Home LiteratureArticle Details
PMID: 21734801 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Molecular biology of pancreatic cancer.

World journal of gastroenterology ·Vol. 17 ·No. 24 ·2011-06-28 ·Pages 2897-908

Zavoral M, Minarikova P, Zavada F, Salek C, Minarik M

Abstract

In spite of continuous research efforts directed at early detection and treatment of pancreatic cancer, the outlook for patients affected by the disease remains dismal. With most cases still being diagnosed at advanced stages, no improvement in survival prognosis is achieved with current diagnostic imaging approaches. In the absence of a dominant precancerous condition, several risk factors have been identified including family history, chronic pancreatitis, smoking, diabetes mellitus, as well as certain genetic disorders such as hereditary pancreatitis, cystic fibrosis, familial atypical multiple mole melanoma, and Peutz-Jeghers and Lynch syndromes. Most pancreatic carcinomas, however, remain sporadic. Current progress in experimental molecular techniques has enabled detailed understanding of the molecular processes of pancreatic cancer development. According to the latest information, malignant pancreatic transformation involves multiple oncogenes and tumor-suppressor genes that are involved in a variety of signaling pathways. The most characteristic aberrations (somatic point mutations and allelic losses) affect oncogenes and tumor-suppressor genes within RAS, AKT and Wnt signaling, and have a key role in transcription and proliferation, as well as systems that regulate the cell cycle (SMAD/DPC, CDKN2A/p16) and apoptosis (TP53). Understanding of the underlying molecular mechanisms should promote development of new methodology for early diagnosis and facilitate improvement in current approaches for pancreatic cancer treatment.

Keywords
Diabetes Molecular biology Pancreatic cancer Pancreatitis Risk factors
MeSH Terms
Animals Comorbidity Diabetes Mellitus/epidemiology,genetics Diagnosis, Differential Genetic Predisposition to Disease Humans Molecular Biology Pancreatic Neoplasms/epidemiology,etiology,genetics,physiopathology Pancreatitis, Chronic/epidemiology,etiology,genetics,physiopathology Risk Factors Signal Transduction/physiology Survival Rate
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Zavoral Miroslav
Charles University, 1st Medical Faculty, Internal Clinic, 128 00 Prague 2, Czech Republic.
Minarikova Petra
Zavada Filip
Salek Cyril
Minarik Marek
References (82)
82 references, click to expand
  1. Genetic alterations in cancer knowledge system: analysis of gene mutations in mouse and human liver and lung tumors.
    Toxicol Sci. 2006 Apr;90(2):400-18 PMID: 16410370
  2. Methods and rationale for the early detection of pancreatic cancer. Highlights from the "2010 ASCO Gastrointestinal Cancers Symposium". Orlando, FL, USA. January 22-24, 2010.
    JOP. 2010 Mar 05;11(2):128-30 PMID: 20208319
  3. [Chronic pancreatitis as a risk factor for pancreatic carcinoma].
    Vnitr Lek. 2002 Jul;48(7):638-41 PMID: 12197407
  4. Pancreatic cancer: an epidemiologic approach and model.
    JAMA. 1981 Jan 9;245(2):171 PMID: 7452836
  5. Expression of the tumor suppressor ARHI inhibits the growth of pancreatic cancer cells by inducing G1 cell cycle arrest.
    Oncol Rep. 2009 Sep;22(3):635-40 PMID: 19639215
  6. Peutz-Jeghers syndrome and screening for pancreatic cancer.
    Br J Surg. 2006 Dec;93(12):1446-55 PMID: 17115408
  7. An integrated high-resolution physical map of the DPC/BRCA2 region at chromosome 13q12.
    Cancer Res. 1995 Oct 15;55(20):4570-4 PMID: 7553631
  8. Identification and screening of individuals at increased risk for pancreatic cancer with emphasis on known environmental and genetic factors and hereditary syndromes.
    JOP. 2010 May 05;11(3):203-12 PMID: 20442513
  9. Resectability of presymptomatic pancreatic cancer and its relationship to onset of diabetes: a retrospective review of CT scans and fasting glucose values prior to diagnosis.
    Am J Gastroenterol. 2007 Oct;102(10):2157-63 PMID: 17897335
  10. Why do Black Americans have a higher risk of pancreatic cancer than White Americans?
    Epidemiology. 2003 Jan;14(1):45-54 PMID: 12500045
  11. Cancer incidence and mortality in the Czech Republic.
    Klin Onkol. 2010;23(5):311-24 PMID: 21058527
  12. Inhibition of PI3K/AKT and MAPK/ERK pathways causes activation of FOXO transcription factor, leading to cell cycle arrest and apoptosis in pancreatic cancer.
    J Mol Signal. 2010 Jul 19;5:10 PMID: 20642839
  13. CUX1: target of Akt signalling and mediator of resistance to apoptosis in pancreatic cancer.
    Gut. 2010 Aug;59(8):1101-10 PMID: 20442202
  14. c-met expression in pancreatic cancer and effects of hepatocyte growth factor on pancreatic cancer cell growth.
    Pancreas. 1997 Jul;15(1):35-40 PMID: 9211490
  15. Alcohol intake and pancreatic cancer risk: a pooled analysis of fourteen cohort studies.
    Cancer Epidemiol Biomarkers Prev. 2009 Mar;18(3):765-76 PMID: 19258474
  16. Epidemiology and risk factors for pancreatic cancer.
    Best Pract Res Clin Gastroenterol. 2006 Apr;20(2):197-209 PMID: 16549324
  17. BEIR V: implications for the nuclear workforce.
    Science. 1990 Feb 9;247(4943):620-2 PMID: 2300818
  18. Pancreatic intraepithelial neoplasia: a new nomenclature and classification system for pancreatic duct lesions.
    Am J Surg Pathol. 2001 May;25(5):579-86 PMID: 11342768
  19. Smad4 dependency defines two classes of transforming growth factor {beta} (TGF-{beta}) target genes and distinguishes TGF-{beta}-induced epithelial-mesenchymal transition from its antiproliferative and migratory responses.
    Mol Cell Biol. 2005 Sep;25(18):8108-25 PMID: 16135802
  20. Pancreatic cancer cell proliferation is phosphatidylinositol 3-kinase dependent.
    J Surg Res. 2000 May 1;90(1):39-44 PMID: 10781373
  21. Overexpression of c-met in the early stage of pancreatic carcinogenesis; altered expression is not sufficient for progression from chronic pancreatitis to pancreatic cancer.
    World J Gastroenterol. 2006 Jun 28;12(24):3878-82 PMID: 16804974
  22. c-Met is essential for wound healing in the skin.
    J Cell Biol. 2007 Apr 9;177(1):151-62 PMID: 17403932
  23. Hormonal factors and pancreatic cancer in women.
    Ann Epidemiol. 2001 Nov;11(8):563-7 PMID: 11709276
  24. Reproductive factors and risk of pancreatic cancer in women: a review of the literature.
    Ann Epidemiol. 2009 Feb;19(2):103-11 PMID: 19185803
  25. BCL-2 functions as an activator of the AKT signaling pathway in pancreatic cancer.
    J Cell Biochem. 2007 Dec 1;102(5):1171-9 PMID: 17960583
  26. Differential roles of alterations of p53, p16, and SMAD4 expression in the progression of intraductal papillary-mucinous tumors of the pancreas.
    Oncol Rep. 2003 Jan-Feb;10(1):21-5 PMID: 12469138
  27. Dietary patterns and risk of pancreatic cancer.
    Int J Cancer. 2005 May 1;114(5):817-23 PMID: 15609315
  28. The COSMIC (Catalogue of Somatic Mutations in Cancer) database and website.
    Br J Cancer. 2004 Jul 19;91(2):355-8 PMID: 15188009
  29. Antidiabetic therapies affect risk of pancreatic cancer.
    Gastroenterology. 2009 Aug;137(2):482-8 PMID: 19375425
  30. Development of an animal model of pancreatic cancer.
    Surg Forum. 1976;27(62):456-8 PMID: 1019937
  31. The yield of first-time endoscopic ultrasonography in screening individuals at a high risk of developing pancreatic cancer.
    Am J Gastroenterol. 2009 Sep;104(9):2175-81 PMID: 19491823
  32. The risk of cancer among patients with cystic fibrosis. Cystic Fibrosis and Cancer Study Group.
    N Engl J Med. 1995 Feb 23;332(8):494-9 PMID: 7830730
  33. Confirmation of a double-hit model for the NF1 gene in benign neurofibromas.
    Am J Hum Genet. 1997 Sep;61(3):512-9 PMID: 9326316
  34. Allergies are associated with reduced pancreas cancer risk: A population-based case-control study in Ontario, Canada.
    Int J Cancer. 2007 Nov 15;121(10):2241-5 PMID: 17582608
  35. Improvement of pancreatic cancer model by modified treatment with N-nitroso-bis (2-oxopropyl) amine.
    Cancer Lett. 1977 Mar;2(4-5):233-7 PMID: 45725
  36. Detecting early pancreatic cancer: problems and prospects.
    Semin Oncol. 2007 Aug;34(4):284-94 PMID: 17674956
  37. New-onset diabetes: a potential clue to the early diagnosis of pancreatic cancer.
    Lancet Oncol. 2009 Jan;10(1):88-95 PMID: 19111249
  38. Allergies, obesity, other risk factors and survival from pancreatic cancer.
    Int J Cancer. 2010 Nov 15;127(10):2412-9 PMID: 20143395
  39. Molecular diagnosis of early pancreatic ductal adenocarcinoma in high-risk patients.
    Pancreatology. 2001;1(5):486-509 PMID: 12120229
  40. Meat and fat intake as risk factors for pancreatic cancer: the multiethnic cohort study.
    J Natl Cancer Inst. 2005 Oct 5;97(19):1458-65 PMID: 16204695
  41. A compendium of potential biomarkers of pancreatic cancer.
    PLoS Med. 2009 Apr 7;6(4):e1000046 PMID: 19360088
  42. Role of Akt in growth and survival of PANC-1 pancreatic cancer cells.
    Pancreas. 2002 Jan;24(1):42-6 PMID: 11741181
  43. Lifestyle factors and cancer of the pancreas: a hypothetical mechanism.
    Med Hypotheses. 1980 Sep;6(9):971-85 PMID: 7001195
  44. Expression of the Met/hepatocyte growth factor receptor in human pancreatic cancer.
    Cancer Res. 1995 Mar 1;55(5):1129-38 PMID: 7866999
  45. Body mass index and risk, age of onset, and survival in patients with pancreatic cancer.
    JAMA. 2009 Jun 24;301(24):2553-62 PMID: 19549972
  46. Tumor-suppressive pathways in pancreatic carcinoma.
    Cancer Res. 1997 May 1;57(9):1731-4 PMID: 9135016
  47. Smoking, alcohol, coffee, and tea intake and incidence of cancer of the exocrine pancreas: the Iowa Women's Health Study.
    Cancer Epidemiol Biomarkers Prev. 1997 Dec;6(12):1081-6 PMID: 9419407
  48. Wnt signaling regulates pancreatic beta cell proliferation.
    Proc Natl Acad Sci U S A. 2007 Apr 10;104(15):6247-52 PMID: 17404238
  49. The PTEN/PI3K/AKT signalling pathway in cancer, therapeutic implications.
    Curr Cancer Drug Targets. 2008 May;8(3):187-98 PMID: 18473732
  50. UDP glucuronosyltransferase (UGT1A7) gene polymorphisms increase the risk of chronic pancreatitis and pancreatic cancer.
    Gastroenterology. 2003 Jun;124(7):1802-8 PMID: 12806614
  51. Inflammation and the development of pancreatic cancer.
    Surg Oncol. 2002 May;10(4):153-69 PMID: 12020670
  52. Pancreas development and cancer: Wnt/beta-catenin at issue...
    Cell Cycle. 2006 Jan;5(1):7-10 PMID: 16322692
  53. p16 Inactivation in pancreatic intraepithelial neoplasias (PanINs) arising in patients with chronic pancreatitis.
    Am J Surg Pathol. 2003 Dec;27(12):1495-501 PMID: 14657708
  54. A multifactorial model for pancreatic cancer in man. Epidemiologic evidence.
    JAMA. 1981 Jan 9;245(2):147-52 PMID: 7452829
  55. Activated STAT signaling in human tumors provides novel molecular targets for therapeutic intervention.
    Clin Cancer Res. 2002 Apr;8(4):945-54 PMID: 11948098
  56. Risk factors for pancreatic adenocarcinoma and prospects for screening.
    Gastroenterol Hepatol (N Y). 2010 Apr;6(4):246-54 PMID: 20567579
  57. Coexpression of the c-met proto-oncogene and hepatocyte growth factor in human pancreatic cancer.
    Cancer Res. 1994 Nov 15;54(22):5775-8 PMID: 7954397
  58. Incidence of cancer in the course of chronic pancreatitis.
    Am J Gastroenterol. 1999 May;94(5):1253-60 PMID: 10235203
  59. BRCA germline mutations in Jewish patients with pancreatic adenocarcinoma.
    J Clin Oncol. 2009 Jan 20;27(3):433-8 PMID: 19064968
  60. Pancreatic cancer and the FAMMM syndrome.
    Fam Cancer. 2008;7(1):103-12 PMID: 17992582
  61. Pancreatic cancer after surgery for chronic pancreatitis.
    Dig Liver Dis. 2003 Jul;35(7):482-5 PMID: 12870734
  62. Parity, reproductive factors, and the risk of pancreatic cancer in women.
    Cancer Epidemiol Biomarkers Prev. 2003 May;12(5):433-8 PMID: 12750238
  63. Hypermethylation-associated inactivation indicates a tumor suppressor role for p15INK4B.
    Cancer Res. 1996 Feb 15;56(4):722-7 PMID: 8631003
  64. Risk of pancreatic cancer in workers exposed to chlorinated hydrocarbon solvents and related compounds: a meta-analysis.
    Am J Epidemiol. 2001 May 1;153(9):841-50 PMID: 11323314
  65. Risk of pancreatic adenocarcinoma in chronic pancreatitis.
    Gut. 2002 Dec;51(6):849-52 PMID: 12427788
  66. Chronic pancreatitis and other risk factors for pancreatic cancer.
    Gastroenterol Clin North Am. 1999 Sep;28(3):673-85, x PMID: 10503143
  67. Reference values and biological variation for tumor marker CA 19-9 in serum for different Lewis and secretor genotypes and evaluation of secretor and Lewis genotyping in a Caucasian population.
    Clin Chem. 1999 Jan;45(1):54-61 PMID: 9895338
  68. Identification of CFTR, PRSS1, and SPINK1 mutations in 381 patients with pancreatitis.
    Pancreas. 2006 Oct;33(3):221-7 PMID: 17003641
  69. The Ras/Raf/MAPK pathway.
    J Thorac Oncol. 2006 Jan;1(1):7-9 PMID: 17409820
  70. BEIR V report. Experts urge cautious interpretation of higher risk estimates.
    J Nucl Med. 1990 Apr;31(4):13A-19A PMID: 2324815
  71. A new mouse model of pancreatic cancer: PTEN gets its Akt together.
    Cancer Cell. 2005 Sep;8(3):171-2 PMID: 16169459
  72. Overweight, obesity, and mortality from cancer in a prospectively studied cohort of U.S. adults.
    N Engl J Med. 2003 Apr 24;348(17):1625-38 PMID: 12711737
  73. Epithelial-cadherin and beta-catenin expression changes in pancreatic intraepithelial neoplasia.
    Clin Cancer Res. 2004 Feb 15;10(4):1235-40 PMID: 14977820
  74. C-met protooncogene expression and its regulation by cytokines in the regenerating pancreas and in pancreatic cancer cells.
    Scand J Gastroenterol. 2000 Jan;35(1):90-5 PMID: 10672841
  75. PTEN regulates angiogenesis through PI3K/Akt/VEGF signaling pathway in human pancreatic cancer cells.
    Mol Cell Biochem. 2009 Nov;331(1-2):161-71 PMID: 19437103
  76. Re: The role of STAT-3 in the induction of apoptosis in pancreatic cancer cells by benzyl isothiocyanate.
    J Natl Cancer Inst. 2009 Jun 16;101(12):893; author reply 893-4 PMID: 19509359
  77. Advances in counselling and surveillance of patients at risk for pancreatic cancer.
    Gut. 2007 Oct;56(10):1460-9 PMID: 17872573
  78. Evaluation of clinical relevance of examining K-ras, p16 and p53 mutations along with allelic losses at 9p and 18q in EUS-guided fine needle aspiration samples of patients with chronic pancreatitis and pancreatic cancer.
    World J Gastroenterol. 2007 Jul 21;13(27):3714-20 PMID: 17659731
  79. Genetic and clinical features of human pancreatic ductal adenocarcinomas with widespread microsatellite instability.
    Cancer Res. 2001 Apr 1;61(7):3139-44 PMID: 11306499
  80. The race from chronic pancreatitis to pancreatic cancer.
    JOP. 2003 Sep;4(5):165-8 PMID: 14526127
  81. Progression model for pancreatic cancer.
    Clin Cancer Res. 2000 Aug;6(8):2969-72 PMID: 10955772
  82. Familial pancreatic cancer (Part 1): Genetic pathology review.
    Nebr Med J. 1989 May;74(5):109-12 PMID: 2542813
Article Info
Journal
World journal of gastroenterology
Abbr.
World J Gastroenterol
ISSN
2219-2840
Published
2011-06-28
Pages
2897-908
Language
English
Region
United States
NLM ID
100883448
PMCID
PMC3129504
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com