Literature DB >> 28301131

Bioinspired Nanofeatured Substrates: Suitable Environment for Bone Regeneration.

H Rammal1,2, M Dubus1,2, L Aubert1,3, F Reffuveille1,3, D Laurent-Maquin1,2, C Terryn4, P Schaaf5,6, H Alem7, G Francius8, F Quilès8, S C Gangloff1,3, F Boulmedais6, H Kerdjoudj1,2.   

Abstract

Bone mimicking coatings provide a complex microenvironment in which material, through its inherent properties (such as nanostructure and composition), affects the commitment of stem cells into bone lineage and the production of bone tissue regulating factors required for bone healing and regeneration. Herein, a bioactive mineral/biopolymer composite made of calcium phosphate/chitosan and hyaluronic acid (CaP-CHI-HA) was elaborated using a versatile simultaneous spray coating of interacting species. The resulting CaP-CHI-HA coating was mainly constituted of bioactive, carbonated and crystalline hydroxyapatite with 277 ± 98 nm of roughness, 1 μm of thickness, and 2.3 ± 1 GPa of stiffness. After five days of culture, CaP-CHI-HA suggested a synergistic effect of intrinsic biophysical features and biopolymers on stem cell mechanobiology and nuclear organization, leading to the expression of an early osteoblast-like phenotype and the production of bone tissue regulating factors such as osteoprotegerin and vascular endothelial growth factor. More interestingly, amalgamation with biopolymers conferred to the mineral a bacterial antiadhesive property. These significant data shed light on the potential regenerative application of CaP-CHI-HA bioinspired coating in providing a suitable environment for stem cell bone regeneration and an ideal strategy to prevent implant-associated infections.

Entities:  

Keywords:  bioinspired coating; bone regeneration; human stem cells; mechanobiology; nanomedicine; stem cell differentiation

Mesh:

Substances:

Year:  2017        PMID: 28301131     DOI: 10.1021/acsami.7b01665

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  5 in total

1.  Tailoring weight ratio of PCL/PLA in electrospun three-dimensional nanofibrous scaffolds and the effect on osteogenic differentiation of stem cells.

Authors:  Tao Xu; Qingqing Yao; Jacob M Miszuk; Hanna J Sanyour; Zhongkui Hong; Hongli Sun; Hao Fong
Journal:  Colloids Surf B Biointerfaces       Date:  2018-07-06       Impact factor: 5.268

2.  Combining Calcium Phosphates with Polysaccharides: A Bone-Inspired Material Modulating Monocyte/Macrophage Early Inflammatory Response.

Authors:  Hassan Rammal; Camille Bour; Marie Dubus; Laura Entz; Léa Aubert; Sophie C Gangloff; Sandra Audonnet; Nicolae B Bercu; Fouzia Boulmedais; Cedric Mauprivez; Halima Kerdjoudj
Journal:  Int J Mol Sci       Date:  2018-11-03       Impact factor: 5.923

3.  Osteoinductive Material to Fine-Tune Paracrine Crosstalk of Mesenchymal Stem Cells With Endothelial Cells and Osteoblasts.

Authors:  Hassan Rammal; Laura Entz; Marie Dubus; Aurélie Moniot; Nicolae B Bercu; Johan Sergheraert; Sophie C Gangloff; Cédric Mauprivez; Halima Kerdjoudj
Journal:  Front Bioeng Biotechnol       Date:  2019-10-09

4.  Pellet-Based Fused Filament Fabrication (FFF)-Derived Process for the Development of Polylactic Acid/Hydroxyapatite Scaffolds Dedicated to Bone Regeneration.

Authors:  Marie Bayart; Marie Dubus; Sébastien Charlon; Halima Kerdjoudj; Nicolas Baleine; Samira Benali; Jean-Marie Raquez; Jérémie Soulestin
Journal:  Materials (Basel)       Date:  2022-08-16       Impact factor: 3.748

Review 5.  General consensus on multimodal functions and validation analysis of perinatal derivatives for regenerative medicine applications.

Authors:  Michela Pozzobon; Stefania D'Agostino; Maria G Roubelakis; Anna Cargnoni; Roberto Gramignoli; Susanne Wolbank; Florelle Gindraux; Sveva Bollini; Halima Kerdjoudj; Mathilde Fenelon; Roberta Di Pietro; Mariangela Basile; Veronika Borutinskaitė; Roberta Piva; Andreina Schoeberlein; Guenther Eissner; Bernd Giebel; Peter Ponsaerts
Journal:  Front Bioeng Biotechnol       Date:  2022-10-03
  5 in total

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