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PMID: 7677176 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Smooth muscle cells of the coronary arterial tunica media express tumor necrosis factor-alpha and proliferate during acute rejection of rabbit cardiac allografts.

The American journal of pathology ·Vol. 147 ·No. 3 ·1995-09-00 ·Pages 617-26

Tanaka H, Swanson SJ, Sukhova G, Schoen FJ, Libby P

Abstract

Graft coronary arteriosclerosis (GCA) frequently limits the long-term success of cardiac transplantation. The pathogenic mechanisms of and stimuli that provoke GCA remain uncertain. Whatever the initiating factors, deranged control of smooth muscle cells (SMC) proliferation likely contributes to the intimal hyperplasia that produces obstructive lesions. To identify mediators that may contribute to ongoing modulation of SMC functions during acute rejection and to explore the mechanisms of the pathogenesis of graft coronary arteriosclerosis, we studied the kinetics of proliferation and the expression of tumor necrosis factor-alpha (TNF-alpha), a proinflammatory and SMC growth-promoting cytokine, in coronary arterial SMCs in rabbit hearts transplanted heterotopically without immunosuppression. Hearts were harvested at 2 (n = 5), 5 (n = 5), and 8.2 +/- 0.4 (mean +/- SD, n = 5) days after transplantation, just before graft failure as judged clinically. SMC proliferation was assessed by continuous bromodeoxyuridine labeling (BrdU 10 mg/kg/d. s.q.). Whole heart cross sections were stained immunohistochemically with monoclonal antibodies that recognize TNF-alpha, BrdU, and SMCs (muscle alpha-actin). Major epicardial coronary arteries (five to nine profiles in each animal) were evaluated. Histological rejection grades by the International Society for Heart and Lung Transplantation scale at 2, 5, and 10 days were 1.6 +/- 0.9, 2.8 +/- 1.1, and 4.0 +/- 0.0, respectively. Medial SMCs in normal hearts and 2 days after transplant expressed little or no TNF-alpha and displayed negligible BrdU incorporation. At 5 days after transplantation, some medial SMCs stained for TNF-alpha and had a low BrdU labeling index (0.5 +/- 0.8%). At 8.2 days after transplant, almost all medial SMCs expressed TNF-alpha intensely and had a high labeling index (29.8 +/- 8.0%). These results demonstrate that acute rejection activates medial SMCs in coronary arteries to express TNF-alpha and that SMC-derived TNF-alpha may contribute to medial SMC proliferation in coronary arteries during acute rejection. This finding of early medial SMC replication suggests a novel and heretofore unsuspected mechanism of intimal expansion consequent to the allogeneic state. These results furnish additional insight into the possible mechanisms that link acute rejection with graft coronary arteriosclerosis. Furthermore, the close association of TNF-alpha expression with SMC replication provides not only a novel marker of SMC activation but also a potential new therapeutic target for the prevention of graft coronary disease.

MeSH Terms
Animals Arteries/cytology,metabolism Cell Division Coronary Vessels/cytology,metabolism Graft Rejection Heart Transplantation Muscle, Smooth, Vascular/cytology,metabolism Rabbits Time Factors Tumor Necrosis Factor-alpha/metabolism Tunica Media/cytology,metabolism
Chemicals
Tumor Necrosis Factor-alpha
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Tanaka H
Department of Thoracic and Cardiovascular Surgery, Tokyo Medical and Dental University, Japan.
Swanson S J
Sukhova G
Schoen F J
Libby P
References (37)
37 references, click to expand
  1. Cytokines and endothelial cell biology.
    Physiol Rev. 1990 Apr;70(2):427-51 PMID: 1690903
  2. Opposite effects of monokines (interleukin-1 and tumor necrosis factor) on proliferation and heparin-binding (fibroblast) growth factor binding to human aortic endothelial and smooth muscle cells.
    In Vitro Cell Dev Biol. 1990 Feb;26(2):213-6 PMID: 2312505
  3. A working formulation for the standardization of nomenclature in the diagnosis of heart and lung rejection: Heart Rejection Study Group. The International Society for Heart Transplantation.
    J Heart Transplant. 1990 Nov-Dec;9(6):587-93 PMID: 2277293
  4. Hypercholesterolemia in long-term survivors of heart transplantation: an early marker of accelerated coronary artery disease.
    J Heart Lung Transplant. 1991 Jan-Feb;10(1 Pt 1):45-9 PMID: 2007170
  5. Tumor necrosis factor increases transcription of the heparin-binding epidermal growth factor-like growth factor gene in vascular endothelial cells.
    J Biol Chem. 1992 May 15;267(14):9467-9 PMID: 1577791
  6. Interferon-beta. A potential autocrine regulator of human vascular smooth muscle cell growth.
    Lab Invest. 1992 Jun;66(6):715-21 PMID: 1602741
  7. Anti-endothelial antibodies and coronary artery disease after cardiac transplantation.
    Lancet. 1992 Jun 27;339(8809):1566-70 PMID: 1351550
  8. Transplant coronary artery disease.
    J Heart Lung Transplant. 1992 May-Jun;11(3 Pt 2):S1-4 PMID: 1622987
  9. Graft atherosclerosis: effects of cellular rejection and human lymphocyte antigen.
    J Heart Lung Transplant. 1992 May-Jun;11(3 Pt 2):S104-10 PMID: 1622988
  10. Relation of HLA antibodies and graft atherosclerosis in human cardiac allograft recipients.
    J Heart Lung Transplant. 1992 May-Jun;11(3 Pt 2):S120-3 PMID: 1622990
  11. In situ expression of tumor necrosis factor-alpha, interferon-gamma, and interleukin-2 receptors in renal allograft biopsies.
    Transplantation. 1992 Dec;54(6):1017-24 PMID: 1281560
  12. Lipoprotein(a) and accelerated coronary artery disease in cardiac transplant recipients.
    Lancet. 1992 Dec 19-26;340(8834-8835):1500-2 PMID: 1361597
  13. Lack of association between endomyocardial evidence of rejection in the first six months and the later development of transplant-related coronary artery disease.
    J Heart Lung Transplant. 1993 Jan-Feb;12(1 Pt 1):110-6 PMID: 8443188
  14. Influence of graft rejection on incidence of accelerated graft coronary artery disease: a new approach to analysis.
    J Heart Lung Transplant. 1993 Nov-Dec;12(6 Pt 1):1029-35 PMID: 8312304
  15. Interaction of the allogeneic state and hypercholesterolemia in arterial lesion formation in experimental cardiac allografts.
    Arterioscler Thromb. 1994 May;14(5):734-45 PMID: 8172851
  16. Endothelial and smooth muscle cells express leukocyte adhesion molecules heterogeneously during acute rejection of rabbit cardiac allografts.
    Am J Pathol. 1994 May;144(5):938-51 PMID: 7513950
  17. In vivo blockade of tumor necrosis factor-alpha in cholesterol-fed rabbits after cardiac transplant inhibits acute coronary artery neointimal formation.
    Circulation. 1994 Jun;89(6):2768-79 PMID: 8205691
  18. Acute rejection accelerates graft coronary disease in transplanted rabbit hearts.
    Circulation. 1995 Aug 15;92(4):987-93 PMID: 7641383
  19. Human coronary transplantation-associated arteriosclerosis. Evidence for a chronic immune reaction to activated graft endothelial cells.
    Am J Pathol. 1991 Apr;138(4):791-8 PMID: 2012171
  20. Ischemic injury before heart transplantation does not cause coronary arteriopathy in experimental isografts.
    J Heart Lung Transplant. 1991 Jul-Aug;10(4):597-9 PMID: 1911804
  21. Current concepts in cell-mediated hepatic allograft rejection leading to ductopenia and liver failure.
    Hepatology. 1991 Oct;14(4 Pt 1):721-9 PMID: 1916676
  22. The vascular endothelial cell antigen system.
    Transplantation. 1985 Mar;39(3):286-9 PMID: 3919480
  23. Studies on the pathogenesis of atheroarteriosclerosis induced in rabbit cardiac allografts by the synergy of graft rejection and hypercholesterolemia.
    Am J Pathol. 1977 May;87(2):415-42 PMID: 322508
  24. Cardiac allograft vasculopathy: current concepts, recent developments, and future directions.
    J Heart Lung Transplant. 1992 Jan-Feb;11(1 Pt 1):9-23 PMID: 1540617
  25. Fibroblast growth enhancing activity of tumor necrosis factor and its relationship to other polypeptide growth factors.
    J Exp Med. 1986 Mar 1;163(3):632-43 PMID: 3512757
  26. Tumor necrosis factor/cachectin interacts with endothelial cell receptors to induce release of interleukin 1.
    J Exp Med. 1986 Jun 1;163(6):1363-75 PMID: 3011946
  27. Recombinant tumor necrosis factor induces procoagulant activity in cultured human vascular endothelium: characterization and comparison with the actions of interleukin 1.
    Proc Natl Acad Sci U S A. 1986 Jun;83(12):4533-7 PMID: 3487091
  28. Endotoxin and tumor necrosis factor induce interleukin-1 gene expression in adult human vascular endothelial cells.
    Am J Pathol. 1986 Aug;124(2):179-85 PMID: 3526909
  29. Tumor necrosis factor-mediated release of platelet-derived growth factor from cultured endothelial cells.
    J Exp Med. 1987 Jul 1;166(1):235-45 PMID: 3598461
  30. Cardiac transplant atherosclerosis.
    Transplant Proc. 1987 Aug;19(4 Suppl 5):19-25 PMID: 3303565
  31. Development of coronary artery disease in cardiac transplant patients receiving immunosuppressive therapy with cyclosporine and prednisone.
    Circulation. 1987 Oct;76(4):827-34 PMID: 3308166
  32. Human vascular smooth muscle cells. Target for and source of tumor necrosis factor.
    J Immunol. 1989 Jan 1;142(1):100-9 PMID: 2783319
  33. Functions of vascular wall cells related to development of transplantation-associated coronary arteriosclerosis.
    Transplant Proc. 1989 Aug;21(4):3677-84 PMID: 2669279
  34. Comparative analysis of cytokine induction in human vascular endothelial and smooth muscle cells.
    Lymphokine Res. 1989 Fall;8(3):293-9 PMID: 2789322
  35. Regulation of smooth muscle cell growth in injured artery.
    J Cardiovasc Pharmacol. 1989;14 Suppl 6:S12-15 PMID: 2478818
  36. Detection and localization of tumor necrosis factor in human atheroma.
    Am J Cardiol. 1990 Feb 1;65(5):297-302 PMID: 2405620
  37. Time course of smooth muscle cell proliferation in the intima and media of arteries following experimental angioplasty.
    Circ Res. 1990 Sep;67(3):651-9 PMID: 1697794
Article Info
Journal
The American journal of pathology
Abbr.
Am J Pathol
ISSN
0002-9440
Published
1995-09-00
Pages
617-26
Language
English
Region
United States
NLM ID
0370502
PMCID
PMC1870969
Subset
IM
Grants
NHLBI NIH HHS · HL-43364 · United States
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