ABC | Volume 113, Nº1, Julho 2019

Artigo Original Wollmann et al Caracterização do pericárdio descelularizado Arq Bras Cardiol. 2019; 113(1):11-17 Potencial conflito de interesses Declaro não haver conflito de interesses pertinentes. Fontes de financiamento O presente estudo foi financiado pelo Fundo Nacional de Saúde - Ministério da Saúde – projeto nº 814611/2014. Vinculação acadêmica Nãohávinculaçãodesteestudoaprogramasdepós‑graduação. Aprovação ética e consentimento informado Este artigo não contém estudos com humanos ou animais realizados por nenhum dos autores. 1. Lu H, Hoshiba T, Kawazoe N, Chen G. Autologous extracellular matrix scaffolds for tissue engineering. Biomaterials. 2011;32(10):2489-99. 2. Crapo PM, Gilbert TW, Badylak SF. An overview of tissue and whole organ decellularization processes. Biomaterials. 2011;32(12):3233-43. 3. Platt J, DiSesa V, Gail D, Massicot-Fisher J, National Heart L, Blood Institute H, et al. Recommendations of the National Heart, Lung, and Blood Institute Heart and Lung XenotransplantationWorking Group. Circulation. 2002;106(9):1043-7. 4. Hellstrom WJ, Reddy S. Application of pericardial graft in the surgical management of Peyronie’s disease. J Urol. 2000;163(5):1445-7. 5. Yoo C, Kang SY, EomYS, KimHM. Temporary Repair of Corneal Perforation Tutoplast((R))-Processed Pericardium Graft. Ophthalmic Surg Lasers Imaging. 2010 Mar:1-3. 6. Yoo C, Kwon SW, KimYY. Pericardiumplug in the repair of the corneoscleral fistula after Ahmed Glaucoma Valve explantation. Korean J Ophthalmol. 2008;22(4):268-71. 7. WeissgoldDJ, Millay RH, BochowTA. Rescue of exposed scleral buckles with cadaveric pericardial patch grafts. Ophthalmology. 2001;108(4):753-8. 8. Seider N, Beiran I, Kaltreider SA. One medial triangular Tutoplast sling as a frontalis suspension for adult myogenic blepharoptosis. Acta Ophthalmol Scand. 2006;84(1):121-3. 9. Evans CF, DeFilippi CR, Shang E, Griffith BP, Gammie JS. Fresh autologous pericardium for leaflet perforation repair in mitral valve infective endocarditis. J Heart Valve Dis. 2013;22(4):560-6. 10. Takahashi H, Kadowaki T, Maruo A, Okita Y, Oshima Y. Mitral commissural repair with autologous fresh pericardium in an infant. Ann Thorac Surg. 2014;97(3):1064-6. 11. Thudt M, Papadopoulos N, Monsefi N, Miskovic A, Karimian-Tabrizi A, Zierer A, et al. Long-TermResults Following Pericardial Patch Augmentation for Incompetent Bicuspid Aortic Valves: A Single Center Experience. Ann Thorac Surg. 2017;103(4):1186-92. 12. Shomura Y, Okada Y, Nasu M, Koyama T, Yuzaki M, Murashita T, et al. Late results of mitral valve repair with glutaraldehyde-treated autologous pericardium. Ann Thorac Surg. 2013;95(6):2000-5. 13. Fukunaga N, Matsuo T, Saji Y, Imai Y, Koyama T. Mitral Valve Stenosis Progression Due to Severe Calcification on Glutaraldehyde-Treated Autologous Pericardium: Word of Caution for an Attractive Repair Technique. Ann Thorac Surg. 2015;99(6):2203-5. 14. Greenwald MA, Kuehnert MJ, Fishman JA. Infectious disease transmission during organ and tissue transplantation. Emerg Infect Dis. 2012;18(8):e1. 15. Badylak SF, Gilbert TW. Immune response to biologic scaffold materials. Semin Immunol. 2008;20(2):109-16. 16. Dohmen PM. Clinical results of implanted tissue engineered heart valves. HSR Proc Intensive Care Cardiovasc Anesth. 2012;4(4):225-31. 17. Rippel RA, Ghanbari H, Seifalian AM. Tissue-engineered heart valve: future of cardiac surgery. World J Surg. 2012;36(7):1581-91. 18. Aamodt JM, Grainger DW. Extracellular matrix-based biomaterial scaffolds and the host response. Biomaterials. 2016 Apr;86:68-82. 19. Gilbert TW, Sellaro TL, Badylak SF. Decellularization of tissues and organs. Biomaterials. 2006;27(19):3675-83. 20. Hasan A, Ragaert K, Swieszkowski W, Selimovic S, Paul A, Camci-Unal G, et al. Biomechanical properties of native and tissue engineered heart valve constructs. J Biomech. 2014;47(9):1949-63. 21. Min BJ, KimYJ, Choi JW, Choi SY, KimSH, LimHG. Histologic Characteristics and Mechanical Properties of Bovine Pericardium Treated with Decellularization and alpha-Galactosidase: A Comparative Study. Korean J Thorac Cardiovasc Surg. 2012;45(6):368-79. 22. Courtman DW, Pereira CA, Kashef V, McComb D, Lee JM, Wilson GJ. Development of a pericardial acellular matrix biomaterial: biochemical and mechanical effects of cell extraction. J Biomed Mater Res. 1994;28(6):655-66. 23. Mirsadraee S, Wilcox HE, Korossis SA, Kearney JN, Watterson KG, Fisher J, et al. Development and characterization of an acellular human pericardial matrix for tissue engineering. Tissue Eng. 2006;12(4):763-73. 24. Mendoza-Novelo B, Avila EE, Cauich-Rodriguez JV, Jorge-Herrero E, Rojo FJ, Guinea GV, et al. Decellularization of pericardial tissue and its impact on tensile viscoelasticity and glycosaminoglycan content. Acta Biomater. 2011;7(3):1241-8. 25. Vinci MC, Tessitore G, Castiglioni L, Prandi F, Soncini M, Santoro R, et al. Mechanical compliance and immunological compatibility of fixative- free decellularized/cryopreserved human pericardium. PLoS One. 2013;8(5):e64769. Referências Este é um artigo de acesso aberto distribuído sob os termos da licença de atribuição pelo Creative Commons 17

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