PubMed Health⌕ Search

PubMed · 12415348

Experimental abdominal wall defect repaired with acellular matrix.

Abstract

In the surgical repair of congenital abdominal-wall defects (AWD), the ready availability of a non-immunogenic and non-prosthetic biomaterial that could guide the regeneration of normal tissue is a fascinating possibility. Biomaterials are already in use, but in our experience, an acellular matrix (ACM) can stimulate exact regeneration of the absent tissue. We explored the possibility of using an ACM to repair a muscular AWD in an animal model. Male New Zealand white rabbits (3-4 kg, n = 18) were anesthetized and the abdominal wall was shaved and scrubbed; a vertical incision was made in the left lower quadrant and a large patch of external-oblique muscle was resected (3 x 3 cm). The animals underwent reconstruction with homologous diaphragm acellular matrix (HDAM) grafts that were previously prepared using a detergent enzymatic method. The patches were evaluated histologically at 9 (n = 6), 40 (n = 6), and 90 (n = 6) days post-surgery in each group; moreover, 90 days post-surgery an electromyogram (EMG) (n = 6) of the implanted matrix was recorded. Histologic analysis demonstrated that the HDAM supported fibroblast migration, deposition of newly-formed collagen, and neovascularization. No signs of necrosis, or evidence of skeletal-muscle-cell ingrowth were detected. The EMG revealed minimum muscular electrophysiologic activity, probably due to muscle underlying the patch. The HDAM we employed was thus not able to produce reconstruction of the skeletal muscle, and was progressively remodeled into fibrous tissue. Since the ultimate reason for failure of muscle regeneration is a lack of myogenesis, future studies will use ACMs preconditioned by various regulators of myoblast proliferation and differentiation.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

P G Gamba, M T Conconi, R Lo Piccolo, G Zara, R Spinazzi, P P Parnigotto. 2002-05-24. Experimental abdominal wall defect repaired with acellular matrix.. https://doi.org/10.1007/s00383-002-0849-5

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Prenatal sonographic diagnosis of a rare Cantrell's pentalogy variant with associated open neural tube defect - a case report.

Cantrell's pentalogy is a very rare congenital anomaly. The hallmark of this condition is the presence of ectopia cordis and an abdominal wall defect. Its association with craniorachischisis is even more infrequent with just a few cases reported in the literature. The authors describe a case of a prenatal ultrasound diagnosis of Cantrell's pentalogy with posterior encephalocele and spinal dysraphism associated.

Abdominal Wall↗

Laparoscopically assisted components separation technique for ventral incisional hernia repair.

Reconstruction of the abdominal wall to repair ventral hernias continues to pose a challenge to surgeons due to relatively high rates of recurrence and morbidity. In 1990, Ramirez pioneered a technique of components separation of the abdominal wall for ventral hernia repair. Although an effective hernia repair, the mobilization of skin and subcutaneous tissue endangers the blood supply and predisposes midline skin to necrosis. The goal of this study is to determine whether releasing incisions in the transversus abdominis fascia and posterior rectus sheath provide adequate mobilization of the abdominal wall necessary for ventral hernia repair, thus paving the way for a laparoscopic component separation technique. Ten fresh cadavers were used and one side of the abdomen underwent the conventional Ramirez components separation: midline incision, dissection of skin and subcutaneous tissue off the anterior abdominal wall, and incisions in the external oblique aponeurosis and posterior rectus sheath, while the other side received incisions in the transversus abdominis fascia and the posterior rectus sheath with no undermining of the skin. The amount of fascial translation was measured after each incision. Incising only the external oblique aponeurosis produced greater mobilization of the abdominal wall at the level of the umbilicus (P = 0.02) and anterior superior iliac spine (ASIS, P = 0.029) than releasing only transversus abdominis fascia. More importantly, there was no statistically significant difference in the amount of release produced by the complete internal-release components separation versus the conventional technique. In order to test the feasibility of performing the procedure laparoscopically, one additional cadaver underwent a laparoscopic transversus abdominis fascia release. The procedure was successful and resulted in comparable amounts of fascial release as the other 10 cadavers. From this study, it appears technically feasible to perform a laparoscopic components separation to repair a ventral hernia and the procedure produces the same amount of release as the conventional open component separation technique.

Abdominal Wall↗

Long-lasting bioresorbable poly(lactic acid) (PLA94) mesh: a new approach for soft tissue reinforcement based on an experimental pilot study.

The purpose of this study was to evaluate host response and soft-tissue regeneration after poly(lactic acid) (PLA) mesh implantation in a rat model, in comparison with light-weight polypropylene (PPL) and poly(glycolic acid) (PGA) meshes. Full-thickness abdominal wall defects were created in 45 Wistar rats and reconstructed with 15 PLA(94), 15 PPL and 15 PGA meshes. Animals were killed on days 7, 30 and 90 to evaluate the presence of adhesions and changes in tensile strength of the implants. Histopathology and immunohistochemistry were performed to evaluate the collagen deposition and the inflammatory response. Statistics were done using unpaired Student's t-test, Mann-Whitney rank sum test, Student-Newman-Keuls test and Bonferroni (Dunn) t-test. The inflammatory response induced by the PLA mesh implantation was significantly milder than after PPL mesh. In PLA, vascularity and collagen organization was significantly higher than in PPL and PGA at 30 and 90 days, and collagen composition score was significantly higher than in PPL at 7 and 30 days. In PLA, shrinkage was significantly lower than in PPL and PGA at 7 and 30 days. Elongation at break and tensile strength were comparable between PLA and PPL over the 90-day period. The PLA mesh induces a milder inflammatory response, more orderly collagen deposition than PPL, and preserved comparable tensile strength after 90 days.

Abdominal Wall↗