Human in vivo cellular response to a cross-linked acellular collagen implant
Autor: | N. S. Williams, J. Chin‐Aleong, H. Navsaria, T. M. Hammond |
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Rok vydání: | 2008 |
Předmět: |
Reoperation
medicine.medical_specialty Pathology Cellular immunity Hernia Biopsy Pilot Projects Prosthesis Implantation Abdominal wall Ileum Fibrosis Tensile Strength medicine Humans Prospective Studies biology Ileal Diseases Ileostomy business.industry Surgical Stomas Soft tissue medicine.disease Immunohistochemistry Surgery Fibronectin Cellular infiltration medicine.anatomical_structure Host vs Graft Reaction biology.protein Collagen Implant business |
Zdroj: | British Journal of Surgery. 95:438-446 |
ISSN: | 1365-2168 0007-1323 |
DOI: | 10.1002/bjs.5883 |
Popis: | Background Hernia surgery, in particular parastomal hernia mesh repair and new techniques for hernia prevention, require novel biomaterials that avoid fibrosis and potential bowel erosion, while retaining adequate strength for their intended purpose. The aim was to evaluate the human host response to an acellular porcine-derived cross-linked collagen implant. Methods In a prospective pilot study on prevention of parastomal herniation, 15 patients undergoing loop stoma formation had an implant placed within the anterior abdominal wall. Histopathology and immunohistochemistry were performed to analyse the implant qualitatively and, where appropriate, quantitatively for biocompatibility, degradation, cellular infiltration, neo-extracellular matrix (ECM) formation and neovascularization. Results At a median of 7 (range 1–8) months, 12 of 15 patients had stoma reversal and 11 implant biopsies were obtained. In biopsies from ten of the 11 patients all responses were limited to the periphery of the implant and native pores. There was a minimal inflammatory response and minimal degradation of the implant. Fibroblastic and neovascular infiltration were noted, as was matrix metalloproteinase 1 activity with organized deposition of host collagen, fibronectin and laminin. Conclusion The collagen implant demonstrated excellent biocompatibility and resistance to degradation in most patients. However, fibrovascular in-growth and ECM deposition were limited. This implant has excellent potential for soft tissue reinforcement. |
Databáze: | OpenAIRE |
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