ABSTRACT
Nerve wrapping can improve outcomes by protecting nerves in a scarred tissue bed.
Autologous tissue wraps have shown good results, but there are limitations associated
with harvesting and availability. Extracellular matrix (ECM) derived from porcine
small intestinal submucosa offers an attractive off-the-shelf option. This study evaluated
this material as a nerve wrap. The sciatic nerves of 18 New Zealand rabbits were exposed
and then wrapped, while the contralateral side served as sham control. Presence and
quality of adhesions, motor conduction velocity (MCV), and histology were evaluated
at 1, 2, and 6 months (n = 6 animals per time point). The quality, extent, tenacity, and overall impression
of adhesions were not different from control at any time point (p = 0.18 to 0.99). MCV was also not statistically different from control (1 month,
p = 0.35; 2 months, p = 0.20; 6 months, p = 0.83). Histology demonstrated that wrapped nerves were healthy in terms of myelination,
density, and vascularity compared with controls. Vascularization and incorporation
of the ECM material could be visualized at explants. All assessments supported the
feasibility and safety of this material as a nerve wrap. Its ability to function as
a protective barrier has strong implications for clinical use in trauma and/or recurrent
compression neuropathies.
KEYWORDS
Extracellular matrix - nerve wrap - recurrent nerve compression
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Dean G SotereanosM.D.
Professor, Drexel University, School of Medicine, Department of Orthopaedic Surgery,
Hand and Upper Extremity Surgery, Allegheny General Hospital
1307 Federal Street, 2nd Floor, Pittsburgh, PA 15212
Email: dsoterea@hotmail.com