Literature DB >> 24821141

Characterization of dielectrophoresis-aligned nanofibrous silk fibroin-chitosan scaffold and its interactions with endothelial cells for tissue engineering applications.

Lina W Dunne1, Tejaswi Iyyanki1, Justin Hubenak1, Anshu B Mathur2.   

Abstract

Aligned three-dimensional nanofibrous silk fibroin-chitosan (eSFCS) scaffolds were fabricated using dielectrophoresis (DEP) by investigating the effects of alternating current frequency, the presence of ions, the SF:CS ratio and the post-DEP freezing temperature. Scaffolds were characterized with polarized light microscopy to analyze SF polymer chain alignment, atomic force microscopy (AFM) to measure the apparent elastic modulus, and scanning electron microscopy and AFM to analyze scaffold topography. The interaction of human umbilical vein endothelial cells (HUVECs) with eSFCS scaffolds was assessed using immunostaining to assess cell patterning and AFM to measure the apparent elastic modulus of the cells. The eSFCS (50:50) samples prepared at 10MHz with NaCl had the highest percentage of aligned area as compared to other conditions. As DEP frequency increased from 100kHz to 10MHz, fibril sizes decreased significantly. eSFCS (50:50) scaffolds fabricated at 10MHz in the presence of 5mM NaCl had a fibril size of 77.96±4.69nm and an apparent elastic modulus of 39.9±22.4kPa. HUVECs on eSFCS scaffolds formed aligned and branched capillary-like vascular structures. The elastic modulus of HUVEC cultured on eSFCS was 6.36±2.37kPa. DEP is a potential tool for fabrication of SFCS scaffolds with aligned nanofibrous structures that can guide vasculature in tissue engineering and repair.
Copyright © 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Alignment; Cell–substrate interaction; Dielectrophoresis; Nanofiber; Silk fibroin–chitosan scaffolds

Mesh:

Substances:

Year:  2014        PMID: 24821141      PMCID: PMC4086749          DOI: 10.1016/j.actbio.2014.05.005

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  26 in total

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4.  Endothelial cell alignment on cyclically-stretched silicone surfaces.

Authors:  M Moretti; A Prina-Mello; A J Reid; V Barron; P J Prendergast
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5.  Enhancement of In Vitro Capillary Tube Formation by Substrate Nanotopography.

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8.  Perichondrium directed cartilage formation in silk fibroin and chitosan blend scaffolds for tracheal transplantation.

Authors:  Mengqing Zang; Qixu Zhang; Greg Davis; George Huang; Mona Jaffari; Carmen N Ríos; Vishal Gupta; Peirong Yu; Anshu B Mathur
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Authors:  Andrea S Gobin; Charles E Butler; Anshu B Mathur
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  8 in total

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2.  Modulating Insulin Fibrillation Using Engineered B-Chains with Mutated C-Termini.

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3.  Simulation of ECM with Silk and Chitosan Nanocomposite Materials.

Authors:  Z Z Ding; J Ma; W He; Z L Ge; Q Lu; D L Kaplan
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4.  Oriented matrix promotes directional tubulogenesis.

Authors:  Patricia A Soucy; Maria Hoh; Will Heinz; Jan Hoh; Lewis Romer
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5.  Characterization of Silk Fibroin/Chitosan 3D Porous Scaffold and In Vitro Cytology.

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Review 6.  Emerging biomedical applications of nano-chitins and nano-chitosans obtained via advanced eco-friendly technologies from marine resources.

Authors:  Riccardo A A Muzzarelli; Mohamad El Mehtedi; Monica Mattioli-Belmonte
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7.  Experimental Study on Effects of Adipose-Derived Stem Cell-Seeded Silk Fibroin Chitosan Film on Wound Healing of a Diabetic Rat Model.

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  8 in total

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