1Lee JM, Dedhar S, Kalluri R, et al. The epithelial-mesenchymal transition: new insights in signaling, development, and disease [J]. Cell Biol, 2006,172(7) :973-981.
2Merikallio H, T TY, P~ikkitaro P, et al. Slug is associated with poor survival in squamous cell carcinoma of the lung[ J]. Clin Exp Pathol, 2014,7 (9) :5846-5854.
3Came C, Arnoux V, Bibeau F, et al. Roles of the transcription fac- tors snail and slug during mammary morphogenesis and breast car- cinoma progression [ J ]. Mammary Gland Biol Neoplasia, 2004,9 (2) :183-193.
4Eastham AM, Spencer H, Sonein F, et al. Epithelial-mesenchy-mal transition events during human embryonic stem cell differentia- tion[ J 1. Cancer Res, 2007,67 ( 23 ) : 11254-11262.
5Ombrato L, Malanchi I. The EMT universe: space between cancer cell dissemination and metastasis initiation [ J 1. Crit Rev Oncog, 2014,19(5) :349-361.
6Zald KW. Immunohistochemical Assessment of E-eadherin and 13- eatenin in the Histological Differentiations of Oral Squamous Cell Carcinoma[ J]. Asian Pac J Cancer Prey, 2014, 15 (20):8847- 8853.
7Havel LS, Kline ER, Salgueiro AM, et al. Vimentin regulates lung cancer cell adhesion through a VAV2-Racl pathway to control focal adhesion kinase activity[ J]. Oncogene, 2015,34( 15 ) : 1979-1990.
8Butch TC, Watson MT, Nyalwidhe JO, et al. Variable metastatic potentials correlate with differential plectin and vimentin expression in syngeneic androgen independent prostate cancer cells[ J]. PLoS One, 2013,8(5) :65005.
10Kim KH, Kim L, Choi S, et al. The clinicopathological signifi- cance of epithelial mesenchymal transition associated protein ex- pression in head and neck squamous cell carcinoma[J]. Korean J Pathol, 2014,48 (4) :263-269.