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Acta BiomaterialiaVolume 59, 1 September 2017, Pages 243-256

Fibrin functionalization with synthetic adhesive ligands interacting with α6β1 integrin receptor enhance neurite outgrowth of embryonic stem cell-derived neural stem/progenitors(Article)

  • aINEB – Instituto de Engenharia Biomédica, Universidade do Porto, Portugal
  • bi3S – Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Portugal
  • cFaculdade de Engenharia, Universidade do Porto, Portugal
  • dISEP – Instituto Superior de Engenharia do Porto, Instituto Politécnico do Porto, Portugal
  • eNerve Regeneration Group, IBMC – Instituto de Biologia Molecular e Celular, Universidade do Porto, Portugal
  • fICBAS – Instituto de Ciências Biomédicas Abel Salazar, Universidade do Porto, Portugal

Abstract

To enhance fibrin hydrogel affinity towards pluripotent stem cell-derived neural stem/progenitor cells (NSPCs) and its capacity to support NSPC migration and neurite extension, we explored the tethering of synthetic peptides engaging integrin α6β1, a cell receptor enriched in NSPCs. Six α6β1 integrin ligands were tested for their ability to support integrin α6β1-mediated adhesion of embryonic stem cell-derived NSPCs (ES-NSPs) and sustain ES-NSPC viability, migration, and neuronal differentiation. Due to their better performance, peptides T1, HYD1, and A5G81 were immobilized into fibrin and functionalized gels characterized in terms of peptide binding efficiency, structure and viscoelastic properties. Tethering of T1 or HYD1 successfully enhanced cell outgrowth from ES-NSPC neurospheres (up to 2.4-fold increase), which exhibited a biphasic response to peptide concentration. Inhibition assays evidenced the involvement of α6β1 and α3β1 integrins in mediating radial outgrowth on T1-/HYD1-functionalized gels. Fibrin functionalization also promoted neurite extension of single ES-NSPCs in fibrin, without affecting cell proliferation and neuronal differentiation. Finally, HYD1-functionalized gels were found to provide a permissive environment for axonal regeneration, leading up to a 2.0-fold increase in neurite extension from rat dorsal root ganglia explants as compared to unmodified fibrin, and to significant improved locomotor function after spinal cord injury (complete transection), along with a trend toward a higher area positive for growth associated protein 43 (marker for axonal growth cone formation). Our results suggest that conjugation of α6β1 integrin-binding motifs is of interest to increase the biofunctionality of hydrogels used in 3D platforms for ES-NSPC culture and potentially, in matrix-assisted ES-NSPC transplantation. Statement of Significance Impact statement: The transplantation of NSPCs derived from pluripotent stem cells holds much promise for the treatment of central nervous system disorders. Moreover, the combinatorial use of biodegradable hydrogels with NSPCs was shown to contribute to the establishment of a more permissive environment for survival and integration of transplanted cells. In this study, fibrin hydrogels functionalized with a synthetic peptide engaging integrin α6β1 (HYD1) were shown to promote neurite extension of ES-NSPCs, which is fundamental for the formation of functional neuronal relay circuits after NSPC transplantation. Notably, HYD1-functionalized fibrin per se led to enhanced axonal growth ex vivo and to an improvement in locomotor function after implantation in a rat model of spinal cord injury. Conjugation of α6β1 integrin-binding motifs may therefore be of interest to confer bioactivity to NSPC hydrogel vehicles. © 2017 Acta Materialia Inc.

Author keywords

Cell outgrowthHydrogelNeural stem/progenitor cellsPeptide immobilizationα6β1 integrin

Indexed keywords

EMTREE drug terms:adhesive agentfibrinintegrin receptorligandsynthetic peptideunclassified drugvery late activation antigen 6very late activation antigen 6 receptorfibrinligand
EMTREE medical terms:animal cellArticleaxoncell adhesioncell migrationcell proliferationcontrolled studyembryonic stem cellgelhydrogelmousenerve cell differentiationnerve regenerationneural stem cellneuriteneurite outgrowthnonhumanpluripotent stem cellpriority journalprotein bindingprotein structureviscoelasticityanimalchemistrycytologyembryonic stem cellhumanmetabolismneural stem cellrattumor cell lineWistar rat
MeSH:AnimalsCell Line, TumorEmbryonic Stem CellsFibrinHumansIntegrin alpha6beta1LigandsMiceNeural Stem CellsNeuritesRatsRats, Wistar

Chemicals and CAS Registry Numbers:

fibrin, 9001-31-4;

Fibrin; Integrin alpha6beta1; Ligands

  • ISSN: 17427061
  • Source Type: Journal
  • Original language: English
  • DOI: 10.1016/j.actbio.2017.07.013
  • PubMed ID: 28694236
  • Document Type: Article
  • Publisher: Acta Materialia Inc

  Amaral, I.F.; INEB – Instituto de Engenharia Biomédica, Rua Alfredo Allen, 208, Porto, Portugal;
© Copyright 2018 Elsevier B.V., All rights reserved.

Cited by 3 documents

Loureiro, J. , Torres, A.L. , Neto, T.
Conjugation of the T1 sequence from CCN1 to fibrin hydrogels for therapeutic vascularization
(2019) Materials Science and Engineering C
Barros, D. , Parreira, P. , Furtado, J.
An affinity-based approach to engineer laminin-presenting cell instructive microenvironments
(2019) Biomaterials
Gong, L. , Cao, L. , Shen, Z.
Materials for Neural Differentiation, Trans-Differentiation, and Modeling of Neurological Disease
(2018) Advanced Materials
View details of all 3 citations
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