Literature DB >> 29451572

3D printed scaffolds with gradient porosity based on a cellulose nanocrystal hydrogel.

Sahar Sultan1, Aji P Mathew.   

Abstract

3-Dimensional (3D) printing provides a unique methodology for the customization of biomedical scaffolds with respect to size, shape, pore structure and pore orientation useful for tissue repair and regeneration. 3D printing was used to fabricate fully bio-based porous scaffolds of a double crosslinked interpenetrating polymer network (IPN) from a hydrogel ink of sodium alginate and gelatin (SA/G) reinforced with cellulose nanocrystals (CNCs). CNCs provided favorable rheological properties required for 3D printing. The 3D printed scaffolds were crosslinked sequentially via covalent and ionic reactions resulting in dimensionally stable hydrogel scaffolds with pore sizes of 80-2125 μm and nanoscaled pore wall roughness (visible from scanning electron microscopy) favorable for cell interaction. The 2D wide angle X-ray scattering studies showed that the nanocrystals orient preferably in the printing direction; the degree of orientation varied between 61-76%. The 3D printing pathways were optimised successfully to achieve 3-dimensional scaffolds (Z axis up to 20 mm) with uniform as well as gradient pore structures. This study demonstrates the potential of 3D printing in developing bio-based scaffolds with controlled pore sizes, gradient pore structures and alignment of nanocrystals for optimal tissue regeneration.

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Year:  2018        PMID: 29451572     DOI: 10.1039/c7nr08966j

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  17 in total

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Review 3.  Recent Progress in Development of Dressings Used for Diabetic Wounds with Special Emphasis on Scaffolds.

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Journal:  Biomed Res Int       Date:  2022-07-04       Impact factor: 3.246

4.  3D printed hydrogels with oxidized cellulose nanofibers and silk fibroin for the proliferation of lung epithelial stem cells.

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Journal:  Cellulose (Lond)       Date:  2020-10-26       Impact factor: 5.044

Review 5.  Towards sustainable production and utilization of plant-biomass-based nanomaterials: a review and analysis of recent developments.

Authors:  J Y Zhu; Umesh P Agarwal; Peter N Ciesielski; Michael E Himmel; Runan Gao; Yulin Deng; Maria Morits; Monika Österberg
Journal:  Biotechnol Biofuels       Date:  2021-05-06       Impact factor: 6.040

6.  Effect of Cu- and Zn-Doped Bioactive Glasses on the In Vitro Bioactivity, Mechanical and Degradation Behavior of Biodegradable PDLLA Scaffolds.

Authors:  Julian Bejarano; Aldo R Boccaccini; Cristian Covarrubias; Humberto Palza
Journal:  Materials (Basel)       Date:  2020-06-29       Impact factor: 3.623

7.  On Low-Concentration Inks Formulated by Nanocellulose Assisted with Gelatin Methacrylate (GelMA) for 3D Printing toward Wound Healing Application.

Authors:  Wenyang Xu; Binbin Zhang Molino; Fang Cheng; Paul J Molino; Zhilian Yue; Dandan Su; Xiaoju Wang; Stefan Willför; Chunlin Xu; Gordon G Wallace
Journal:  ACS Appl Mater Interfaces       Date:  2019-02-20       Impact factor: 9.229

8.  3D Propolis-Sodium Alginate Scaffolds: Influence on Structural Parameters, Release Mechanisms, Cell Cytotoxicity and Antibacterial Activity.

Authors:  Kubra Aranci; Muhammet Uzun; Sena Su; Sumeyye Cesur; Songul Ulag; Al Amin; Mehmet Mucahit Guncu; Burak Aksu; Sevgi Kolayli; Cem Bulent Ustundag; Jorge Carvalho Silva; Denisa Ficai; Anton Ficai; Oguzhan Gunduz
Journal:  Molecules       Date:  2020-11-02       Impact factor: 4.411

9.  3D Bio-Printability of Hybrid Pre-Crosslinked Hydrogels.

Authors:  Cartwright Nelson; Slesha Tuladhar; Loren Launen; Ahasan Habib
Journal:  Int J Mol Sci       Date:  2021-12-15       Impact factor: 5.923

10.  A study of TiO2 nanocrystal growth and environmental remediation capability of TiO2/CNC nanocomposites.

Authors:  Chengbo Zhan; Yanxiang Li; Priyanka R Sharma; Hongrui He; Sunil K Sharma; Ruifu Wang; Benjamin S Hsiao
Journal:  RSC Adv       Date:  2019-12-06       Impact factor: 4.036

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