Literature DB >> 17577633

Production of electrospun gelatin nanofiber by water-based co-solvent approach.

Ju-Ha Song1, Hyoun-Ee Kim, Hae-Won Kim.   

Abstract

In this study, gelatin, was successfully electrospun from a newly developed water-based co-solvent composed of ethyl acetate and acetic acid in water. Since natural polymers including gelatin exhibit limited solubility in water, toxic or highly acidic solvents are normally used to dissolve them for electrospinning. Instead of using those solvents, we used ethyl acetate in concert with acetic acid in water, and investigated the beneficial effect of its use in terms of the spinnability of the nanofiber and the acidity of the solvent. The replacement of acetic acid with ethyl acetate was observed to improve the spinnability of the nanofiber by reducing the surface tension of the solution as well as to increase the pH of the solvent significantly. The optimal composition of the co-solvent was found to correspond to a ratio of ethyl acetate to acetic acid of 2:3. Under this solvent condition, the gelatin could be dissolved at concentrations of up to approximately 11 wt% and electrospun successfully to produce nanofibers with various diameters (47-145 nm on average) depending on the gelatin concentration. The water-based co-solvent method proposed herein may be useful for generating other nanofibrous natural polymers as well as being applicable in delivery systems for bioactive molecules within the nanofiber matrices.

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Year:  2007        PMID: 17577633     DOI: 10.1007/s10856-007-3169-4

Source DB:  PubMed          Journal:  J Mater Sci Mater Med        ISSN: 0957-4530            Impact factor:   3.896


  8 in total

Review 1.  Designing materials for biology and medicine.

Authors:  Robert Langer; David A Tirrell
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3.  Electrospun protein fibers as matrices for tissue engineering.

Authors:  Mengyan Li; Mark J Mondrinos; Milind R Gandhi; Frank K Ko; Anthony S Weiss; Peter I Lelkes
Journal:  Biomaterials       Date:  2005-10       Impact factor: 12.479

4.  A modular and supramolecular approach to bioactive scaffolds for tissue engineering.

Authors:  Patricia Y W Dankers; Martin C Harmsen; Linda A Brouwer; Marja J A van Luyn; E W Meijer
Journal:  Nat Mater       Date:  2005-06-19       Impact factor: 43.841

5.  Electrospinning of collagen nanofibers.

Authors:  Jamil A Matthews; Gary E Wnek; David G Simpson; Gary L Bowlin
Journal:  Biomacromolecules       Date:  2002 Mar-Apr       Impact factor: 6.988

6.  Engineered collagen-PEO nanofibers and fabrics.

Authors:  L Huang; K Nagapudi; R P Apkarian; E L Chaikof
Journal:  J Biomater Sci Polym Ed       Date:  2001       Impact factor: 3.517

7.  Electrospinning of gelatin fibers and gelatin/PCL composite fibrous scaffolds.

Authors:  Yanzhong Zhang; Hongwei Ouyang; Chwee Teck Lim; Seeram Ramakrishna; Zheng-Ming Huang
Journal:  J Biomed Mater Res B Appl Biomater       Date:  2005-01-15       Impact factor: 3.368

8.  Electrospinning of chitosan solutions in acetic acid with poly(ethylene oxide).

Authors:  Bin Duan; Cunhai Dong; Xiaoyan Yuan; Kangde Yao
Journal:  J Biomater Sci Polym Ed       Date:  2004       Impact factor: 3.517

  8 in total
  16 in total

1.  Electrospun fibrous web of collagen-apatite precipitated nanocomposite for bone regeneration.

Authors:  Ju-Ha Song; Hyoun-Ee Kim; Hae-Won Kim
Journal:  J Mater Sci Mater Med       Date:  2008-03-25       Impact factor: 3.896

2.  Novel electrospun polyurethane/gelatin composite meshes for vascular grafts.

Authors:  Nicola Detta; Cesare Errico; Dinuccio Dinucci; Dario Puppi; David A Clarke; Gwendolen C Reilly; Federica Chiellini
Journal:  J Mater Sci Mater Med       Date:  2010-02-05       Impact factor: 3.896

3.  Electrospinning jets and nanofibrous structures.

Authors:  Koyal Garg; Gary L Bowlin
Journal:  Biomicrofluidics       Date:  2011-03-30       Impact factor: 2.800

4.  Mechanical characterization of electrospun gelatin scaffolds cross-linked by glucose.

Authors:  Kaido Siimon; Hele Siimon; Martin Järvekülg
Journal:  J Mater Sci Mater Med       Date:  2015-01-13       Impact factor: 3.896

5.  Synthesis and characterization of PLGA/collagen composite scaffolds as skin substitute produced by electrospinning through two different approaches.

Authors:  Ali Reza Sadeghi-Avalshahr; Mohammad Khorsand-Ghayeni; Samira Nokhasteh; Amir Mahdi Molavi; Hojjat Naderi-Meshkin
Journal:  J Mater Sci Mater Med       Date:  2016-12-19       Impact factor: 3.896

6.  Fabrication of a Multiplexed Artificial Cellular MicroEnvironment Array.

Authors:  Yasumasa Mashimo; Momoko Yoshioka; Yumie Tokunaga; Christopher Fockenberg; Shiho Terada; Yoshie Koyama; Teiko Shibata-Seki; Koki Yoshimoto; Risako Sakai; Hayase Hakariya; Li Liu; Toshihiro Akaike; Eiry Kobatake; Siew-Eng How; Motonari Uesugi; Yong Chen; Ken-Ichiro Kamei
Journal:  J Vis Exp       Date:  2018-09-07       Impact factor: 1.355

7.  Polymer nanofibrous structures: Fabrication, biofunctionalization, and cell interactions.

Authors:  Vince Beachley; Xuejun Wen
Journal:  Prog Polym Sci       Date:  2010-07-01       Impact factor: 29.190

8.  Advanced Drug Delivery Modulation via Hybrid Nanofibers Enhances Stem Cell Differentiation.

Authors:  Jeffrey Luo; Letao Yang; Sy-Tsong Dean Chueng; Brian Conley; Christopher Rathnam; Ki-Bum Lee
Journal:  ACS Appl Mater Interfaces       Date:  2022-07-21       Impact factor: 10.383

Review 9.  Electrospun silk biomaterial scaffolds for regenerative medicine.

Authors:  Xiaohui Zhang; Michaela R Reagan; David L Kaplan
Journal:  Adv Drug Deliv Rev       Date:  2009-07-28       Impact factor: 15.470

10.  Nanofibrous membrane of collagen-polycaprolactone for cell growth and tissue regeneration.

Authors:  Jae-Jun Lee; Hye-Sun Yu; Seok-Jung Hong; Ishik Jeong; Jun-Hyeog Jang; Hae-Won Kim
Journal:  J Mater Sci Mater Med       Date:  2009-04-14       Impact factor: 3.896

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