The effect of different types of storage solutions on saphenous vein endothelial integrity in diabetic patients undergoing coronary artery bypass grafting

  • Aleksandar Kamenov University Clinical Center Niš, Cardiac Surgery Clinic, Niš, Serbia
  • Vladimir Stojiljković University Clinical Center Niš, Cardiac Surgery Clinic, Niš, Serbia
  • Aleksandar Petrović University of Niš, Faculty of Medicine, Department of Histology and Embryology, Niš, Serbia
  • Milan Lazarević University Clinical Center Niš, Cardiac Surgery Clinic, Niš, Serbia
  • Mladjan Golubović University Clinical Center Niš, Cardiac Surgery Clinic, Niš, Serbia
  • Velimir Perić University Clinical Center Niš, Cardiac Surgery Clinic, Niš, Serbia
  • Marija Stošić University Clinical Center Niš, Cardiac Surgery Clinic, Niš, Serbia
  • Goran Radenković University of Niš, Faculty of Medicine, Department of Histology and Embryology, Niš, Serbia
  • Ivan Nikolić University of Niš, Faculty of Medicine, Department of Histology and Embryology, Niš, Serbia
  • Vladimir Petrović University of Niš, Faculty of Medicine, Department of Histology and Embryology, Niš, Serbia
  • Saša Živić University Clinical Center Niš, Cardiac Surgery Clinic, Niš, Serbia
  • Dragan Milić University Clinical Center Niš, Cardiac Surgery Clinic, Niš, Serbia
Keywords: coronary artery bypass, diabetes mellitus, type 2, histological techniques, organ preservation solutions, saphenous vein, transplants

Abstract


Background/Aim. Taking into consideration the justified popularity of total arterial revascularization, the saphenous vein graft (SVG) is still one of the most utilized conduits in coronary artery bypass grafting (CABG). One of the determining factors of this conduit’s durability is its endothelial integrity at the time of surgery. The aim of the study was to investigate the effect of different storage solutions on SVG endothelial integrity in patients with diabetes mellitus (DM) type 2 (T2DM) and non-T2DM patients undergoing CABG. The solutions under evaluation were heparinized saline solution (0.9% NaCl), heparinized autologous whole blood, Bretschneider (histidine-tryptophan-ketoglutarate – HTK) solution, and fresh frozen plasma (FFP) solution. Methods. Forty patients were included in this study and were divided into two groups: group A with 23 T2DM patients and group B with 17 non-T2DM patients. The effects of these solutions were examined by immunohistochemical staining with anti-CD34 antibodies and morphometric comparison in histologic samples of T2DM patients undergoing CABG between July 2021 and September 2022 with samples provided by non-T2DM patients. Results. In this study, the FFP solution showed the most prominent positive effect on the preservation of SVG endothelial integrity, with an average cell integrity preservation of 92.2%. HTK solution was found to be the least effective, with an endothelial cell preservation integrity of 26.77%. There was no marked statistically significant difference in results from groups A and B. There was a noticeable contrast in preserving SVG endothelial integrity between the two patient groups, T2DM and non-T2DM patients, although it was not statistically significant. Conclusion. The storage solution with the most beneficial effect on SVG endothelial integrity preservation was the FFP solution when harvested via the conventional open method in CABG.

References

Barquera S, Pedroza-Tobías A, Medina C, Hernández-Barrera L, Bibbins-Domingo K, Lozano R, et al. Global Overview of the Epidemiology of Atherosclerotic Cardiovascular Disease. Arch Med Res 2015; 46(5): 328–38.

Ruttmann E, Fischler N, Sakic A, Chevtchik O, Alber H, Schistek R, et al. Second Internal Thoracic Artery Versus Radial Artery in Coronary Artery Bypass Grafting: a long-term, propensity score-matched follow-up study. Circulation 2011; 124(12): 1321–9.

Melly L, Torregrossa G, Lee T, Jansens JL, Puskas JD. Fifty years of coronary artery bypass grafting. J Thorac Dis 2018; 10(3): 1960–7.

Goldman S, Zadina K, Moritz T, Ovitt T, Sethi G, Copeland JG, et al. Long-term patency of saphenous vein and left internal mammary artery grafts after coronary artery bypass surgery: re-sults from a Department of Veterans Affairs Cooperative Study. J Am Coll Cardiol 2004; 44(11): 2149–56.

Brilakis ES, Rao SV, Banerjee S, Goldman S, Shunk KA, Holmes DR, et al. Percutaneous Coronary Intervention in Native Ar-teries Versus Bypass Grafts in Prior Coronary Artery Bypass Grafting Patients: a report from the National Cardiovascular Data Registry. JACC Cardiovasc Interv 2011; 4(8): 844–50.

Zivkovic I, Krasic S, Stankovic M, Milacic P, Milutinovic A, Zdravkovic D, et al. Influence of Three Different Surgical Techniques on Microscopic Damage of Saphenous Vein Grafts—A Randomized Study. Medicina (Kaunas) 2023; 59(2): 217.

Hussaini BE, Lu XG, Wolfe JA, Thatte HS. Evaluation of en-doscopic vein extraction on structural and functional viability of saphenous vein endothelium. J Cardiothorac Surg 2011; 6: 82.

Botman CJ, Schonberger J, Koolen S, Penn O, Botman H, Dib N, et al. Does Stenosis Severity of Native Vessels Influence Bypass Graft Patency? A Prospective Fractional Flow Reserve–Guided Study. Ann Thorac Surg 2007; 83(6): 2093–7.

Weiss DR, Juchem G, Kemkes BM, Gansera B, Nees S. Extensive deendothelialization and thrombogenicity in routinely pre-pared vein grafts for coronary bypass operations: facts and remedy. Int J Clin Exp Med 2009; 2(2): 95–113.

Ak E, Ak K, Midi A, Kervancıoğlu-Demirci E, Arsan S, Çetinel Ş, et al. Histopathologic evaluation of saphenous vein grafts in patients with type II diabetes mellitus undergoing coronary ar-tery bypass grafting. Cardiovasc Pathol 2021; 52: 107328.

Korte S, Wiesinger A, Straeter AS, Peters W, Oberleithner H, Kusche-Vihrog K. Firewall function of the endothelial gly-cocalyx in the regulation of sodium homeostasis. Pflugers Arch 2012; 463(2): 269–78.

Singh SK, Desai ND, Petroff SD, Deb S, Cohen EA, Radhakrish-nan S, et al. The impact of diabetic status on coronary artery bypass graft patency: insights from the radial artery patency study. Circulation 2008; 118(14 Suppl): S222–5.

Gundry SR, Jones M, Ishihara T, Ferrans VJ. Intraoperative Trauma to Human Saphenous Veins: Scanning Electron Mi-croscopic Comparison of Preparation Techniques. Ann Thorac Surg 1980; 30(1): 40–7.

Tsakok M, Montgomery-Taylor S, Tsakok T. Storage of saphenous vein grafts prior to coronary artery bypass grafting: is autolo-gous whole blood more effective than saline in preserving graft function? Interact Cardiovasc Thorac Surg 2012; 15(4): 720–5.

Wilbring M, Ebner A, Schoenemann K, Knaut M, Tugtekin SM, Zatschler B, et al. Heparinized blood better preserves cellular energy charge and vascular functions of intraoperatively stored saphenous vein grafts in comparison to isotonic sodium-chloride-solution. Clin Hemorheol Microcirc 2013; 55(4): 445–55.

Lawrie GM, Weilbacher DE, Henry PD. Endothelium-dependent relaxation in human saphenous vein grafts. Effects of preparation and clinicopathologic correlations. J Thorac Cardiovasc Surg 1990; 100(4): 612–20.

Zerkowski HR, Knocks M, Konerding MA, Doetsch N, Roth G, Hakim K, et al. Endothelial damage of the venous graft in CABG. Influence of solutions used for storage and rinsing on endothelial function. Eur J Cardiothorac Surg 1993; 7(7): 376–82.

Chester AH, O'Neil GS, Tadjakarimi S, Borland JA, Yacoub MH. Effect of peri-operative storage solution on the vascular reactivity of the human saphenous vein. Eur J Cardiothorac Surg 1993; 7(8): 399–404.

Reitsma S, Slaaf DW, Vink H, van Zandvoort MA, oude Egbrink MG. The endothelial glycocalyx: composition, functions, and visualization. Pflugers Arch 2007; 454(3): 345–59.

Weiss DR, Juchem G, Eblenkamp M, Kemkes BM, Gansera B, Geier M, et al. Search for optimized conditions for sealing and storage of bypass vessels: influence of preservation solution and filling pressure on the degree of endothelialization. Int J Clin Exp Med 2010; 3(1): 10–27.

Teloh JK, Ansorge L, Petersen M, Demircioglu E, Waack IN, Brauckmann S, et al. Histidine Metabolism After Bretschneider Cardioplegia in Cardiac Surgical Patients. Physiol Res 2018; 67(2): 209–16.

Westerband A, Mills JL, Hunter GC, Gentile AT, Ihnat D, Heimark RL. Topography of cell replication in human vein graft stenoses. Circulation 1998; 98(19 Suppl): II325–9; dis-cussion II329–30.

Davignon J, Ganz P. Role of Endothelial Dysfunction in Ather-osclerosis. Circulation 2004; 109(23 Suppl 1): III27–32.

Autar A, Taha A, van Duin R, Krabbendam-Peters I, Duncker DJ, Zijlstra F, et al. Endovascular procedures cause transient en-dothelial injury but do not disrupt mature neointima in Drug Eluting Stents. Sci Rep 2020; 10(1): 2173.

Unal Y, Iriz E, Yilmazer D, Kavutcu M, Alper M, Kurtipek O, et al. Effects of lidocaine on membrane stabilization in harvested vein graft storage. Saudi Med J 2009; 30(2): 203–8.

Published
2023/12/29
Section
Original Paper