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Erschienen in: Artificial Life and Robotics 2/2017

23.12.2016 | Original Article

Fabrication of micro-gelatin fiber utilizing coacervation method

verfasst von: Takafumi Arai, Ryuichiro Tanaka, Katsuhisa Sakaguchi, Shinjiro Umezu

Erschienen in: Artificial Life and Robotics | Ausgabe 2/2017

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Abstract

Biotechnology has drastically been advanced by the development of iPS and ES cells, which are representative forms induced pluripotent stem cells. In the micro/nano bio field, the development of cells and Taylor-made medicine for a potential treatment of incurable diseases has been a center of attention. The melting point of gelatin is between 25 and 33 °C, and the sol–gel transition occurs in low temperature. This makes the deformation of this useful biomaterial easy. The examples of gelatin fiber applications are suture threads, blood vessel prosthesis, cell-growth-based materials, filter materials, and many others. Because the cell size differs depending on the species and applications, it is essential to fabricate gelatin fibers of different diameters. In this paper, we have developed a fabrication method for gelatin fibers the coacervation method. We fabricated narrow gelatin fibers having a diameter over 10 μm.

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Metadaten
Titel
Fabrication of micro-gelatin fiber utilizing coacervation method
verfasst von
Takafumi Arai
Ryuichiro Tanaka
Katsuhisa Sakaguchi
Shinjiro Umezu
Publikationsdatum
23.12.2016
Verlag
Springer Japan
Erschienen in
Artificial Life and Robotics / Ausgabe 2/2017
Print ISSN: 1433-5298
Elektronische ISSN: 1614-7456
DOI
https://doi.org/10.1007/s10015-016-0344-z

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