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Native Collagen: Electrospinning of Pure, Cross-Linker-Free, Self-Supported Membrane

  • Dounia Dems
  • , Julien Rodrigues Da Silva
  • , Christophe Hélary
  • , Frank Wien
  • , Marion Marchand
  • , Nicolas Debons
  • , Laurent Muller
  • , Yong Chen
  • , Marie Claire Schanne-Klein
  • , Christel Laberty-Robert
  • , Natacha Krins
  • , Carole Aimé
  • Sorbonne Université
  • Synchrotron SOLEIL
  • Université PSL
  • PSL research University & IPSL

Research output: Contribution to journalArticlepeer-review

31 Citations (Scopus)

Abstract

Rebuilding biological environments is crucial when facing the challenges of fundamental and biomedical research. Thus, preserving the native state of biomolecules is essential. We use electrospinning (ES), which is an extremely promising method for the preparation of fibrillar membranes to mimic the ECM of native tissues. Here, we report for the first time (1) the ES of pure and native collagen into a self-supported membrane in absence of cross-linker and polymer support, (2) the preservation of the membrane integrity in hydrated media in absence of cross-linker, and (3) the preservation of the native molecular structure and recovery of the hierarchical assembly of collagen. We use a multiscale approach to characterize collagen native structure at the molecular level using circular dichroism, and to investigate collagen hierarchical organization within the self-supported membrane using a combination of multiphoton and electron microscopies. Finally, we show that the membranes are perfectly suited for cell adhesion and spreading, making them very promising candidates for the development of biomaterials and finding applications in biomedical research.

Original languageEnglish
Pages (from-to)2948-2957
Number of pages10
JournalACS Applied Bio Materials
Volume3
Issue number5
DOIs
Publication statusPublished - 18 May 2020

Keywords

  • collagen
  • electrospinning
  • extra-cellular matrix
  • hierarchical organization
  • second harmonic generation microscopy
  • tissue engineering

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