1
|
Jemal A, Bray F, Center MM, Ferlay J, Ward
E and Forman D: Global cancer statistics. CA Cancer J Clin.
61:69–90. 2011. View Article : Google Scholar : PubMed/NCBI
|
2
|
Hongo M, Nagasaki Y and Shoji T:
Epidemiology of esophageal cancer: Orient to Occident. Effects of
chronology, geography and ethnicity. J Gastroenterol Hepatol.
24:729–735. 2009. View Article : Google Scholar : PubMed/NCBI
|
3
|
Stoner GD and Gupta A: Etiology and
chemoprevention of esophageal squamous cell carcinoma.
Carcinogenesis. 22:1737–1746. 2001. View Article : Google Scholar : PubMed/NCBI
|
4
|
Lambert R and Hainaut P: The
multidisciplinary management of gastrointestinal cancer.
Epidemiology of oesophagogastric cancer. Best Pract Res Clin
Gastroenterol. 21:921–945. 2007. View Article : Google Scholar : PubMed/NCBI
|
5
|
Thallinger CM, Kiesewetter B, Raderer M
and Hejna M: Pre- and postoperative treatment modalities for
esophageal squamous cell carcinoma. Anticancer Res. 32:4609–4627.
2012.PubMed/NCBI
|
6
|
Kranzfelder M, Büchler P and Friess H:
Surgery within multimodal therapy concepts for esophageal squamous
cell carcinoma (ESCC): The MRI approach and review of the
literature. Adv Med Sci. 54:158–169. 2009. View Article : Google Scholar : PubMed/NCBI
|
7
|
Kamangar F, Dores GM and Anderson WF:
Patterns of cancer incidence, mortality, and prevalence across five
continents: Defining priorities to reduce cancer disparities in
different geographic regions of the world. J Clin Oncol.
24:2137–2150. 2006. View Article : Google Scholar : PubMed/NCBI
|
8
|
Su ZZ, Lee SG, Emdad L, Lebdeva IV, Gupta
P, Valerie K, Sarkar D and Fisher PB: Cloning and characterization
of SARI (suppressor of AP-1, regulated by IFN). Proc Natl Acad Sci
USA. 105:20906–20911. 2008. View Article : Google Scholar : PubMed/NCBI
|
9
|
Zhou RJ, Shi Z, Zhou K, Wang HD, Zhang GQ,
Li XT and Xu JP: Decreased SARI expression predicts poor prognosis
of Chinese patients with non-small cell lung cancer. Int J Clin Exp
Pathol. 6:2056–2063. 2013.PubMed/NCBI
|
10
|
Wang C, Su Y, Zhang L, Wang M, You J, Zhao
X, Zhang Z, Liu J and Hao X: The function of SARI in modulating
epithelial-mesenchymal transition and lung adenocarcinoma
metastasis. PLoS One. 7:e380462012. View Article : Google Scholar : PubMed/NCBI
|
11
|
Ma H, Liang X, Chen Y, Pan K, Sun J, Wang
H, Wang Q, Li Y, Zhao J, Li J, et al: Decreased expression of BATF2
is associated with a poor prognosis in hepatocellular carcinoma.
Int J Cancer. 128:771–777. 2011. View Article : Google Scholar
|
12
|
Wen H, Chen Y, Hu Z, Mo Q, Tang J and Sun
C: Decreased expression of BATF2 is significantly associated with
poor prognosis in oral tongue squamous cell carcinoma. Oncol Rep.
31:169–174. 2014.
|
13
|
Edge SB and Compton CC: The American Joint
Committee on Cancer: The 7th edition of the AJCC cancer staging
manual and the future of TNM. Ann Surg Oncol. 17:1471–1474. 2010.
View Article : Google Scholar : PubMed/NCBI
|
14
|
Schmittgen TD and Livak KJ: Analyzing
real-time PCR data by the comparative C(T) method. Nat Protoc.
3:1101–1108. 2008. View Article : Google Scholar : PubMed/NCBI
|
15
|
Landschulz WH, Johnson PF and McKnight SL:
The leucine zipper: A hypothetical structure common to a new class
of DNA binding proteins. Science. 240:1759–1764. 1988. View Article : Google Scholar : PubMed/NCBI
|
16
|
Turner R and Tjian R: Leucine repeats and
an adjacent DNA binding domain mediate the formation of functional
cFos-cJun heterodimers. Science. 243:1689–1694. 1989. View Article : Google Scholar : PubMed/NCBI
|
17
|
O'Shea EK, Rutkowski R, Stafford WF III
and Kim PS: Preferential heterodimer formation by isolated leucine
zippers from fos and jun. Science. 245:646–648. 1989. View Article : Google Scholar : PubMed/NCBI
|
18
|
Murphy TL, Tussiwand R and Murphy KM:
Specificity through cooperation: BATF-IRF interactions control
immune-regulatory networks. Nat Rev Immunol. 13:499–509. 2013.
View Article : Google Scholar : PubMed/NCBI
|
19
|
Britschgi C and Fey MF: Tumor suppressor
genes in myeloid differentiation and leukemogenesis. Future Oncol.
5:245–257. 2009. View Article : Google Scholar : PubMed/NCBI
|
20
|
Lin JJ, Jiang H and Fisher PB: Melanoma
differentiation associated gene-9, mda-9, is a human gamma
interferon responsive gene. Gene. 207:105–110. 1998. View Article : Google Scholar : PubMed/NCBI
|
21
|
Oikawa K, Tanaka M, Itoh S, Takanashi M,
Ozaki T, Muragaki Y and Kuroda M: A novel oncogenic pathway by
TLS-CHOP involving repression of MDA-7/IL-24 expression. Br J
Cancer. 106:1976–1979. 2012. View Article : Google Scholar : PubMed/NCBI
|
22
|
Aissaoui H, Prévost C, Boucharaba A,
Sanhadji K, Bordet JC, Négrier C and Boukerche H: MDA-9/syntenin is
essential for factor VIIa-induced signaling, migration, and
metastasis in melanoma cells. J Biol Chem. 290:3333–3348. 2015.
View Article : Google Scholar
|
23
|
Liu ZB, Yang Y, Ye XG, Wang L, Tian PY and
Zhang YY: Expression and significance of SARI and CCN1 in human
colorectal carcinomas. Zhonghua Yi Xue Za Zhi. 91:2397–2401.
2011.In Chinese.
|
24
|
Huang Q, Yang Y, Li X and Huang S:
Transcription suppression of SARI (suppressor of AP-1, regulated by
IFN) by BCR-ABL in human leukemia cells. Tumour Biol. 32:1191–1197.
2011. View Article : Google Scholar : PubMed/NCBI
|