We compared fascial wounds repaired with non-cross-linked intact porcine-derived acellular dermal matrix versus primary closure in a large-animal hernia model. Incisional hernias were created in Yucatan pigs and repaired after 3 weeks via open technique with suture-only primary closure or intraperitoneally placed porcine-derived acellular dermal matrix. Progressive changes in mechanical and biological properties of porcine-derived acellular dermal matrix and repair sites were assessed. Porcine-derived acellular dermal matrix-repaired hernias of additional animals were evaluated 2 and 4 weeks post incision to assess porcine-derived acellular dermal matrix regenerative potential and biomechanical changes. Hernias repaired with primary closure showed substantially more scarring and bone hyperplasia along the incision line. Mechanical remodeling of porcine-derived acellular dermal matrix was noted over time. Porcine-derived acellular dermal matrix elastic modulus and ultimate tensile stress were similar to fascia at 6 weeks. The biology of porcine-derived acellular dermal matrix-reinforced animals was more similar to native abdominal wall versus that with primary closure. In this study, porcine-derived acellular dermal matrix-reinforced repairs provided more complete wound healing response compared with primary closure.
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http://dx.doi.org/10.1177/2041731413508771 | DOI Listing |
Neurosurg Rev
December 2024
Department of Neurosurgery, Accra Medical Centre, Accra, Ghana.
Cerebrospinal fluid (CSF) leaks commonly occur due to trauma or surgical procedures. Here we review CSF leak diagnosis and management in Low- and Middle-Income Countries (LMICs). A systematic review of the CSF leak management in LMICs was conducted using PubMed, Google Scholar, Embase and Web of Science databases according to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines.
View Article and Find Full Text PDFIntroduction: Complex abdominal wall defects (CAWD) requiring complex abdominal wall reconstruction (CAWR) represent an important surgical challenge in the presence of significant comorbidities. We aimed to report the results on a large patient cohort and identify independent outcome predictors.
Materials And Methods: All patients who underwent CAWR with biologic mesh (Strattice™; Reconstructive Tissue Matrix ®, a porcine-derived acellular dermal matrix; Allergan plc, Branchburg, New Jersey) between July 2016 and November 2021 at the tertiary academic center were studied using univariable and multivariable regressions.
Cornea
October 2024
Faculty of Medicine, University of São Paulo (USP), Sao Paulo, Brazil.
Background: Human acellular dermal matrices (ADMs) remain the most used matrices in prosthetic breast reconstruction. However, the availability and cost of ADMs limit their use in prepectoral reconstruction-which requires large amounts of ADM-and alternative matrices are therefore being explored.
Objectives: The aim of this study was to demonstrate the safety and efficacy of human-porcine ADM constructs via clinical outcomes and histologic evidence of graft integration.
Int J Biomater
June 2024
Department of Periodontology School for Health Sciences Witten/Herdecke University, Alfred-Herrhausen-Str. 45, 58448 Witten, Germany.
It is well known that soft tissue quality and quantity around dental implants is of paramount importance for later peri-implant health. For this purpose, the clinical and histological outcomes of the peri-implant mucosa, following soft tissue augmentation for soft tissue improvement with a novel prehydrated porcine acellular dermal matrix graft (PPADMG) in conjunction with simultaneous implant placement, were evaluated in this case series. Twenty-two patients were included in the study.
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