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Side population of pancreatic cancer cells predominates in TGF‐β‐mediated epithelial to mesenchymal transition and invasion
Authors:Ayano Kabashima  Hajime Higuchi  Hiromasa Takaishi  Yumi Matsuzaki  Sadafumi Suzuki  Motoko Izumiya  Hideko Iizuka  Gen Sakai  Shigenari Hozawa  Toshifumi Azuma  Toshifumi Hibi
Institution:1. Division of Gastroenterology, Department of Internal Medicine, Keio University School of Medicine, Tokyo, Japan;2. Fax: +81‐3‐3341‐3631.;3. Department of Physiology, Keio University School of Medicine, Tokyo, Japan;4. Laboratory of Molecular Regeneration, Oral Health Science Center, Tokyo Dental College, Chiba, Japan
Abstract:We report here side population (SP) cells, a cancer stem cell enriched fraction from pancreatic cancer cell line, have enormous superior potential of the epithelial to mesenchymal transition (EMT), invasion, and metastasis. In an isolated SP cell culture, the cells rapidly expressed and up‐regulated E‐cadherin, an epithelial phenotypic marker, and the cells formed tightly contacted cell cluster, which is a representative epithelial phenotypic appearance. When the SP cells were incubated in the presence of TGF‐β, SP cells changed their shape into mesenchymal‐like appearance including spindle shaped assembly. This alteration was associated with significant reduction of E‐cadherin expression level. TGF‐β induced EMT‐associated gene alteration such as reduction of E‐cadherin mRNA and induction of Snail mRNA and matrixmetalloproteinase (MMP)‐2 mRNA. Finally, SP cells exerted notable matrigel invasion activity in response to TGF‐β treatment, whereas MP cells did not respond to TGF‐β‐mediated invasion. In conclusion, these results suggest that SP cells from pancreatic cancer cell line possess superior potentials of phenotypic switch, i.e., EMT/MET, micro‐invasion, and in vivo metastasis, as compared to MP cells. Because micro‐invasion and metastasis are key mechanisms of cancer malignant potential, SP cells would be the attractive target for preventing cancer progression. © 2008 UICC
Keywords:TGF‐beta  cancer stem cell  invasion  metastasis  E‐cadherin
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