Literature DB >> 21878398

Mechanical testing of electrospun PCL fibers.

F Croisier1, A-S Duwez, C Jérôme, A F Léonard, K O van der Werf, P J Dijkstra, M L Bennink.   

Abstract

Poly(ε-caprolactone) (PCL) fibers ranging from 250 to 700 nm in diameter were produced by electrospinning a polymer tetrahydrofuran/N,N-dimethylformamide solution. The mechanical properties of the fibrous scaffolds and individual fibers were measured by different methods. The Young's moduli of the scaffolds were determined using macro-tensile testing equipment, whereas single fibers were mechanically tested using a nanoscale three-point bending method, based on atomic force microscopy and force spectroscopy analyses. The modulus obtained by tensile-testing eight different fiber scaffolds was 3.8±0.8 MPa. Assuming that PCL fibers can be described by the bending model of isotropic materials, a Young's modulus of 3.7±0.7 GPa was determined for single fibers. The difference of three orders of magnitude observed in the moduli of fiber scaffolds vs. single fibers can be explained by the lacunar and random structure of the scaffolds.
Copyright © 2011 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21878398     DOI: 10.1016/j.actbio.2011.08.015

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


  36 in total

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Authors:  Luis Diaz-Gomez; Carmen Alvarez-Lorenzo; Angel Concheiro; Maite Silva; Fernando Dominguez; Faheem A Sheikh; Travis Cantu; Raj Desai; Vanessa L Garcia; Javier Macossay
Journal:  Mater Sci Eng C Mater Biol Appl       Date:  2014-03-31       Impact factor: 7.328

Review 2.  Nanofiber Scaffold-Based Tissue-Engineered Retinal Pigment Epithelium to Treat Degenerative Eye Diseases.

Authors:  Nathan A Hotaling; Vladimir Khristov; Qin Wan; Ruchi Sharma; Balendu Shekhar Jha; Mostafa Lotfi; Arvydas Maminishkis; Carl G Simon; Kapil Bharti
Journal:  J Ocul Pharmacol Ther       Date:  2016-04-25       Impact factor: 2.671

3.  Fibrous hyaluronic acid hydrogels that direct MSC chondrogenesis through mechanical and adhesive cues.

Authors:  Iris L Kim; Sudhir Khetan; Brendon M Baker; Christopher S Chen; Jason A Burdick
Journal:  Biomaterials       Date:  2013-04-24       Impact factor: 12.479

4.  Starch/PCL composite nanofibers by co-axial electrospinning technique for biomedical applications.

Authors:  B Komur; F Bayrak; N Ekren; M S Eroglu; F N Oktar; Z A Sinirlioglu; S Yucel; O Guler; O Gunduz
Journal:  Biomed Eng Online       Date:  2017-03-29       Impact factor: 2.819

5.  A Millimeter Scale Flexural Testing System for Measuring the Mechanical Properties of Marine Sponge Spicules.

Authors:  Michael A Monn; Jarod Ferreira; Jianzhe Yang; Haneesh Kesari
Journal:  J Vis Exp       Date:  2017-10-11       Impact factor: 1.355

Review 6.  Polycaprolactone as biomaterial for bone scaffolds: Review of literature.

Authors:  Ruby Dwivedi; Sumit Kumar; Rahul Pandey; Aman Mahajan; Deepti Nandana; Dhirendra S Katti; Divya Mehrotra
Journal:  J Oral Biol Craniofac Res       Date:  2019-11-05

7.  Electrospun poly(N-isopropyl acrylamide)/poly(caprolactone) fibers for the generation of anisotropic cell sheets.

Authors:  Alicia C B Allen; Elissa Barone; Cody O Keefe Crosby; Laura J Suggs; Janet Zoldan
Journal:  Biomater Sci       Date:  2017-07-25       Impact factor: 6.843

8.  Investigation of nanoyarn preparation by modified electrospinning setup.

Authors:  Ariana S Levitt; Chelsea E Knittel; Richard Vallett; Michael Koerner; Genevieve Dion; Caroline L Schauer
Journal:  J Appl Polym Sci       Date:  2017-01-16       Impact factor: 3.125

9.  Effects of Hydrogel-Fiber on Cystic Cavity after Spinal Cord Injury.

Authors:  Xijie Zhou; Jian Du; Xiaofeng Jia
Journal:  Conf Proc IEEE Eng Med Biol Soc       Date:  2019-07

10.  Electrospun cartilage-derived matrix scaffolds for cartilage tissue engineering.

Authors:  N William Garrigues; Dianne Little; Johannah Sanchez-Adams; David S Ruch; Farshid Guilak
Journal:  J Biomed Mater Res A       Date:  2014-01-09       Impact factor: 4.396

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