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Updated: Jul 28, 2026

Fabrication of the Composite Regenerative Peripheral Nerve Interface (C-RPNI) in the Adult Rat
Published on: February 25, 2020
Optimized mesh expansion of composite skin grafts in rats treated with direct current
C S Chu1, N P Matylevich, A T McManus
1U.S. Army Institute of Surgical Research, Fort Sam Houston, Texas 78234-6315, USA.
Background:
The purpose of this study was to determine the optimum autoepidermal and allodermal expansion ratio of each component of a meshed composite skin graft (MCSG) that would lead to successful healing.
Methods:
Male Sprague-Dawley rats were used as hosts of the MCSG and donors of autologous tissue. Male ACI rats were used as donors of allodermis. MCSGs with open meshed area (autoepidermal/allodermal) of 9:1/1.5:1, 9:1/3:1, 9:1/6:1, or 6:1/6:1 were applied to full-thickness skin defects and treated with a silver nylon dressing (SN) or SN with direct current (DC). Wound size, hair regrowth, and thickness of dermal layer were evaluated at 3 months.
Results:
MCSGs of 9:1/1.5:1, 9:1/3:1, and 6:1/6:1 mesh ratios healed completely within 3 months with no difference in wound size between SN dressing groups or DC-treated groups. Application of DC reduced MCSG contraction and stimulated regrowth of hair.
Conclusion:
Fresh autoepidermis can be expanded 6:1 on a 6:1 allodermis or 9:1 on a 3:1 allodermis and achieve successful wound healing.

