Um novo substituto vascular: arterioplastia femoral em cães com remendo de membrana de biopolímero de cana-de-açúcar - avaliação hemodinâmica e histopatológica
A new vascular substitute: femoral artery angioplasty in dogs using sugarcane biopolymer membrane patch - hemodynamic and histopathologic evaluation
Silvio Romero de Barros Marques; Esdras Marques Lins; José Lamartine de Andrade Aguiar; Maria Claudia Sodré Albuquerque; Renata de Oliveira Rossiter; Luciano Tavares Montenegro; Roberto José Vieira
Resumo
Palavras-chave
Abstract
Keywords
References
De Bakey ME, Crawford ES, Morris GC, Cooley DA. Patch graft angioplasty in vascular surgery. J Cardiovasc Surg (Torino). 1962;3:106-41.
Carrel A, Guthrie CC. Anastomosis of blood vessels by the patching method and transplantation of the kidney. JAMA. 1906;47:1648-51.
Senning A. Strip-graft technique. Acta Chir Scand. 1959;118:81.
Crawford ES, Beall AC, Ellis Jr PR, De Bakey ME. A technique permitting operation upon small arteries. Surg Forum. 1959;10:671-5.
Haimovici H. Angioplastia com enxertos em remendo. Haimovici cirurgia vascular princípios e técnicas. 1999:250-6.
Dos Santos JC. Sur la désobstruction des thromboses artérielles anciennes. Mem Acad Chir. 1947;73:409-11.
Xue L, Greisler HP. Biomaterials in the development and future of vascular grafts. J Vasc Surg. 2003;37:472-80.
Leon L, Greisler HP. Vascular grafts. Expert Rev Cardiovasc Ther. 2003;4:581-94.
Chakfé N, Dieval F, Thaveau F. Substituts vasculaires: EMC techniques chirurgicales. Chir Vasc. 2003;43(008):1-12.
Sauvage LR. Comportamento biológico dos enxertos no sistema arterial. Haimovici cirurgia vascular princípios e técnicas. 1999:157-92.
Gonzalez J, Mafei FHA, Moura R. Próteses e enxertos vasculares. Doenças vasculares periféricas. 2002:789-800.
Peterson-Beedle M, Kennedy JF, Melo FAD, Lloyd LL, Medeiros V. A cellulosic exopolysaccharide produced from sugar-cane molasses by Zoogloea sp. Carbohydrate Polymers. 2000;42:375-83.
Castro CMMB, Aguiar JLA, Melo FAD, Silva WTF, Marques E, Silva DB. Citotoxicidade de biopolímero de cana-de-açúcar. An Fac Med Univ Fed Pernambuco. 2004;49:119-23.
Coelho MCOC, Carrazoni PG, Monteiro VLC, Melo FAD, Mota RA, Tenório Filho F. Biopolímero produzido a partir da cana-de-açúcar para a cicatrização cutânea. Acta Cir Bras. 2002;17(^s1):11-3.
Chagas HM, Aguiar JLA, Andrade RT, Montoro M, Vilar FO, Lima SVC. Uso da membrana de biopolímero de cana-de-açúcar na reconstrução uretral. Anais. 2005.
Silva DB, Aguiar JLA, Marques A, Coelho ARB, Rolim Filho EL. Meringoplastia com enxerto livre de membrana de biopolímero de cana-de-açúcar e fáscia autóloga em Chinchilla laniger. An Fac Med Univ Fed Pernamb. 2006;51:45-51.
Marques SRB. Um novo substituto vascular: estudo experimental com biopolímero de cana-de-açúcar. .
Lins EM. Membrana de biopolímero de cana-de-açúcar como remendo em arterioplastias femorais em cães. .
Klemm D, Schumann D, Udhardt U, Marsch S. Bacterial synthesised cellulose: artificial blood vessels for microsurgery. Prog Polym Sci. 2001;26:1561-603.
Rossi NP, Koepke JA, Spencer FC. Histologic changes in long-term arterial patch grafts in coronary arteries. Surgery. 1965;57:335-42.
Wagner M, Ruel G, Teresi J, Kaiser K. The use of spandex as a vascular patch graft material. Surg Gynecol Obstet. 1968;96:805-7.
Menon SM, Talwar JR, Roy S, Gopinath N. Comparison of Dacron velour and venous patch grafts for arterial reconstruction. Surgery. 1973;73:423-8.
Norton LW, Spencer FC. Long-term comparison of vein patch with direct suture: Technique of anastomosis of small arteries. Arch Surg. 1964;89:1083-8.
Pena LI, Husni EA. A comparative study of autogenous vein and Dacron patch grafts in the dog. Arch Surg. 1968;96:369-72.
Sarac T, Carnevale K, Smedira N. In vivo and mechanical properties of peritoneum / fascia as a novel arterial substitute. J Vasc Surg. 2005;41:490-7.
Thomazine JA, Freitas MAS, Lachat JJ, Coutinho Neto J, Cherri J. Structural and ultrastructural study of the luminal surface of femoral arteries of dogs submitted at arterioplasty with implants of prosthesis manufactured from natural latex of Hevea Brasilienses. Acta Microscópica. 2001;2:263-4.
Greca FH, Noronha L, Costa FDA. Estudo comparativo da biocompatibilidade da submucosa intestinal porcina e pericárdio bovino como enxerto na veia cava de cães. Acta Cir Bras. 2005;20:317-22.
Benzel EC, McMillan R, Fowler MR, Landreneau MD, Kesterson L, Payne DL. Histological comparison of autogenous canine fascia lata, Gore-Tex, lyophilized human fascia lata, and autogenous canine vein for vascular patch graft material in a canine arteriotomy model. Neurosurgery. 1992;31:108-13.
McCready RA, Hodde J, Irwin RJ. Pseudoaneurysm formation in a subset of patients with small intestinal submucosa biologic patches after carotid endarterectomy. J Vasc Surg. 2005;41:782-8.
Teijeira J, Morais Y, Aguiar L. Comparation of processed bovine internal mammary arteries and autologos vein as arterial femoral substitutes in dogs: blood compability and pathological characteristics. Can J Surg. 1989;32:180-7.
Bernades CHA, Nigro AJT. Comparison between biological prosthesis constituted of autogenous superficial femoral vein or human umbilicus cord vein interposed between two femoral artery stumps: an experimental study in dogs. Acta Cir Bras. 1996;11:76-81.