Thorac Cardiovasc Surg 2006; 54(6): 388-392
DOI: 10.1055/s-2006-924410
Basic Science

© Georg Thieme Verlag KG Stuttgart · New York

Inhibition of Carotis Venous Bypass Graft Disease by Intraoperative Nucleic Acid-Based Therapy in Rabbits

B. Kusch1 , S. Waldhans1 , A. Sattler2 , A. Wagner3 , M. Hecker3 , R. Moosdorf1 , S. Vogt1
  • 1Clinic for Cardiac Surgery, University Hospital Gießen and Marburg, Position Marburg, Marburg, Germany
  • 2Clinic for Cardiology, University Hospital Gießen and Marburg, Position Marburg, Marburg, Germany
  • 3Department of Physiology and Pathophysiology, University of Heidelberg, Heidelberg, Germany
Further Information

Publication History

Received January 18, 2006

Publication Date:
07 September 2006 (online)

Abstract

Background: Bypass graft stenosis after venous revascularisation procedures is characterised by massive neointimal and vascular smooth muscle cell proliferation triggered via endothelin-1 synthesis in the vessel wall. Decoy oligodesoxynucleotides (ODN) against the transcription factor activator protein-1 (AP-1) inhibits pre-pro-endothelin-1 expression. Methods: In 20 rabbits, an end-to-side jugular vein bypass to the carotid artery was performed: (group A) 8 grafts were treated with consensus AP-1 decoy ODN, (group B) 8 with mutated control ODN and (group C) 4 received no treatment. Explantation, histomorphometric and immunohistochemical evaluation was performed after 28 days. Results: Median intimal thickness of groups: (A) 28.3 µm, (B) 48.4 µm, (C) 71.1 µm. The decoy ODN-treated group showed a significant reduction of neointima formation (p = 0.029) and a downregulation of the endothelin receptor. Conclusions: In this model, neointima formation was reduced by local transfection with consensus decoy ODN against AP-1. Endothelin A and B receptor expression is downregulated. Molecular target nucleic acid-based therapies seem to be a future means of overcoming neointima proliferation in pressure-induced venous graft failure. Intraoperative local application makes it easy to use in routine revascularisation procedures.

References

  • 1 Sabik I IIJF, Lytle B W, Blackstone E H. et al . Comparison of saphenous vein and internal thoracic artery graft patency by coronary system.  Ann Thorac Surg. 2005;  79 544-551
  • 2 Lauth M, Cattaruzza M, Hecker M. ACE Inhibitor and AT1 antagonist blockade of deformation-induced gene expression in the rabbit jugular vein through B2 receptor activation.  Arterioscler Thromb Vasc Biol. 2001;  21 61-66
  • 3 Verma S, Badiwala M V, Weisel R D. et al . C-reactive protein activates the nuclear factor κB signal transduction pathway in saphenous vein endothelial cells: implications for atherosclerosis and restenosis.  J Thorac Cardiovasc Surg. 2003;  126 1886-1891
  • 4 Lauth M, Wagner A H, Cattaruzza M. et al . Transcriptional control of deformation-induced preproendothelin-1 gene expression in endothelial cells.  J Mol Med. 2000;  78 441-450
  • 5 Lauth M, Berger M M, Cattaruzza M, Hecker M. Pressure-induced upregulation of preproendothelin-1 and endothelin B receptor expression in the rabbit jugular vein in situ: implication for vein graft failure?.  Arterioscler Throm Vasc Biol. 2000;  20 96-103
  • 6 Buchwald A B, Wagner A H, Webel C, Hecker M. Decoy oligodesoxynucleotide against activator protein-1 reduces neointimal proliferation after coronary angioplasty in hypercholesterolemic minipigs.  J Am Coll Cardiol. 2002;  39 732-738
  • 7 Troitzsch D, Vogt S, Peukert A. Study of long-term anesthesia in rabbits.  Tierarzt Prax. 1996;  24 519-521
  • 8 Wülfing P, Diallo R, Kersting C. et al . Expression of endothelin-1, endothelin-A, and endothelin-B Receptor in human breast cancer and correlation with long-term follow-up.  Clin Canc Res. 2003;  9 4125-4131
  • 9 Davies P F. Flow-mediated endothelial mechanotransduction.  Physiol Rev. 1995;  75 519-560
  • 10 Busse R, Fleming I. Pulsatile stretch and shear stress: physical stimuli determining the production of endothelium-derived relaxing factors.  J Vasc Res. 1998;  35 73-84
  • 11 Traub O, Berk B C. Laminar shear stress - mechanisms by which endothelial cells transduce an atheroprotective force.  Arterioscler Thromb Vasc Biol. 1998;  18 677-685
  • 12 Rössig L, Dimmeler S, Zeiher A M. Apoptosis in the vascular wall and atherosclerosis.  Basic Res Cardiol. 2001;  96 11-22
  • 13 Mann M J, Whittemore A D, Donaldson M C. et al . Ex vivo gene therapy of human vascular bypass grafts with E2F decoy: the PREVENT single-centre, randomised, controlled trial.  Lancet. 1999;  354 1493-1498
  • 14 Alexander J H, Ferguson T B, Joseph D M. et al . The project of ex vivo vein graft engineering via transfection IV (PREVENT IV) trial: study rationale, design, and baseline patient characteristics.  Am Heart J. 2005;  150 643-649
  • 15 Shintani T, Sawa Y, Takahashi T. et al . Intraoperative transfection of vein grafts with the NFκB decoy in a canine aortocoronary bypass model: a strategy to attenuate intimal hyperplasia.  Ann Thorac Surg. 2002;  74 1132-1138
  • 16 White S J, Newby A C. Gene therapy for all aspects of vein-graft disease.  J Card Surg. 2002;  17 549-555
  • 17 O'Blenes S B, Zaidi S H, Cheah A Y. et al . Gene transfer of the serine elastase inhibitor elafin protects agianst vein graft degeneration.  Circul. 2000;  102 (Suppl III) III289-III295
  • 18 Quax P H, Lamfers M L, Lardenoye J W. et al . Adenoviral expression of a urokinase receptor-targeted protease inhibitor inhibits neointima formation in murine and human blood vessels.  Circul. 2000;  103 562-569
  • 19 Hirko M K, McShannic J R, Schmidt S P. et al . Pharmacologic modulation of intimal hyperplasia in canine vein interposition grafts.  J Vasc Surg. 1993;  17 877-887
  • 20 Schödon B, Blau N, Schneemann M. et al . Nitric oxide production depends on preceding tetrahydrobiopterin synthesis by endothelial cells: selective suppression of induced nitric oxide production by sepiapterin reductase inhibitors.  Biochem Biophys Res Commun. 1994;  199 504-510
  • 21 Welt F G, Woods T C, Edelman E R. Oral heparin prevents neointimal hyperplasia after arterial injury.  Circul. 2001;  104 3121-3124

Prof. Sebastian Vogt

University Hospital Gießen and Marburg
Position Marburg
Cardiac Surgery

Baldingerstraße

35043 Marburg

Germany

Phone: + 49 6 42 12 86 62 23

Fax: + 49 6 42 12 86 89 52

Email: vogts@mailer.uni-marburg.de

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