1. |
Messadi DV, Le A, Berg S, et al. Expression of apoptosisassociated genes by human dermal scar fibroblasts [J]. Wound Repair Regen, 1999; 7(6): 511517.
|
2. |
徐軍, 耿智敏, 劉青光, 等. 膽管損傷愈合過程中顯微結構和超微結構的變化 [J]. 第四軍醫大學學報, 2002; 23(16): 14971500.
|
3. |
耿智敏, 向國安, 韓慶, 等. 轉化生長因子β1 在膽管愈合過程中的表達及意義 [J]. 中國普外基礎與臨床雜志, 2000; 7(6): 362363.
|
4. |
張小文, 盧暉, 王琨, 等. 原癌基因蛋白CMYC和CFOS在良性膽道狹窄瘢痕組織中的表達及相關性研究 [J]. 云南醫藥, 2007; 28(2): 108110.
|
5. |
高文超, 孫延平, 阮燦平, 等. cFLIP在大腸癌組織中的表達及意義 [J]. 中國普外基礎與臨床雜志, 2009; 12(3): 218222.
|
6. |
Djerbi M, DarrehShori T, Zhivotovsky B, et al. Characterization of the human FLICEinhibitory protein locus and comparison of the antiapoptotic activity of four different flip isoforms [J]. Scand J Immunol, 2001; 54(12): 180189.
|
7. |
Bodmer JL, Schrter M, Burns K, et al. Inhibition of death receptor signals by cellular FLIP [J]. Nature, 1997; 388(6638): 190195.
|
8. |
Ha JE, Choi YE, Jang J, et al. FLIP and MAPK play crucial roles in the MLN51mediated hyperproliferation of fibroblastlike synoviocytes in the pathogenesis of rheumatoid arthritis [J]. FEBS J, 2008; 275(14): 35463555.
|
9. |
Jiang T, Han Z, Chen S, et al. Resistance to activationinduced cell death and elevated FLIPL expression of CD4+ T cells in a polyI:Cinduced primary biliary cirrhosis mouse model [J]. Clin Exp Med, 2009; 9(4): 269276.
|
10. |
何貴金, 高沁怡, 許書河, 等. 103鈀支架誘導犬膽管增殖平滑肌細胞凋亡與防治膽管狹窄關系研究 [J]. 中國普外基礎與臨床雜志, 2005; 12(4): 340342.
|
11. |
Yang JK. FLIP as an anticancer therapeutic target [J]. Yonsei Med J, 2008; 49(1): 1927.
|
12. |
Banno T, Gazel A, Blumenberg M. Pathwayspecific profiling identifies the NFkappa Bdependent tumor necrosis factor alpharegulated genes in epidermal keratinocytes [J]. J Biol Chem, 2005; 280(19): 1897318980.
|
13. |
Kreuz S, Siegmund D, Scheurich P, et al. NFκB inducers upregulate cFLIP, a cycloheximidesensitive inhibitor of death receptor signaling [J]. Mol Cell Biol, 2001; 21(12): 39643973.
|
14. |
Payne CM, Weber C, CrowleySkillicorn C, et al. Deoxycholate induces mitochondrial oxidative stress and activates NFkappaB through multiple mechanisms in HCT116 colon epithelial cells [J]. Carcinogenesis, 2007; 28(1): 215222.
|
15. |
Hirano F, Haneda M, Makino I. Chenodeoxycholic acid and taurochenodexycholic acid induce antiapoptotic cIAP1 expression in human hepatocytes [J]. J Gastroenterol Hepatol, 2006; 21(12): 18071813.
|
16. |
Alpini G, Glaser S, Alvaro D, et al. Bile acid depletion and repletion regulate cholangiocyte growth and secretion by a phosphatidylinositol 3kinasedependent pathway in rats [J]. Gastroenterology, 2002; 123(4): 12261237.
|
17. |
Xia X, Francis H, Glaser S, et al. Bile acid interactions with cholangiocytes [J]. World J Gastroenterol, 2006; 12(22): 35533563.
|
18. |
Lilienbaum A, Isral A. From calcium to NFkappa B signaling pathways in neurons [J]. Mol Cell Biol, 2003; 23(8): 26802698.
|
19. |
Pawar P, Ma L, Byon CH, et al. Molecular mechanisms of tamoxifen therapy for cholangiocarcinoma: role of calmodulin [J]. Clin Cancer Res, 2009; 15(4): 12881296.
|