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Research Article

Evaluation of miR-216a and miR-217 as potential biomarkers of acute pancreatic injury in rats and mice

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Pages 517-529 | Received 01 Jul 2014, Accepted 09 Jul 2014, Published online: 25 Jul 2014

References

  • Amodio A, Manfredi R, Katsotourchi AM, et al. (2012). Prospective evaluation of subjects with chronic asymptomatic pancreatic hyperenzymemia. Am J Gastroenterol 107:1089–95
  • Baskerville S, Bartel DP. (2005). Microarray profiling of microRNAs reveals frequent coexpression with neighboring miRNAs and host genes. RNA 11:241–7
  • Boland CL, Degeeter M, Nuzum DS, Tzefos M. (2013). Evaluating second-line treatment options for type 2 diabetes: focus on secondary effects of GLP-1 agonists and DPP-4 inhibitors. Ann Pharmacother 47:490–505
  • Brackett KA, Crocket A, Joffe SN. (1983). Ultrastructure of early development of acute pancreatitis in the rat. Dig Dis Sci 28:74–84
  • Bushati N, Cohen SM. (2007). microRNA functions. Annu Rev Cell Dev Biol 23:175–205
  • Chan YC, Leung PS. (2007). Acute pancreatitis: animal models and recent advances in basic research. Pancreas 34:1–14
  • Clavien PA, Robert J, Meyer P, et al. (1989). Acute pancreatitis and normoamylasemia. Not an uncommon combination. Ann Surg 210:614–20
  • Dawra RK, Saluja AK. (2012). l-arginine-induced experimental acute pancreatitis. Pancreapedia: Exocrine Pancreas Knowledge Base, DOI: 10.3998/panc.2012.6
  • d'Emden MC, Wong L, Harris OD. (1984). Serum amylase, isoamylase and lipase in acute alcoholism. Aust N Z J Med 14:819–21
  • Denker PS, Dimarco PE. (2006). Exenatide (exendin-4)-induced pancreatitis: a case report. Diabetes Care 29:471
  • Dylewski ML, Prelack K, Keaney T, Sheridan RL. (2010). Asymptomatic hyperamylasemia and hyperlipasemia in pediatric patients with toxic epidermal necrolysis. J Burn Care Res 31:292–6
  • Endo K, Weng H, Kito N, et al. (2013). MiR-216a and miR-216b as markers for acute phased pancreatic injury. Biomed Res 34:179–88
  • Fabian MR, Sonenberg N, Filipowicz W. (2010). Regulation of mRNA translation and stability by microRNAs. Annu Rev Biochem 79:351–79
  • Gaisano HY, Gorelick FS. (2009). New insights into the mechanisms of pancreatitis. Gastroenterology 136:2040–4
  • Hermann RE, Davis JH. (1960). The role of incomplete pancreatic duct obstruction in the etiology of pancreatitis. Surg Forum 10:230–2
  • Hindson CM, Chevillet JR, Briggs HA, et al. (2013). Absolute quantification by droplet digital PCR versus analog real-time PCR. Nat Meth 10:1003–5
  • Iyer SN, Drake AJ III, West RL, et al. (2012). Case report of acute necrotizing pancreatitis associated with combination treatment of sitagliptin and exenatide. Endocr Pract 18:e10–13
  • Ji X, Takahashi R, Hiura Y, et al. (2009). Plasma miR-208 as a biomarker of myocardial injury. Clin Chem 55:1944–9
  • Kolars J, Ellis C, Levitt M. (1984). Comparison of serum amylase pancreatic isoamylase and lipase in patients with hyperamylasemia. Dig Dis Sci 29:289–93
  • Kong XY, Du YQ, Li L, et al. (2010). Plasma miR-216a as a potential marker of pancreatic injury in a rat model of acute pancreatitis. World J Gastroenterol 16:4599–604
  • Laterza OF, Lim L, Garrett-Engele PW, et al. (2009). Plasma microRNAs as sensitive and specific biomarkers of tissue injury. Clin Chem 55:1977–83
  • Liang Y, Ridzon D, Wong L, Chen C. (2007). Characterization of microRNA expression profiles in normal human tissues. BMC Genomics 8:166
  • Matull W, Pereira S, O'Donohue J. (2006). Biochemical markers of acute pancreatitis. J Clin Pathol 59:340–4
  • Neoptolemos JP, Rararty M, Finch M. (1998). Acute pancreatitis: the substantial human and financial costs. Gut 42:886–91
  • Orebaugh S. (1994). Normal amylase levels in the presentation of acute pancreatitis. Am J Emerg Med 12:21–4
  • Rouse R, Rosenzweig BA, Thompson KL. (2014). Circulating microRNAs as biomarkers of drug-induced pancreatitis. In: Sahu S, ed. microRNAs in toxicology and medicine. New York: John Wiley & Sons Ltd, 425–36
  • Shen J, Wan R, Hu G, et al. (2012). Involvement of thrombopoietin in acinar cell necrosis in l-arginine-induced acute pancreatitis in mice. Cytokine 60:294–301
  • Singh S, Chang HY, Richards TM, et al. (2013). Glucagonlike peptide 1-based therapies and risk of hospitalization for acute pancreatitis in type 2 diabetes mellitus: a population-based matched case-control study. JAMA Intern Med 25:1–6
  • Smotkin J, Tenner S. (2002). Laboratory diagnostic tests in acute pancreatitis. J Clin Gastroenterol 34:459–62
  • Starkey Lewis PJ, Dear J, Platt V, et al. (2011). Circulating microRNAs as potential markers of human drug-induced liver injury. Hepatology 54:1767–76
  • Su KH, Cuthbertson C, Christophi C. (2006). Review of experimental animal models of acute pancreatitis. HPB (Oxford) 8:264–86
  • Szafranska AE, Davison TS, John J, et al. (2007). MicroRNA expression alterations are linked to tumorigenesis and non-neoplastic processes in pancreatic ductal adenocarcinoma. Oncogene 26:4442–52
  • Tani S, Itoh H, Okabayashi Y, et al. (1990). New model of acute necrotizing pancreatitis induced by excessive doses of arginine in rats. Dig Dis Sci 35:367–74
  • Tenner S. (2010). Drug-induced acute pancretitis: underdiagnosis and overdiagnosis. Dig Dis Sci 55:2706–08
  • Toskes PP. (1990). Hyperlipidemic pancreatitis. Gastroenterol Clin North Am 19:783–91
  • Treacy J, Williams A, Bais R, et al. (2008). Evaluation of amylase and lipase in the diagnosis of acute pancreatitis. ANZ J Surg 71:577–82
  • Trivedi C, Pitchumoni C. (2005). Drug-induced pancreatitis: an update. J Clin Gastroenterol 39:709–16
  • Usborne AL, Smith AT, Engle SK, et al. (2014). Biomarkers of exocrine pancreatic injury in 2 rat acute pancreatitis models. Toxicol Pathol 42:195–203
  • Vissers R, Abu-Laban R, McHugh D. (1999). Amylase and lipase in the emergency department evaluation of acute pancreatitis. J Emerg Med 17:1027–37
  • Wang K, Zhang S, Marzolf B, et al. (2009). Circulating microRNAs, potential biomarkers for drug-induced liver injury. Proc Natl Acad Sci USA 106:4402–7
  • Watanabe O, Baccino FM, Steer ML, Meldolesi J. (1984). Supramaximal caerulein stimulation and ultrastructure of rat pancreatic acinar cell: early morphological changes during development of experimental pancreatitis. Am J Physiol 246:G457–67
  • Weber JA, Baxter DH, Zhang S, et al. (2010). The microRNA spectrum in 12 body fluids. Clin Chem 56:1733–41
  • Yoshinaga K, Washizuka M, Segawa Y. (2000). Fasting exacerbates acute pancreatitis by occlusion of the common bile duct in rats. Jpn J Pharmacol 84:455–61
  • Zhang J, Rouse R. (2014). Histopathology and pathogenesis of caerulein-, duct ligation-, and arginine-induced acute pancreatitis in Sprague-Dawley rats and C57BL6 mice. Histol Histopathol 29:1135–52

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