Cite

1. Karakayali FY. Surgical and interventional management of complications caused by acute pancreatitis. World J Gastroenterol 2014; 20 (37): 13412-13423.10.3748/wjg.v20.i37.13412418889425309073Search in Google Scholar

2. Papachristou GI, Clermont G, Sharma A, Yadav D, Whitcomb DC. Risk and markers of severe acute pancreatitis. Gastroenterol Clin North Am 2007; 36 (2): 277-296.10.1016/j.gtc.2007.03.00317533079Search in Google Scholar

3. Hirota M, Ohmuraya M, Baba H. Genetic background of pancreatitis. Postgrad Med J 2006; 82 (974): 775-778.10.1136/pgmj.2006.050591265391917148697Search in Google Scholar

4. Wilson PG, Manji M, Neoptolemos JP. Acute pancreatitis as a model of sepsis. Journal of Antimicrobial Chemotherapy 1998; 41, Suppl. A: 51-63.10.1093/jac/41.suppl_1.519511087Search in Google Scholar

5. Andersson R, Andersson B, Andersson E, Axelsson J, Eckerwall G, Tingstedt B. Acute pancreatitis--from cellular signalling to complicated clinical course. HPB (Oxford) 2007; 9 (6): 414-420.10.1080/13651820701713766221535318345287Search in Google Scholar

6. Beger HG, Rau BM. Severe acute pancreatitis: Clinical course and management. World J Gastroenterol 2007; 13 (38): 5043-5051.10.3748/wjg.v13.i38.5043443463217876868Search in Google Scholar

7. Grendell JH. Genetic factors in pancreatitis. Curr Gastroenterol Rep 2003; 5 (2): 105-109.10.1007/s11894-003-0078-712631449Search in Google Scholar

8. Rolston RK, Kant JA. Genetic testing in acute and chronic pancreatitis. Curr Gastroenterol Rep 2001; 3 (2): 115-120.10.1007/s11894-001-0007-611276378Search in Google Scholar

9. Grigorescu M, Grigorescu MD. Genetic factors in pancreatitis. Rom J Gastroenterol 2005; 14 (1): 53-61.Search in Google Scholar

10. Masamune A. Genetics of pancreatitis: the 2014 update. Tohoku J Exp Med 2014; 232 (2): 69-77.10.1620/tjem.232.6924522117Search in Google Scholar

11. Whitcomb DC. Genetic risk factors for pancreatic disorders. Gastroenterology 2013; 144 (6): 1292-1302.10.1053/j.gastro.2013.01.069368406123622139Search in Google Scholar

12. Whitcomb DC. Genetic aspects of pancreatitis. Annu Rev Med 2010; 61: 413-424.10.1146/annurev.med.041608.121416Search in Google Scholar

13. Whitcomb DC, Gorry MC, Preston RA, et al. Hereditary pancreatitis is caused by a mutation in the cationic trypsinogen gene. Nat Genet 1996; 14: 141-145.10.1038/ng1096-141Search in Google Scholar

14. Witt H, Luck W, Hennies HC, et al. Mutations in the gene encoding the serine protease inhibitor, Kazal type 1 are associated with chronic pancreatitis. Nat Genet 2000; 25: 213-216.10.1038/76088Search in Google Scholar

15. Khan AS, Latif SU, Eloubeidi MA. Controversies in the etiologies of acute pancreatitis. Jop 2010; 11 (6): 545-552.Search in Google Scholar

16. Gomez-Lira M, Bonamini D, Castellani C, et al. Mutations in the SPINK1 gene in idiopathic pancreatitis Italian patients. Eur J Hum Genet 2003; 11 (7): 543-546.10.1038/sj.ejhg.5200989Search in Google Scholar

17. Pelaez-Luna M, Robles-Diaz G, Canizales-Quinteros S, Tusie-Luna MT. PRSS1 and SPINK1 mutations in idiopathic chronic and recurrent acute pancreatitis. World J Gastroenterol 2014; 20 (33): 11788-11792.10.3748/wjg.v20.i33.11788Search in Google Scholar

18. Midha S, Khajuria R, Shastri S, Kabra M, Garg PK. Idiopathic chronic pancreatitis in India: phenotypic characterisation and strong genetic susceptibility due to SPINK1 and CFTR gene mutations. Gut 2010; 59: 800-807.10.1136/gut.2009.191239Search in Google Scholar

19. Shimosegawa T, Kume K, Masamune A. SPINK1 gene mutations and pancreatitis in Japan. J Gastroenterol Hepatol 2006; 21 Suppl 3: S47-S51.10.1111/j.1440-1746.2006.04594.xSearch in Google Scholar

20. Cavestro M, Furlloni L, Fontana F, et al. Association of Spink-1 (N34S) and PRSS-1 (N29I and R122H) gene mutations and chronic pancreatitis in Italy. Gastroenterol 2003; 124 suppl 1: A-585.10.1016/S0016-5085(03)82961-XSearch in Google Scholar

21. Applebaum-Shapiro SE, Finch R, Pfützer RH, et al. Hereditary pancreatitis in North America: the Pittsburgh-Midwest Multi-Center Pancreatic Study Group Study. Pancreatology 2001; 1: 439-443.10.1159/00005584412120221Search in Google Scholar

22. Bernardino AL, Guarita DR, Mott CB, et al. CFTR, PRSS1 and SPINK1 mutations in the development of pancreatitis in Brazilian patients. Jop 2003; 4 (5): 169-177.Search in Google Scholar

23. Bradley EL. A clinically based classification system for acute pancreatitis. Ann Chir 1993; 47: 527-541.10.1001/archsurg.1993.014201701220198489394Search in Google Scholar

24. Masamune A, Ariga H, Kume K, et al. Genetic background is different between sentinel and recurrent acute pancreatitis. J Gastroenterol Hepatol 2011; 26 (6): 974-978.10.1111/j.1440-1746.2011.06691.x21303407Search in Google Scholar

25. Mora J, Comas L, Ripoll E, et al. Genetic mutations in a Spanish population with chronic pancreatitis. Pancreatology 2009; 9: 644–651.10.1159/00018117719657220Search in Google Scholar

26. Papachristou GI, Whitcomb D. Predictors of severity and necrosis in acute pancreatitis. Gastroenterol Clin N Am 2004; 33: 871-890.10.1016/j.gtc.2004.07.00415528023Search in Google Scholar

27. Whitcomb D, Preston RA, Aston CE. A gene for hereditary pancreatitis maps to chromosome 7q35. Gastroenterol 1996; 110: 1975-1980.10.1053/gast.1996.v110.pm89644268964426Search in Google Scholar

28. Gorry MC, Gabbaizedeh D, Furey W. Mutations in the cationic trypsinogen gene are associated with recurrent acute and chronic pancreatitis. Gastroenterology 1997; 113: 1063-1068.10.1053/gast.1997.v113.pm93224989322498Search in Google Scholar

29. Whitcomb D. Genetic predispositions to acute and chronic pancreatitis. Medical Clinics of North America 2000; 84 (3): DOI: 10.1016/S0025-7125%2805%2970238-2970238.Search in Google Scholar

30. Sahin-Toth M. Biochemical models of hereditary pancreatitis. Endocrinol Metab Clin North Am 2006; 35 (2): 303-312, ix.10.1016/j.ecl.2006.02.002160220816632094Search in Google Scholar

31. Pfutzer RH, Barmada MM, Brunskill APJ, et al. SPINK1/PSTI polymorphisms act as disease modifiers in familial and idiopathic chronic pancreatitis. Gastroenterology 2000; 119: 615-623.10.1053/gast.2000.1801710982753Search in Google Scholar

32. Chandak GR, Idris MM, Reddy DN, Bhaskar S, Sriram PV, Singh L. Mutations in the pancreatic secretory trypsin inhibitor gene (PSTI/SPINK1) rather than the cationic trypsinogen gene (PRSS1) are significantly associated with tropical calcific pancreatitis. J Med Genet 2002; 39 (5): 347-351.10.1136/jmg.39.5.347173510612011155Search in Google Scholar

33. Nishimori I, Kamakura M, Fujikawa-Adachi K, et al. Mutations in exons 2 and 3 of the cationic trypsinogen gene in Japanese families with hereditary pancreatitis. Gut 1999; 44 (2): 259-263.10.1136/gut.44.2.25917273829895387Search in Google Scholar

34. O’Reilly DA, Kingsnorth AN. Hereditary pancreatitis and mutations of the cationic trypsinogen gene. Br J Surg 2000; 87 (6): 708-717.10.1046/j.1365-2168.2000.01495.x10928807Search in Google Scholar

35. Whitcomb DC. Value of genetic testing in the management of pancreatitis. Gut 2004; 53 (11): 1710-1717.10.1136/gut.2003.015511177430215479696Search in Google Scholar

36. LaRusch J, Whitcomb DC. Genetics of pancreatitis. Curr Opin Gastroenterol 2011; 27 (5): 467-474.10.1097/MOG.0b013e328349e2f8370419221844754Search in Google Scholar

37. Chandak GR, Idris MM, Reddy DN, et al. Absence of PRSS1 mutations and association of SPINK1 trypsin inhibitor mutations in hereditary and non-hereditary chronic pancreatitis. Gut 2004; 53 (5): 723-728.10.1136/gut.2003.026526177404415082592Search in Google Scholar

38. Audrezet MP, Chen JM, Le Marechal C, et al. Determination of the relative contribution of three genes-the cystic fibrosis transmembrane conductance regulator gene, the cationic trypsinogen gene, and the pancreatic secretory trypsin inhibitor gene-to the etiology of idiopathic chronic pancreatitis. Eur J Hum Genet 2002; 10 (2): 100-106.10.1038/sj.ejhg.520078611938439Search in Google Scholar

39. Drenth JP, te Morsche R, Jansen JB. Mutations in serine protease inhibitor Kazal type 1 are strongly associated with chronic pancreatitis. Gut 2002; 50 (5): 687-692.10.1136/gut.50.5.687177322111950817Search in Google Scholar

40. Perri F, Piepoli A, Andriulli A. On the role of CFTR, PSSR1 and PST1/SPINK1 in idiopathic chronic pancreatitis. Eur J Hum Genet 2003; 11 (2): 107; author reply 108.10.1038/sj.ejhg.520094412634855Search in Google Scholar

41. Joergensen MT, Brusgaard K, Cruger DG, Gerdes AM, de Muckadell OBS. Genetic, epidemiological, and clinical aspects of hereditary pancreatitis: a population-based cohort study in Denmark. Am J Gastroenterol 2010; 105: 1876-1883.10.1038/ajg.2010.19320502448Search in Google Scholar

42. Gasiorowska A, Talar-Wojnarowska R, Czupryniak L, et al. The prevalence of cationic trypsinogen (PRSS1) and serine protease inhibitor, Kazal type 1 (SPINK1) gene mutations in Polish patients with alcoholic and idiopathic chronic pancreatitis. Dig Dis Sci 2011; 56 (3): 894-901.10.1007/s10620-010-1349-4304190320676769Search in Google Scholar

43. Masson E, Chen JM, Audrezet MP, Cooper DN, Ferec C. A conservative assessment of the major genetic causes of idiopathic chronic pancreatitis: data from a comprehensive analysis of PRSS1, SPINK1, CTRC and CFTR genes in 253 young French patients. PLoS One 2013; 8 (8): e73522.10.1371/journal.pone.0073522373852923951356Search in Google Scholar

44. Wang W, Sun XT, Weng XL, et al. Comprehensive screening for PRSS1, SPINK1, CFTR, CTRC and CLDN2 gene mutations in Chinese paediatric patients with idiopathic chronic pancreatitis: a cohort study. BMJ Open 2013; 3 (9): e003150.10.1136/bmjopen-2013-003150377363224002981Search in Google Scholar

45. Keim V, Bauer N, Teich N, Simon P, Lerch MM, Mossner J. Clinical characterization of patients with hereditary pancreatitis and mutations in the cationic trypsinogen gene. Am J Med 2001; 111 (8): 622-626.10.1016/S0002-9343(01)00958-5Search in Google Scholar

46. O’Reilly DA, Yang BM, Creighton JE, Demaine AG, Kingsnorth AN. Mutations of the cationic trypsinogen gene in hereditary and non-hereditary pancreatitis. Digestion 2001; 64: 54-60.10.1159/00004883911549837Search in Google Scholar

47. Chen JM, Mercier B, Audrezet MP, Ferec C. Mutational analysis of the human pancreatic secretory trypsin inhibitor (PSTI) gene in hereditary and sporadic chronic pancreatitis. J Med Genet 2000; 37 (1): 67-69.10.1136/jmg.37.1.67173443810691414Search in Google Scholar

48. Treiber M, Schlag C, Schmid RM. Genetics of pancreatitis: a guide for clinicians. Current Gastroenterology Reports 2008; 10: 122-127.10.1007/s11894-008-0032-918462597Search in Google Scholar

49. Wang GP, Xu CS. Pancreatic secretory trypsin inhibitor: More than a trypsin inhibitor. World J Gastrointest Pathophysiol 2010; 1 (2): 85-90.10.4291/wjgp.v1.i2.85309794721607145Search in Google Scholar

50. Ohmuraya M, Yamamura K. Roles of serine protease inhibitor Kazal type 1 (SPINK1) in pancreatic diseases. Exp Anim 2011; 60 (5): 433-444.10.1538/expanim.60.43322041280Search in Google Scholar

51. Horii A, Kobayashi T, Tomita N, et al. Primary structure of human pancreatic secretory trypsin inhibitor (PSTI) gene. Biochem. Biophys. Res. Commun 1987; 149: 635-641.Search in Google Scholar

52. Aoun E, Chang CC, Greer JB, Papachristou GI, Barmada MM, Whitcomb DC. Pathways to injury in chronic pancreatitis: decoding the role of the high-risk SPINK1 N34S haplotype using meta-analysis. PLoS One 2008; 3 (4): e2003.10.1371/journal.pone.0002003228987418414673Search in Google Scholar

53. Threadgold J, Greenhalf W, Ellis I, et al. The N34S mutation of SPINK1 (PSTI) is associated with a familial pattern of idiopathic chronic pancreatitis but does not cause the disease. Gut 2002; 50 (5): 675-681.10.1136/gut.50.5.675177319411950815Search in Google Scholar

54. Cavestro GM, Zuppardo RA, Bertolini S, et al. Connections between genetics and clinical data: role of MCP-1, CFTR, and SPINK-1 in the setting of acute, acute recurrent, and chronic pancreatitis. Am J Gastroenterol 2010; 105: 199–206.10.1038/ajg.2009.61119844201Search in Google Scholar

55. Schneider A, Larusch J, Sun X, et al. Combined bicarbonate conductance-impairing variants in CFTR and SPINK1 variants are associated with chronic pancreatitis in patients without cystic fibrosis. Gastroenterology 2010; 140 (1): 162-171.10.1053/j.gastro.2010.10.045317169020977904Search in Google Scholar

56. Hirota M, Kuwata K, Ohmuraya M, Ogawa M. From acute to chronic pancreatitis: the role of mutations in the pancreatic secretory trypsin inhibitor gene. Jop 2003; 4 (2): 83-88.Search in Google Scholar

57. Ockenga J, Dork T, Stuhrmann M. Low prevalence of SPINK1 gene mutations in adult patients with chronic idiopathic pancreatitis. J Med Genet 2001; 38 (4): 243-244.10.1136/jmg.38.4.243173485711368029Search in Google Scholar

58. Diaconu BL, Ciobanu L, Mocan T, et al. Investigation of the SPINK1 N34S mutation in Romanian patients with alcoholic chronic pancreatitis. A clinical analysis based on the criteria of the M-ANNHEIM classification. J Gastrointestin Liver Dis 2009; 18 (2): 143-150.Search in Google Scholar

59. Witt H. The SPINK in chronic pancreatitis: similar finds, different minds. Gut 2002; 50: 590-591.10.1136/gut.50.5.590177320111950799Search in Google Scholar

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