Issue 12, 2021

Bicyclic RGD peptides enhance nerve growth in synthetic PEG-based Anisogels

Abstract

Nerve regeneration scaffolds often consist of soft hydrogels modified with extracellular matrix (ECM) proteins or fragments, as well as linear and cyclic peptides. One of the commonly used integrin-mediated cell adhesive peptide sequences is Arg-Gly-Asp (RGD). Despite its straightforward coupling mechanisms to artificial extracellular matrix (aECM) constructs, linear RGD peptides suffer from low stability towards degradation and lack integrin selectivity. Cyclization of RGD improves the affinity towards integrin subtypes but lacks selectivity. In this study, a new class of short bicyclic peptides with RGD in a cyclic loop and ‘random screened’ tri-amino acid peptide sequences in the second loop is investigated as a biochemical cue for cell growth inside three-dimensional (3D) synthetic poly(ethylene glycol) (PEG)-based Anisogels. These peptides impart high integrin affinity and selectivity towards either αvβ3 or α5β1 integrin subunits. Enzymatic conjugation of such bicyclic peptides to the PEG backbone enables the formulation of an aECM hydrogel that supports nerve growth. Furthermore, different proteolytic cleavable moieties are incorporated and compared to promote cell migration and proliferation, resulting in enhanced cell growth with different degradable peptide crosslinkers. Mouse fibroblasts and primary nerve cells from embryonic chick dorsal root ganglions (DRGs) show superior growth in bicyclic RGD peptide conjugated gels selective towards αvβ3 or α5β1, compared to monocyclic or linear RGD peptides, with a slight preference to αvβ3 selective bicyclic peptides in the case of nerve growth. Synthetic Anisogels, modified with bicyclic RGD peptides and containing short aligned, magneto-responsive fibers, show oriented DRG outgrowth parallel to the fibers. This report shows the potential of PEG hydrogels coupled with bicyclic RGD peptides as an aECM model and paves the way for a new class of integrin selective biomolecules for cell growth and nerve regeneration.

Graphical abstract: Bicyclic RGD peptides enhance nerve growth in synthetic PEG-based Anisogels

Supplementary files

Article information

Article type
Paper
Submitted
02 dek 2020
Accepted
16 fev 2021
First published
16 mar 2021
This article is Open Access
Creative Commons BY-NC license

Biomater. Sci., 2021,9, 4329-4342

Bicyclic RGD peptides enhance nerve growth in synthetic PEG-based Anisogels

S. Vedaraman, D. Bernhagen, T. Haraszti, C. Licht, A. Castro Nava, A. Omidinia Anarkoli, P. Timmerman and L. De Laporte, Biomater. Sci., 2021, 9, 4329 DOI: 10.1039/D0BM02051F

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