An experimental research in mice on the “soft tissue reaction to 3 different mesh implants: Titanium silk, Parietene Progrip and Prolene”

JPRAS Open - Tập 18 - Trang 108-124 - 2018
Viktor Eduardovich Kobazev1, Manish Kumar Yadav1, Andrey Vyacheslavovich Vasilyev2, Alexander Ivanovich Nerobeev1,3
1Central Research Institute of Dental and Maxillofacial surgery (CRID), Moscow, Russian Federation
2Peoples’ Friendship University of Russia, Moscow, Russian Federation
3Department of cosmetology, Maxillofacial and plastic surgery, Russian Medical Academy for Continuing Postgraduate Education (RMACPE), Moscow, Russian Federation

Tài liệu tham khảo

Strelzow, 1983, Reconstruction of the paralyzed face with the polypropylene mesh template, Arch Otolaryngol, 109, 140, 10.1001/archotol.1983.00800170006002 Weyhe D, Belyaev O, Muller C, et al., Improving outcomes in hernia repair by the use of the light meshes: a comparison of different implant constructions based on a critical appraisal of the literature. World J Surg 31:234–244. PMID: 17180568 DOI: 10.1007/s00268-006-0123-4. Asarias JR, Nguyen PT, Jr Mings, Gerrich AP, Pierce LM., Influence of mesh materials on the expression of mediators involved in wound healing. Invest Surg 24:87–98 PMID: 21345009 DOI: 10.3109/08941939.2010.548904. Klinge, 2012, Modified classification of surgical meshes for hernia repair based on the analyses of 1000 explanted meshes, Hernia, 16, 251, 10.1007/s10029-012-0913-6 Regis, 2012, Altering surface characteristics of polypropylene mesh via sodium hydroxide treatment, J Biomed Mater Res A, 100, 1160, 10.1002/jbm.a.34057 Hernane Sad Medina., Ramon Ramalho., Rosane Biscotto., Mauricio Chveid., Head and neck reconstructions with prolene mesh., Braz J Plastic Surg Articles - Year 1997 - Volume 12 – Issue 1, ISSN Online: 2177-1235 http://www.rbcp.org.br/details/306/en-US/head-and-neck-reconstructions-with-prolene-mesh. Pascual, 2012, The long-term behavior of lightweight and heavyweight meshes used to repair abdominal wall defects is determined by host tissue repair process provoked by the mesh, Surgery, 152, 886, 10.1016/j.surg.2012.03.009 Diegelmann, 2004, Wound healing: an overview of acute, fibrotic, and delayed healing, Front Biosci, 283, 10.2741/1184 Anderson, 2008, Foreign body reaction to biomaterials, Semin Immunol, 20, 86, 10.1016/j.smim.2007.11.004 Weyhe, 2007, Improving outcomes in hernia repair by the use of the light meshes: a comparison of different implant constructions based on a critical appraisal of the literature, World J Surg, 31, 234, 10.1007/s00268-006-0123-4 Orestein, 2012, Comparative analysis of histopathologic effects of synthetic meshes based on material, weight and pore size in mice, J Surg Res, 176, 423, 10.1016/j.jss.2011.09.031 Ziats, 1988, In vitro and in vivo interactions of cells with biomaterials, Biomaterials, 9, 5, 10.1016/0142-9612(88)90063-4 Morehead, 1994, Soft-tissue response to synthetic biomaterials, Otolaryngol Clin North Am, 27, 195, 10.1016/S0030-6665(20)30723-4 Amid, 1997, Classification of biomaterials and their related complications in abdominal wall hernia surgery, Hernia, 1, 15, 10.1007/BF02426382 Junge, 2002, Influence of mesh materials on collagen deposition in a rat model, J Invest Surg, 15, 319, 10.1080/08941930290086137 Matthews, 2002, Bioprosthetic materials in hernia repair, Probl Gen Surg, 19, 7, 10.1097/00013452-200212000-00003 Papadimitriou, 2005, Histological studies of monofilament and multifilament polypropylene mesh implants demonstrate equivalent penetration of macrophages between fibrils, Hernia, 9, 75, 10.1007/s10029-004-0286-6 Pascual, 2008, Early tissue incorporation and collagen deposition in lightweight polypropylene meshes: bioassay in an experimental model of ventral hernia, Surgery, 144, 427, 10.1016/j.surg.2008.04.005 Bello´n, 2009, Comparing the behavior of different polypropylene meshes (heavy and lightweight) in an experimental model of ventral hernia repair, J Biomed Mater Res B Appl Biomater, 89, 448, 10.1002/jbm.b.31234 Laschke, 2009, Angiogenic and inflammatory host response to surgical meshes of different mesh architecture and polymer composition, J Biomed Res B Appl Biomater, 91, 497, 10.1002/jbm.b.31423 Scheidbach, 2004, In vivo studies comparing the biocompatibility of various polypropylene meshes and their handling properties during endoscopic total extraperitoneal (TEP) patchplasty: an experimental study in pigs, Surg Endosc, 18, 211, 10.1007/s00464-003-8113-1 Pereira-lucena, 2014, Early and late postoperative inflammatory and collagen deposition responses in three different meshes: an experimental study in rats, Hernia, 18, 563