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https://hdl.handle.net/20.500.14094/0100487287
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2025-04-30
12:47 集計
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0100487287 (fulltext)
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4.23 MB
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メタデータID
0100487287
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open access
出版タイプ
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タイトル
Fabrication Method for Shape-Controlled 3D Tissue Using High-Porosity Porous Structure
著者
著者ID
A3395
研究者ID
1000000881418
KUID
https://kuid-rm-web.ofc.kobe-u.ac.jp/search/detail?systemId=ff7a53385b34ee78520e17560c007669
著者名
Ueno, Hidetaka
上野, 秀貴
ウエノ, ヒデタカ
所属機関名
未来医工学研究開発センター
著者名
Yamamura, Shohei
言語
English (英語)
収録物名
Bioengineering
巻(号)
11(2)
ページ
160
出版者
MDPI
刊行日
2024-02
公開日
2024-03-11
抄録
Shape-controlled 3D tissues resemble natural living tissues in human and animal bodies and are essential materials for developing and improving technologies in regenerative medicine, drug discovery, and biological robotics. In previous studies, shape-controlled 3D tissues were fabricated using scaffold structures or 3D bioprinting techniques. However, controlling the shape of 3D tissues without leaving non-natural materials inside the 3D tissue and efficiently fabricating them remains challenging. In this paper, we propose a novel method for fabricating shape-controlled 3D tissues free of non-natural materials using a flexible high-porosity porous structure (HPPS). The HPPS consisted of a micromesh with pore sizes of 14.87 ± 1.83 μm, lattice widths of 2.24 ± 0.10 μm, thicknesses of 9.96 ± 0.92 μm, porosity of 69.06 ± 3.30%, and an I-shaped microchamber of depth 555.26 ± 11.17 μm. U-87 human glioma cells were cultured in an I-shaped HPPS microchamber for 48 h. After cultivation, the 3D tissue was released within a few seconds while maintaining its I-shape. Specific chemicals, such as proteolytic enzymes, were not used. Moreover, the viability of the released cells composed of shape-controlled 3D tissues free of non-natural materials was above 90%. Therefore, the proposed fabrication method is recommended for shape-controlled 3D tissues free of non-natural materials without applying significant stresses to the cells.
キーワード
high-porosity porous structure
micromesh
SU-8
3D tissue
tissue engineering
カテゴリ
未来医工学研究開発センター
学術雑誌論文
権利
© 2024 by the authors. Licensee MDPI, Basel, Switzerland.
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license
関連情報
DOI
https://doi.org/10.3390/bioengineering11020160
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資源タイプ
journal article
eISSN
2306-5354
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