chelbi ST; Fonda S; Bougel S; Saponaro S; Gozzi G; Alberti L; Braunschweig R; Benhattar J
Biochem Biophys Res Commun; 2016 Oct; 479(2):231-237. PubMed ID: 27634218
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8. Correlations of Promoter Methylation in wif-1, RASSF1A, and CDH13 Genes with the Risk and Prognosis of Esophageal cancer.
Guo Q; Wang HB; Li YH; Li HF; Li TT; Zhang WX; Xiang SS; Sun ZQ
Med Sci Monit; 2016 Aug; 22():2816-24. PubMed ID: 27506957
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9. Carcinoma ex-pleomorphic adenoma derived from recurrent pleomorphic adenoma shows important difference by array CGH compared to recurrent pleomorphic adenoma without malignant transformation.
Mariano FV; Giovanetti K; Saccomani LF; Del Negro A; Kowalski LP; Krepischi AC; Altemani A
Braz J Otorhinolaryngol; 2016; 82(6):687-694. PubMed ID: 26971045
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10. Integrated analysis of DNA methylation and mutations in esophageal squamous cell carcinoma.
Kishino T; Niwa T; Yamashita S; Takahashi T; Nakazato H; Nakajima T; Igaki H; Tachimori Y; Suzuki Y; Ushijima T
Mol Carcinog; 2016 Dec; 55(12):2077-2088. PubMed ID: 26756304
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11. Aberrant Wnt-1/beta-catenin signaling and wif-1 deficiency are important events which promote tumor cell invasion and metastasis in salivary gland adenoid cystic carcinoma.
Wang R; Geng N; Zhou Y; Zhang D; Li L; Li J; Ji N; Zhou M; Chen Y; Chen Q
Biomed Mater Eng; 2015; 26 Suppl 1():S2145-53. PubMed ID: 26405993
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12. Expression and promoter methylation of Wnt inhibitory factor-1 in the development of oral submucous fibrosis.
Zhou S; Chen L; Mashrah M; Zhu Y; He Z; Hu Y; Xiang T; Yao Z; Guo F; Zhang C
Oncol Rep; 2015 Nov; 34(5):2636-42. PubMed ID: 26352791
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13. The negative regulators of Wnt pathway-DACH1, DKK1, and wif1 are methylated in oral and oropharyngeal cancer and wif1 methylation predicts shorter survival.
Paluszczak J; Sarbak J; Kostrzewska-Poczekaj M; Kiwerska K; Jarmuż-Szymczak M; Grenman R; Mielcarek-Kuchta D; Baer-Dubowska W
Tumour Biol; 2015 Apr; 36(4):2855-61. PubMed ID: 25487617
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14. Epigenetic markers for noninvasive early detection of nasopharyngeal carcinoma by methylation-sensitive high resolution melting.
Yang X; Dai W; Kwong DL; Szeto CY; Wong EH; Ng WT; Lee AW; Ngan RK; Yau CC; Tung SY; Lung ML
Int J Cancer; 2015 Feb; 136(4):E127-35. PubMed ID: 25196065
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15. Wnt signaling pathway pharmacogenetics in non-small cell lung cancer.
Stewart DJ; Chang DW; Ye Y; Spitz M; Lu C; Shu X; Wampfler JA; Marks RS; Garces YI; Yang P; Wu X
Pharmacogenomics J; 2014 Dec; 14(6):509-22. PubMed ID: 24980784
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16. Wnt inhibitory factor 1 suppresses cancer stemness and induces cellular senescence.
Ramachandran I; Ganapathy V; Gillies E; Fonseca I; Sureban SM; Houchen CW; Reis A; Queimado L
Cell Death Dis; 2014 May; 5(5):e1246. PubMed ID: 24853424
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17. Frequent hypermethylation of WNT pathway genes in laryngeal squamous cell carcinomas.
Paluszczak J; Hemmerling D; Kostrzewska-Poczekaj M; Jarmuż-Szymczak M; Grenman R; Wierzbicka M; Baer-Dubowska W
J Oral Pathol Med; 2014 Oct; 43(9):652-7. PubMed ID: 24762262
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18. Downregulation of sFRP-2 by epigenetic silencing activates the β-catenin/Wnt signaling pathway in esophageal basaloid squamous cell carcinoma.
Saito T; Mitomi H; Imamhasan A; Hayashi T; Mitani K; Takahashi M; Kajiyama Y; Yao T
Virchows Arch; 2014 Feb; 464(2):135-43. PubMed ID: 24464051
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19. HOTAIR, a prognostic factor in esophageal squamous cell carcinoma, inhibits wif-1 expression and activates Wnt pathway.
Ge XS; Ma HJ; Zheng XH; Ruan HL; Liao XY; Xue WQ; Chen YB; Zhang Y; Jia WH
Cancer Sci; 2013 Dec; 104(12):1675-82. PubMed ID: 24118380
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20. Epigenetic inactivation of Wnt inhibitory factor-1 in human esophageal squamous cell carcinoma.
Yang SH; Li SL; Dong ZM; Kan QC
Oncol Res; 2012; 20(2-3):123-30. PubMed ID: 23193918
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