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Articles

Quantitative Evaluation of Fibroblast Migration on a Silk Fibroin Surface and TGFBI Gene Expression

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Pages 158-169 | Received 14 Nov 2011, Accepted 27 Jan 2012, Published online: 11 May 2012

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Dong Li, Chenmei Xia, Xia Chen, Qianqian Li, Jian Li & Xiaoqi Qian. (2022) Fabrication of novel ruthenium loaded silk fibroin nanomaterials for fingolimod release improved antitumor efficacy in hepatocellular carcinoma. Journal of Biomaterials Science, Polymer Edition 33:15, pages 1955-1972.
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Sushma Indrakumar, Akshat Joshi, Tapan Kumar Dash, Vivek Mishra, Bharat Tandon & Kaushik Chatterjee. (2023) Photopolymerized silk fibroin gel for advanced burn wound care. International Journal of Biological Macromolecules 233, pages 123569.
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Tomoko Hashimoto, Yuka Nakamura, Sachiro Kakinoki, Naoko Sano, Tsunenori Kameda, Yasushi Tamada, Tetsuji Yamaoka & Hiromichi Kurosu. (2022) Immobilization of Arg‐Gly‐Asp peptides on silk fibroin via Gly‐Ala‐Gly‐Ala‐Gly‐Ser sequences. Biotechnology Journal 18:2, pages 2200139.
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Rikako Hama, Derya Aytemiz, Kelvin O. Moseti, Tsunenori Kameda & Yasumoto Nakazawa. (2022) Silk Fibroin Conjugated with Heparin Promotes Epithelialization and Wound Healing. Polymers 14:17, pages 3582.
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Mana Yamano, Ryoko Hirose, Ping Ying Lye, Keiko Takaki, Rina Maruta, Mervyn Wing On Liew, Shinichi Sakurai, Hajime Mori & Eiji Kotani. (2022) Bioengineered Silkworm for Producing Cocoons with High Fibroin Content for Regenerated Fibroin Biomaterial-Based Applications. International Journal of Molecular Sciences 23:13, pages 7433.
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Tomoko Hashimoto, Yuka Nakamura, Yasushi Tamada, Hiromichi Kurosu & Tsunenori Kameda. (2020) The influence of thermal treatments on the secondary structure of silk fibroin scaffolds and their interaction with fibroblasts. PeerJ Materials Science 2, pages e8.
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Tomoko Hashimoto, Katsura Kojima & Yasushi Tamada. (2020) Higher Gene Expression Related to Wound Healing by Fibroblasts on Silk Fibroin Biomaterial than on Collagen. Molecules 25:8, pages 1939.
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Tomoko Hashimoto, Katsura Kojima & Yasushi Tamada. (2020) Gene expression advances skin reconstruction and wound repair better on silk fibroin-based materials than on collagen-based materials. Materialia 9, pages 100519.
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Shixin Zhu, JiaMin Wang & Ziling Sun. (2019) Observation of co-culturing cells on porous silk fibroin films. Bioinspired, Biomimetic and Nanobiomaterials 8:2, pages 109-114.
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Louise E. Smith, Christian Bryant, Marta Krasowska, Allison J. Cowin, Jason D. Whittle, Sheila MacNeil & Robert D. Short. (2016) Haptotatic Plasma Polymerized Surfaces for Rapid Tissue Regeneration and Wound Healing. ACS Applied Materials & Interfaces 8:48, pages 32675-32687.
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Hidetoshi Teramoto, Ken-ichi Nakajima & Katsura Kojima. (2016) Azide-Incorporated Clickable Silk Fibroin Materials with the Ability to Photopattern. ACS Biomaterials Science & Engineering 2:2, pages 251-258.
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Dohiko Terada, Yoshiyuki Yokoyama, Shinya Hattori, Hisatoshi Kobayashi & Yasushi Tamada. (2016) The outermost surface properties of silk fibroin films reflect ethanol-treatment conditions used in biomaterial preparation. Materials Science and Engineering: C 58, pages 119-126.
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Yasushi Tamada & Katsura Kojima. 2015. Handbook of Smart Textiles. Handbook of Smart Textiles 209 224 .
Akihisa OtakaKazuya TakahashiYuji S. TakedaYusuke KambeYoshihiko KuwanaYasushi TamadaNaohide Tomita. (2014) Quantification of Cell Co-Migration Occurrences During Cell Aggregation on Fibroin Substrates. Tissue Engineering Part C: Methods 20:8, pages 671-680.
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Yasushi Tamada & Katsura Kojima. 2014. Handbook of Smart Textiles. Handbook of Smart Textiles 1 13 .

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