Journal of International Oncology››2014,Vol. 41››Issue (12): 930-933.doi:10.3760/cma.j.issn.1673-422X.2014.12.016
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2014-12-24Published:
2015-02-02Contact:
Li Changbin, Email: jddjq12@126.comDANG Jun-Qiang, CHEN Yuan, LIN Wen, LI Chang-Bin. Mechanism of phytochemicals as anticancer agents in parcreatic carcinoma[J]. Journal of International Oncology, 2014, 41(12): 930-933.
[1] Block G, Patterson B, Subar A. Fruit, vegetables, and cancer prevention: areview of the epidemiological evidence[J]. Nutr Cancer, 1992, 18(1): 129. [2] Anand P, Sundaram C, Jhurani S, et al. Curcumin and cancer: an "oldage" disease with an "algeold" solution[J]. Cancer Lett, 2008, 267(1): 133164. [3] Li L, Aggarwal BB, Shishodia S, et al. Nuclear factor kappa B and I kappa B kinase are constitutively active in human pancreaticcells, and their downregulation by curcumin (diferuloylmethane) isassociated with the suppression of proliferation and the induction ofapoptosis [J]. Cancer, 2004,101(10): 23512362. [4] Hidaka H, Ishiko T, Furuhashi T, et al. Curcumin inhibits interleukin 8production and enhances interleukin 8 receptor expression on the cellsurfaceimpact on human pancreatic carcinoma cell growth by autocrineregulation[J]. Cancer, 2002, 95(6): 12061214. [5] Jutooru I, Chadalapaka G, Lei P, et al. Inhibition of NF kappa B and pancreatic cancer cell and tumor growth by curcumin is dependent onspecificity protein downregulation[J]. J Biol Chem, 2010, 285(33): 2533225344. [6] Lin L, Hutzen B, Zuo M, et al. Novel STAT3 phosphorylationinhibitors exhibit potent growthsuppressive activity in pancreatic and breastcancer cells[J]. Cancer Res, 2010, 70 (6): 24452454. [7] 陈干涛, 白少华, 高志强. 姜黄素联合顺铂抗胰腺癌细胞增殖的效应[J]. 中国中西医结合消化杂志, 2008, 16(1): 2628. [8] Li Y, Revalde JL, Reid G, et al. Modulatory effects of curcumin on multidrug resistanceassociated protein 5 in pancreatic cancer cells[J]. Cancer Chemother Pharmacol, 2010, 10(7): 15151520. [9] BoraTatar G, DayangacErden D, Demir AS, et al. Molecular modifications on carboxylic acid derivatives as potenthistone deacetylase inhibitors: activity and docking studies[J]. Bioorg Med Chem, 2009, 17(14): 52195228. [10] Ali S, Ahmad A, Aboukameel A, et al. Increased Ras GTPase activity is regulated by miRNAs that can be attenuatedby CDF treatment in pancreatic cancer cells[J]. Cancer Lett, 2012, 319(2): 173181. [11] Kanai M, Yoshimura K, Asada M, et al. A phase Ⅰ/Ⅱ study of gemcitabinebased chemotherapyplus curcumin for patients with gemcitabineresistant pancreatic cancer [J].Cancer Chemother Pharmacol, 2011, 68(1):157164. [12] Sahu RP, Srivastava SK. The role of STAT3 in the induction of apoptosis inpancreatic cancer cells by benzyl isothiocyanate[J]. J Natl Cancer Inst, 2009, 101(3): 176193. [13] Xu Q, Briggs J, Park S, et al. Targeting Stat3 blocks both HIF1 and VEGF expression induced by multiple oncogenic growth signalingpathways [J]. Oncogene, 2005, 24(36): 55525560. [14] Schlieman MG, Fahy BN, Ramsamooj R, et al. Incidence, mechanism and prognostic value of activated AKT in pancreas cancer[J]. Br J Cancer, 2003, 89(11): 21102115. [15] Batra S, Sahu RP, Kandala PK, Srivastava SK. Benzyl isothiocyanatemediated inhibition of histone deacetylase leads to NFkappa B turnoff inhuman pancreatic carcinoma cells[J]. Mol Cancer Ther, 2010, 9(6):15961608. [16] Boreddy SR, Sahu RP, Srivastava SK. Benzyl isothiocyanate suppressespancreatic tumor angiogenesis and invasion by inhibiting HIFalpha/VEGF/RhoGTPases: pivotal role of STAT3[J]. PLoS One, 2011, 6(10): e25799. [17] Zhang R, Humphreys I, Sahu RP, et al. In vitro and in vivo induction of apoptosis by capsain in pancreaticcancer cells is mediated through ROS generation and mitochondrial death pathway[J]. Apoptosis, 2008, 13(12): 14651478. [18] Bai H, Li H, Zhang W, et al. Inhibition of chronic pancreatitis and pancreatic intraepithelial neoplasia(PanIN) by capsaicin in LSLKrasG12D/Pdx1Cre mice[J]. Carcinogenesis, 2011, 32(11): 16891696. [19] Min JK, Han KY, Kim EC, et al. Capsaicin inhibits in vitro and in vivo angiogenesis[J]. Cancer Res, 2004, 64(2): 644647. [20] Zhang L, Pang E, Loo RR, et al. Concomitantinhibition of HSP90, its mitochondrial localized homologue TRAP1 and HSP27 by green tea in pancreatic cancer HPAFⅡ cells[J]. Proteomics, 2011, 11(24): 46384647. [21] Kostin SF, McDonald DE, McFadden DW. Inhibitory effects of epigallocatechin3gallate and pterostilbene on pancreatic cancer growth in vitro[J]. J Surg Res, 2012, 177(2): 255262. [22] Shankar S, Ganapathy S, Hingorani SR, et al. EGCG inhibits growth, invasion, angiogenesis and metastasis of pancreatic cancer[J]. Fron Biosci, 2008, 13: 440452. [23] Thakur VS, Gupta K, Gupta S. Green tea polyphenols increase p53transcriptional activity and acetylation by suppressing classⅠhistonedeacetylases[J]. Int J Oncol, 2012, 41(1): 353361. [24] Tsang WP, Kwok TT. Epigallocatechin gallate upregulation of miR16 andinduction of apoptosis in human cancer cells[J]. J Nutr Biochem, 2010, 21(2): 140146. |
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