Publication: Comparison of Decellularization Protocols to Generate Peripheral Nerve Grafts: A Study on Rat Sciatic Nerves.
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Identifiers
Date
2021-02-24
Authors
El Soury, Marwa
Garcia-Garcia, Oscar Dario
Moretti, Matteo
Perroteau, Isabelle
Raimondo, Stefania
Lovati, Arianna Barbara
Carriel, Víctor
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
MDPI AG
Abstract
In critical nerve gap repair, decellularized nerve allografts are considered a promising tissue engineering strategy that can provide superior regeneration results compared to nerve conduits. Decellularized nerves offer a well-conserved extracellular matrix component that has proven to play an important role in supporting axonal guiding and peripheral nerve regeneration. Up to now, the known decellularized techniques are time and effort consuming. The present study, performed on rat sciatic nerves, aims at investigating a novel nerve decellularization protocol able to combine an effective decellularization in short time with a good preservation of the extracellular matrix component. To do this, a decellularization protocol proven to be efficient for tendons (DN-P1) was compared with a decellularization protocol specifically developed for nerves (DN-P2). The outcomes of both the decellularization protocols were assessed by a series of in vitro evaluations, including qualitative and quantitative histological and immunohistochemical analyses, DNA quantification, SEM and TEM ultrastructural analyses, mechanical testing, and viability assay. The overall results showed that DN-P1 could provide promising results if tested in vivo, as the in vitro characterization demonstrated that DN-P1 conserved a better ultrastructure and ECM components compared to DN-P2. Most importantly, DN-P1 was shown to be highly biocompatible, supporting a greater number of viable metabolically active cells.
Description
MeSH Terms
Allografts
Animals
Cell Separation
Extracellular Matrix
Female
Nerve Regeneration
Rats
Rats, Wistar
Sciatic Nerve
Tissue Engineering
Tissue Scaffolds
Animals
Cell Separation
Extracellular Matrix
Female
Nerve Regeneration
Rats
Rats, Wistar
Sciatic Nerve
Tissue Engineering
Tissue Scaffolds
DeCS Terms
Aloinjertos
Andamios del tejido
Ingeniería de tejidos
Matriz extracelular
Nervio Ciático
Ratas
Ratas Wistar
Regeneración nerviosa
Separación celular
Andamios del tejido
Ingeniería de tejidos
Matriz extracelular
Nervio Ciático
Ratas
Ratas Wistar
Regeneración nerviosa
Separación celular
CIE Terms
Keywords
acellular, decellularization, extracellular matrix, orthopedic trauma, peripheral nerves, regeneration
Citation
El Soury M, García-García ÓD, Moretti M, Perroteau I, Raimondo S, Lovati AB, et al. Decellularization Protocols to Generate Peripheral Nerve Grafts: A Study on Rat Sciatic Nerves. Int J Mol Sci. 2021 Feb 27;22(5):2389.