Home LiteratureArticle Details
PMID: 9286248 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Tissue-specific cytokine production during experimental acute pancreatitis. A probable mechanism for distant organ dysfunction.

Digestive diseases and sciences ·Vol. 42 ·No. 8 ·1997-08-00 ·Pages 1783-8

Norman JG, Fink GW, Denham W, Yang J, Carter G, Sexton C, Falkner J, Gower WR, Franz MG

Abstract

Our purpose was to determine if cytokines are produced systemically during acute pancreatitis. Proinflammatory cytokines are elevated during acute pancreatitis and have been implicated in the progression of pancreatitis-associated multiple organ dysfunction. Whether these mediators are produced within all tissues or very few specific organs is not known. Edematous pancreatitis was induced in adult male mice by IP injection of cerulein. Necrotizing pancreatitis was induced in young female mice by feeding a choline-deficient, ethionine supplemented diet. Animals were sacrificed as pancreatitis worsened, with multiple organs prepared for tissue mRNA and protein analysis by RT-PCR and immunoblotting. Pancreatitis severity was established by histologic grading and serum amylase and lipase. There was no cytokine mRNA or protein detectable prior to the induction of pancreatitis. Tumor necrosis factor-alpha (TNF-alpha) and interleukin-1-beta (IL-1 beta) mRNA and protein were detected within the pancreas early in the course of pancreatitis in both models, coinciding with the development of hyperamylasemia (both P < 0.001). Interleukin-6 was produced in the pancreas after pancreatitis was more fully developed (P < 0.001). IL-1 beta and TNF-alpha were subsequently produced in large amounts in lung, liver, and spleen but never within kidney, cardiac muscle, or skeletal muscle. A significant delay between pancreatic and distant organ cytokine production was always observed. It is concluded that proinflammatory cytokines are produced within the pancreas and within organs known to develop dysfunction during severe pancreatitis. Cytokine production is tissue specific, correlates with disease severity, and occurs within the pancreas first and subsequently within distant organs.

MeSH Terms
Actins/biosynthesis Acute Disease Animals Cytokines/biosynthesis Female Interleukin-1/biosynthesis Interleukin-6/biosynthesis Liver/metabolism Lung/metabolism Male Mice Mice, Inbred Strains Pancreas/metabolism Pancreatitis/metabolism,physiopathology Pancreatitis, Acute Necrotizing/metabolism,physiopathology Spleen/metabolism Tumor Necrosis Factor-alpha/biosynthesis
Chemicals
Actins Cytokines Interleukin-1 Interleukin-6 Tumor Necrosis Factor-alpha
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Norman J G
Department of Surgery, University of South Florida, Tampa 33612, USA.
Fink G W
Denham W
Yang J
Carter G
Sexton C
Falkner J
Gower W R
Franz M G
References (26)
26 references, click to expand
  1. Interleukin-1 receptor antagonist decreases severity of experimental acute pancreatitis.
    Surgery. 1995 Jun;117(6):648-55 PMID: 7539942
  2. Role of interleukin-6 in mediating the acute phase protein response and potential as an early means of severity assessment in acute pancreatitis.
    Gut. 1993 Jan;34(1):41-5 PMID: 7679365
  3. Acute pancreatitis induces intrapancreatic tumor necrosis factor gene expression.
    Arch Surg. 1995 Sep;130(9):966-70 PMID: 7661681
  4. Structure and function of L-selectin.
    APMIS. 1992 Apr;100(4):287-93 PMID: 1374617
  5. Induction of acute pancreatitis in germ-free rats: evidence of a primary role for tumor necrosis factor-alpha.
    Surgery. 1995 Feb;117(2):201-5 PMID: 7846626
  6. Serum cytokine levels in human septic shock. Relation to multiple-system organ failure and mortality.
    Chest. 1993 Feb;103(2):565-75 PMID: 8432155
  7. Acute pancreatitis: analysis of factors influencing survival.
    Ann Surg. 1977 Jan;185(1):43-51 PMID: 831635
  8. A prospective study of acute pancreatitis.
    Br J Surg. 1975 Jun;62(6):490-4 PMID: 1080065
  9. Anti-TNFalpha therapy improves survival and ameliorates the pathophysiologic sequelae in acute pancreatitis in the rat.
    Am J Surg. 1996 Feb;171(2):274-80 PMID: 8619467
  10. Acute pancreatitis.
    N Engl J Med. 1994 Apr 28;330(17):1198-210 PMID: 7811319
  11. Intrapancreatic interleukin-1beta gene expression by specific leukocyte populations during acute pancreatitis.
    J Surg Res. 1996 Jun;63(1):369-73 PMID: 8661228
  12. Inflammatory mediators and cytokines--new aspects of the pathophysiology and assessment of severity of acute pancreatitis?
    Hepatogastroenterology. 1993 Dec;40(6):522-30 PMID: 7509768
  13. Death due to acute pancreatitis. A retrospective analysis of 405 autopsy cases.
    Dig Dis Sci. 1985 Oct;30(10):1005-18 PMID: 3896700
  14. Active interleukin-1 receptor required for maximal progression of acute pancreatitis.
    Ann Surg. 1996 Feb;223(2):163-9 PMID: 8597510
  15. Induction of tumor necrosis factor in severe acute pancreatitis and its subsequent reduction after hepatic passage.
    Surgery. 1994 Feb;115(2):213-21 PMID: 8310410
  16. Decreased mortality of severe acute pancreatitis after proximal cytokine blockade.
    Ann Surg. 1995 Jun;221(6):625-31; discussion 631-4 PMID: 7794067
  17. Amelioration of the physiologic and biochemical changes of acute pancreatitis using an anti-TNF-alpha polyclonal antibody.
    Am J Surg. 1994 Jan;167(1):214-8; discussion 218-9 PMID: 8311136
  18. Timing of tumor necrosis factor antagonism is critical in determining outcome in murine lethal acute pancreatitis.
    Surgery. 1996 Sep;120(3):515-21 PMID: 8784406
  19. Interleukin-1 receptor antagonist modifies the changes in vital organs induced by acute necrotizing pancreatitis in a rat experimental model.
    Crit Care Med. 1995 May;23(5):901-8 PMID: 7736749
  20. The natural history of the systemic inflammatory response syndrome (SIRS). A prospective study.
    JAMA. 1995 Jan 11;273(2):117-23 PMID: 7799491
  21. Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction.
    Anal Biochem. 1987 Apr;162(1):156-9 PMID: 2440339
  22. Interleukin 10 prevents necrosis in murine experimental acute pancreatitis.
    Gastroenterology. 1995 Jun;108(6):1917-22 PMID: 7539389
  23. Tumor necrosis factor causes increased pulmonary permeability and edema. Comparison to septic acute lung injury.
    Am Rev Respir Dis. 1988 Jun;137(6):1364-70 PMID: 3059859
  24. Tumor necrosis factor-alpha induces the expression of carbonic anhydrase II in pancreatic adenocarcinoma cells.
    Biochem Biophys Res Commun. 1994 Dec 30;205(3):1815-21 PMID: 7529022
  25. Cerulein-induced acute pancreatitis in the rat. Study of pancreatic secretion and plasma VIP and secretin levels.
    Dig Dis Sci. 1992 Mar;37(3):364-8 PMID: 1370934
  26. CD18 adhesion receptors, tumor necrosis factor, and neutropenia during septic lung injury.
    J Surg Res. 1991 Apr;50(4):323-9 PMID: 1673483
Article Info
Journal
Digestive diseases and sciences
Abbr.
Dig Dis Sci
ISSN
0163-2116
Published
1997-08-00
Pages
1783-8
Language
English
Region
United States
NLM ID
7902782
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: [email protected]