Strukturne karakteristike arterijskih graftova značajnih za hiruršku revaskularizaciju miokarda: Deo I – Histologija unutrašnje torakalne arterije

  • Milica Labudović Borović Institute of Histology and Embryology "Aleksandar Đ. Kostić", Faculty of Medicine University of Belgrade, Belgrade
  • Ivana Lalić Institute of Histology and Embryology "Aleksandar Đ. Kostić", Faculty of Medicine University of Belgrade, Belgrade
  • Saša Borović Dedinje Cardiovascular Institute, Belgrade, Serbia
  • Ivan Zaletel Institute of Histology and Embryology "Aleksandar Đ. Kostić", Faculty of Medicine University of Belgrade, Belgrade
  • Slavica Mutavdžin Institute of Histology and Embryology "Aleksandar Đ. Kostić", Faculty of Medicine University of Belgrade, Belgrade
  • Miloš Bajčetić Institute of Histology and Embryology "Aleksandar Đ. Kostić", Faculty of Medicine University of Belgrade, Belgrade
  • Jelena Kostić Cardiology Clinic, Clinical Center of Serbia, Belgrade, Serbia
  • Zoran Trifunović Military Medical Academy, Belgrade, Serbia; Faculty of Medicine of the Military Medical Academy, University of Defence, Belgrade, Serbia
Ključne reči: myocardial revascularization||, ||miokard, revaskularizacija, vascular patency||, ||vaskularni graft, prolaznost, mammary arteries||, ||aa. mammariae, histology||, ||histologija,

Reference

Catinella FP, Cunningham JN, Srungaram RK, Baumann FG, Nathan IM, Glassman EA, et al. The factors influencing early patency of coronary artery bypass vein grafts: correlation of angiographic and ultrastructural findings. J Thorac Cardiovasc Surg 1982; 83(5): 686−700.

Campos EE, Cinderella JA, Farhi ER. Long-term angiographic follow-up of normal and minimally diseased saphenous vein grafts. J Am Coll Cardiol 1993; 21(5): 1175−80.

Fukui T, Tabata M, Manabe S, Shimokawa T, Takanashi S. Graft selection and one-year patency rates in patients undergoing coronary artery bypass grafting. Ann Thorac Surg 2010; 89(6): 1901−5.

Fukui T, Tabata M, Taguri M, Manabe S, Morita S, Takanashi S. Extensive reconstruction of the left anterior descending coro-nary artery with an internal thoracic artery graft. Ann Thorac Surg 2011; 91(2): 445−51.

Suma H, Takeuchi A, Hirota Y. Myocardial revascularization with combined arterial grafts utilizing the internal mammary and the gastroepiploic arteries. Ann Thorac Surg 1989; 47(5): 712−5.

Chong CF. New method of myocardial revascularization with the radial artery. Ann Thorac Surg 2000; 69(1): 318.

van Son JA, Smedts F, de Wilde PC, Pijls NH, Wong-Alcala L, Ku-bat K, et al. Histological study of the internal mammary artery with emphasis on its suitability as a coronary artery bypass graft. Ann Thorac Surg 1993; 55(1): 106−13.

Labudović-Borović M, Borović S, Marinković-Erić J, Todorović V, Puškaš N, Kočica M, et al. A comprehensive morphometric analysis of the internal thoracic artery with emphasis on age, gender and left-to-right specific differences. Histol Histo-pathol 2013; 28(10): 1299−314.

Labudović-Borović M. Comparative histological, histochemical and morphometric analysis of arterial grafts in surgical revas-cularization of the myocardium [thesis]. Belgrade: School of Medicine; 2003. (Serbian)

Gaudino M, Toesca A, Nori SL, Glieca F, Possati G. Effect of skeletonization of the internal thoracic artery on vessel wall in-tegrity. Ann Thorac Surg 1999; 68(5): 1623−7.

Hata M, Shiono M, Orime Y, Yagi S, Yamamoto T, Okumura H, et al. Clinical results of coronary artery bypass grafting with use of the internal thoracic artery under low free flow conditions. J Thorac Cardiovasc Surg 2000; 119(1): 125−9.

Angelini GD, Christie MI, Bryan AJ, Lewis MJ. Surgical prepara-tion impairs release of endothelium-derived relaxing factor from human saphenous vein. Ann Thorac Surg 1989; 48(3): 417−20.

Quist WC, Haudenschild CC, LoGerfo FW. Qualitative microscopy of implanted vein grafts. Effects of graft integrity on mor-phologic fate. J Thorac Cardiovasc Surg 1992; 103(4): 671−7.

Deja MA, Wos S, Golba KS, Zurek P, Domaradzki W, Bachowski R, et al. Intraoperative and laboratory evaluation of skeletonized versus pedicled internal thoracic artery. Ann Thorac Surg 2000; 68(6): 2164−8.

Buyukates M, Kandemir O, Gun BD, Aktunc E, Kurt T. Immuno-histochemical comparison of traditional and modified harvest-ing of the left internal mammary artery. Tex Heart Inst J 2007; 34(3): 290−5.

Luscher TF, Vanhoutte PM, Raij L. Antihypertensive treatment normalizes decreased endothelium-dependent relaxations in rats with salt-induced hypertension. Hypertension 1987; 9(Suppl 3): 193.

Luscher TF, Noll G. The pathogenesis of cardiovascular disease: role of the endothelium as a target and mediator. Atherosclerosis 1995;118(Suppl): S81−90.

Lüscher TF, Yang Z, Tschudi M, von Segesser L, Stulz P, Boulanger C, et al. Interaction between endothelin-1 and endothelium-derived relaxing factor in human arteries and veins. Circ Res 1990; 66(4): 1088−94.

Pešić S, Grbović L, Jovanović A, Inić M, Radovanović P. The role of perforating branch of human internal mammary artery endo-thelium in the vascularisation of mammary gland. Folia Ana-tomica 1998; 25(Suppl 2): 143.

Ninković M, Anderl H, Hefel L, Schwabegger A, Wechselberger G. Internal mammary vessels: a reliable recipient system for free flaps in breast reconstruction. Br J Plast Surg 1995; 48(8): 533−9.

Shi Y, Patel S, Davenpeck KL, Niculescu R, Rodriguez E, et al. Ox-idative stress and lipid retention in vascular grafts: comparison between venous and arterial conduits. Circulation 2001; 103(19): 2408−13.

Yang ZH, Stulz P, von Segesser L, Bauer E, Turina M, Lüscher TF. Different interactions of platelets with arterial and venous cor-onary bypass vessels. Lancet 1991; 337(8747): 939−43.

Tsoukatos DC, Brochériou I, Moussis V, Panopoulou CP, Christofidou ED, Koussissis S, et al. Platelet-activating factor acetylhydrolase and transacetylase activities in human aorta and mammary ar-tery. J Lipid Res 2008; 49(10): 2240−9.

Otsuka F, Yahagi K, Sakakura K, Virmani R. Why is the mam-mary artery so special and what protects it from atherosclero-sis. Ann Cardiothorac Surg 2013; 2(4): 519−26.

Foglieni C, Maisano F, Dreas L, Giazzon A, Ruotolo G, Ferrero E, Maseri A. Mild inflammatory activation of mammary arteries in patients with acute coronary syndromes. Am J Physiol Heart Circ Physiol 2008;294(6):2831-7. PubMed PMID: 18441195

Nemes A, Sotonyi P, Balogh A, Nagy J. Use of the internal mam-mary artery for myocardial revascularization. Acta Chir Acad Sci Hung 1977; 18(2): 123−8.

Sisto T. Atherosclerosis in internal mammary and related arter-ies. Scand J Thor Cardiovasc Surg 1990; 24(1): 7−11.

Sisto T, Isola J. Incidence of atherosclerosis in the internal mammary artery. Ann Thorac Surg 1989; 47(6): 884−6.

Labudović-Borović M, Borović S, Perić M, Vuković P, Marinković J, Todorović V, et al. The internal thoracic artery as a transitional type of artery: a morphological and morphometric study. His-tol Histopathol 2010; 25(5): 561−76.

Živković K, Labudović-Borović M. Morphological and morpho-metric characteristics of the inferior epigastric artery. Med Podml 2004; 55(1−2): 23−30. (Serbian)

Sims FH. The internal mammary artery as a bypass graft. Ann Thorac Surg 1987; 44(1): 2−3.

Sims FH, Chen X, Gavin JB. The importance of a substantial elastic lamina subjacent to the endothelium in limiting the pro-gression of atherosclerotic changes. Histopathology 1993; 23(4): 307−17.

Labudović-Borović M. Histological characteristics of grafts used in surgical myocardial revascularization. In: Perić M, editor. Proceedings of Ischemic heart disease and revascularization - modern therapy and guidance Symposium. XVII Congress of the cardiology society of Serbia with international participa-tion. Belgrade, 2009 October 18−21; Belgrade: The Ministry of Health of the Republic of Serbia; 2004. p. 54−8. (Serbian)

Loop FD, Spampinato N, Cheanvechai C, Effler DB. The free in-ternal mammary artery bypass graft. Use of the IMA in the aorta-to-coronary artery position. Ann Thorac Surg 1973; 15(1): 50−5.

Frazier BL, Flemma RJ, Tector AJ, Korns ME. Atherosclerosis in-volving the internal mammary artery. Ann Thorac Surg 1974; 18(3): 305−7.

Cizek SM, Bedri S, Talusan P, Silva N, Lee H, Stone JR. Risk fac-tors for atherosclerosis and the development of preatheroscle-rotic intimal hyperplasia. Cardiovasc Pathol 2007; 16(6): 344−50.

Fawcett D. Blood and lymph vascular systems. In: Fawcett D, editor. A Textbook of Histology. Philadelphia: WB Saunders Company; 1986. p. 367−406.

Jores L. Arterien. In: Henke F, Lubarsch O, editors. Handbuch der Speziellen Pathologischen Anatomie und Histologie, vol II: Herz und Gefasse, 1st ed. Berlin: Springer; 1924. p. 608−786.

Movat HZ, More RH, Haust MD. The diffuse intimal thickening of the human aorta with aging. Am J Pathol 1958; 34(6): 1023−31.

Van Son JA, Smedts F, Vincent JG, van Lier HJ, Kubat K. Com-parative anatomic studies of various arterial conduits for myo-cardial revascularization. J Thorac Cardiovasc Surg 1990; 99(4): 703−7.

Ortiz PP, Díaz P, Daniel-Lamazière JM, Lavallée J, Bonnet J, Torres A, et al. Morphometry of the human splenic artery: muscular columns, morphofunctional aspects and developmental impli-cations. Histol Histopathol 1998; 13(2): 315−24.

Ortiz PP, Sarrat R, Daret D, Whyte J, Torres A, Lamazière JM. Elastin variations implicating in vascular smooth muscle cells phenotype in human tortuous arteries. Histol Histopathol 2000; 15(1): 95−100.

Thyberg J. Phenotypic modulation of smooth muscle cells dur-ing formation of neointimal thickenings following vascular in-jury. Histol Histopathol 1998; 13(3): 871−91.

Helle KB. Vasostatins. In: Helle KB, Aunis D, editors. Chro-mogranins: Functional and clinical aspects. New York: Kluwer Academic/Plenum Publishers; 2000. p. 225−38.

Rivard A, Andrés V. Vascular smooth muscle cell proliferation in the pathogenesis of atherosclerotic cardiovascular diseases. Histol Histopathol 2000; 15(2): 557−71.

Bashour TT, Hanna ES, Mason DT. Myocardial revascularization with internal mammary artery bypass: an emerging treatment of choice. Am Heart J 1986; 111(1): 143−51.

Barner HB. Remodeling of arterial conduits in coronary graft-ing. Ann Thorac Surg 2002; 73(4): 1341−5.

Kieser TM, Lewin AM, Graham MM, Martin B, Galbraith DP, Rabi DM, et el. Outcomes associated with bilateral internal thoracic artery grafting: the importance of age. Ann Thorac Surg 2011; 92(4): 1269−75.

Zengin E, Chalajour F, Gehling UM, Ito WD, Treede H, Lauke H, et al. Vascular wall resident progenitor cells: a source for post-natal vasculogenesis. Development 2006; 133(8): 1543−51.

Geiringer E. Intimal vascularization and atherosclerosis. J Pathol Bacteriol 1951; 63(2): 201−11.

Scotland R, Vallance P, Ahluwalia A. On the regulation of tone in vasa vasorum. Cardiovasc Res 1999; 41(1): 237−45.

Hu X, Zhao Q. Skeletonized internal thoracic artery harvest improves prognosis in high-risk population after coronary ar-tery bypass surgery for good quality grafts. Ann Thorac Surg 2011; 92(1): 48−58.

Perić M. Arterial grafts in surgical myocardial revascularization. Beograd: Reprograf; 2002. p. 4−6. (Serbian)

Mannacio V, di Tommaso L, Antignano A, de Amicis V, Stassano P, Pinna GB, et al. Endothelial nitric oxide synthase expression in postmenopausal women: a sex-specific risk factor in coronary surgery. Ann Thorac Surg 2012; 94(6): 1934−9.

Kinoshita T, Asai T, Murakami Y, Nishimura O, Hiramatsu N, Su-zuki T, et al. Bilateral versus single internal thoracic artery grafting in dialysis patients with multivessel disease. Heart Surg Forum 2010; 13(5): 280−6.

Cho W, Yoo DG, Kim JB, Lee SH, Jung SH, Chung CH, et al. Left internal thoracic artery composite grafting with the right inter-nal thoracic versus radial artery in coronary artery bypass graft-ing. J Card Surg 2011; 26(6): 579−85.

Tatoulis J, Buxton BF, Fuller JA. The right internal thoracic ar-tery: the forgotten conduit--5, 766 patients and 991 angio-grams. Ann Thorac Surg 2011; 92(1): 9−15.

Porto I, Gaudino M, de Maria GL, di Vito L, Vergallo R, Bruno P, et al. Long-term morphofunctional remodeling of internal thoracic artery grafts: a frequency-domain optical coherence tomography study. Circ Cardiovasc Interv 2013; 6(3): 269−76.

Landymore RW, Chapman DM. Anatomical studies to support the expanded use of the internal mammary artery graft for myocardial revascularization. Ann Thorac Surg 1987; 44(1): 4−6.

Cho KR, Hwang HY, Kim J, Jeong DS, Kim K. Comparison of right internal thoracic artery and right gastroepiploic artery Y grafts anastomosed to the left internal thoracic artery. Ann Thorac Surg 2010; 90(3): 744−50.

Chenvechai C, Irarrazaval MJ, Loop FD, Effler DB, Rincon G, Sones FM. Aorta-coronary bypass grafting with the internal mamma-ry artery: clinical experience in 70 patients. J Thorac Cardiovasc Surg 1975; 70(2): 278−81.

Sauvage LR, Wu HD, Kowalsky TE, Davis CC, Smith JC, Rittenhouse EA, et al. Healing basis and surgical techniques for complete revascularization of the left ventricle using only the internal mammary arteries. Ann Thorac Surg 1986; 42(4): 449−65.

Barner HB, Swartz MT, Mudd JG, Tyras DH. Late patency of the internal mammary artery as a coronary bypass conduit. Ann Thorac Surg 1982; 34(4): 408−12.

Schwartz D, Factor S, Schwartz J, Petrosian E, Blitz A, Mcloughlin D, et al. Histological evaluation of the inferior epigastric artery in patients with known atherosclerosis. Eur J Cardiothorac Surg 1992; 6(8): 438−41.

Grondin CM, Campeau L, Lesperance J, Enjalbert M, Bourassa MG. Comparison of late changes in internal mammary artery and saphenous vein in two consecutive series of patients 10 years after operation. Circulation 1984; 70(Suppl 1): 208−12.

Van der Wal A, Becker A, Elbers J, Das P. An immunocytochemical analysis of rapidly progressive atherosclerosis in human vein grafts. Eur J Cardiothorac Surg 1992; 6(9): 469−74.

Kockx MM, de Meyer GR, Bortier H, de Meyere N, Muhring J, Bakker A, et al. Luminal foam cell accumulation is associated with smooth muscle cell death in the intimal thickening of human saphenous vein grafts. Circulation 1996; 94(6): 1255−62.

Loop FD, Lytle BW, Cosgrove DM, Stewart RW, Goormastic M, Wil-liams GW, et al. Influence of the internal-mammary-artery graft on 10-year survival and other cardiac events. N Engl J Med 1986; 314(1): 1−6.

Weintraub WS, Grau-Sepulveda MV, Weiss JM, O'Brien SM, Peterson ED, Kolm P, et al. Comparative effectiveness of revascularization strategies. N Engl J Med 2012; 366(16): 1467−76.

Farkouh ME, Domanski M, Sleeper LA, Siami FS, Dangas G, Mack M, et al. Strategies for multivessel revascularization in patients with diabetes. N Engl J Med 2012; 367(25): 2375−84.

Holzhey DM, Cornely JP, Rastan AJ, Davierwala P, Mohr FW. Re-view of a 13-year single-center experience with minimally inva-sive direct coronary artery bypass as the primary surgical treatment of coronary artery disease. Heart Surg Forum 2012; 15(2): 61−8.

Katz WE, Zenati M, Mandarino WA, Cohen HA, Gorcsan J. As-sessment of left internal mammary artery graft patency and flow reserve after minimally invasive direct coronary artery by-pass. Am J Cardiol 1999; 84(7): 795−801.

Borović S. Short-term mechanic circulatory support. In: Perić M, editor. Surgical Revascularization of the Ischemic Myocardium. Belgrade: Faculty of Medicine, University of Belgrade; 2013. p. 315−29. (Serbian)

Nezić D, Knezević A, Borović S, Cirković M, Milojević P. Coronary-coronary free internal thoracic artery graft on a single, distal, left anterior descending artery lesion. J Thorac Cardiovasc Surg 2004; 127(5): 1517−8.

Nezić DG, Knezević AM, Cirković MV, Borović SD, Milojević PS. Arterial coronary-coronary conduit over single, distal left ante-rior descending coronary artery lesion: 3. 5 years afterward. J Thorac Cardiovasc Surg 2007; 134(1): 238−40.

Objavljeno
2015/11/02
Rubrika
Pregledni članak