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3D fabrication of biomaterial constructs for tissue engineering

Research Project

Project/Area Number 17F17722
Research Category

Grant-in-Aid for JSPS Fellows

Allocation TypeSingle-year Grants
Section外国
Research Field Biofunction/Bioprocess
Research InstitutionYokohama National University

Principal Investigator

福田 淳二  横浜国立大学, 大学院工学研究院, 教授 (80431675)

Co-Investigator(Kenkyū-buntansha) ZHANG BINBIN  横浜国立大学, 工学(系)研究科(研究院), 外国人特別研究員
Project Period (FY) 2017-11-10 – 2020-03-31
Project Status Completed (Fiscal Year 2019)
Budget Amount *help
¥2,200,000 (Direct Cost: ¥2,200,000)
Fiscal Year 2019: ¥100,000 (Direct Cost: ¥100,000)
Fiscal Year 2018: ¥900,000 (Direct Cost: ¥900,000)
Fiscal Year 2017: ¥1,200,000 (Direct Cost: ¥1,200,000)
KeywordsBioprinter / hydrogel / tissue engineering / 毛細血管 / 3Dプリンタ / バイオインク / bioprinter / bioink / electrochemistry
Outline of Annual Research Achievements

The capability and protocol of a lab-made 3D bioprinter were tested. Cellulose-based materials have been shown to have great potential for biomedical applications in the construction of extracellular matrix-mimicking scaffolds owing to their intrinsic characteristics, such as biocompatibility and tunable 3D architecture. Herein the nanocellulose was processed from wood-based cellulose to generate nano-fibers with 100nm in length and 5nm in diameter. Using the 3D bioprinter, nanocellulose scaffolds were successfully printed. Fibroblast 3T3 cells were cultured with the printed nanocellulose scaffolds, and cells showed good adhesion and proliferation behavior.
Gelatin methacrylate (GelMA) has been widely used as scaffold material for 3D bioprinting. However, one of the obstacles in using GelMA for 3D bioprinting is the photo-crosslinking speed. Without fast photo-crosslinking speed, GelMA cannot form structures with desired resolution during 3D bioprinting. Key to solve this challenge is to increase the speed of GelMA bio-ink photo-crosslinking reactions. It is shown that instead of methacrylation of gelatin, its modification with the acrylate functional group can demonstrate a higher photo-crosslinking rate. We demonstrated that the modification efficiency increased to 90% with 4:1 reagent ratio, compared to 67% for the degree of GelMA modification. The synthesized GelAc was then examined with human umbilical vein endothelial cells, which showed tubular network formation after 5 days culture, demonstrating good biocompatibility of GelAc hydrogel.

Research Progress Status

令和元年度が最終年度であるため、記入しない。

Strategy for Future Research Activity

令和元年度が最終年度であるため、記入しない。

Report

(3 results)
  • 2019 Annual Research Report
  • 2018 Annual Research Report
  • 2017 Annual Research Report
  • Research Products

    (10 results)

All 2019 2018 Other

All Int'l Joint Research (2 results) Journal Article (2 results) (of which Int'l Joint Research: 2 results,  Peer Reviewed: 2 results,  Open Access: 2 results) Presentation (6 results) (of which Int'l Joint Research: 1 results)

  • [Int'l Joint Research] University of Wollongong(オーストラリア)

    • Related Report
      2019 Annual Research Report
  • [Int'l Joint Research] University of Wollongong(Australia)

    • Related Report
      2017 Annual Research Report
  • [Journal Article] ynergic effects of oxygen supply and antioxidants on pancreatic β-cell spheroids2019

    • Author(s)
      D. Myasnikova, T. Osaki, K. Onishi, T. Kageyama, B. Zhang, J. Fukuda
    • Journal Title

      Scientific Reports

      Volume: 9 Issue: 1 Pages: 1802-1802

    • DOI

      10.1038/s41598-018-38011-6

    • Related Report
      2019 Annual Research Report
    • Peer Reviewed / Open Access / Int'l Joint Research
  • [Journal Article] Engineering of perfusable double-layered vascular structures using contraction of spheroid-embedded hydrogel and electrochemical cell detachment2019

    • Author(s)
      Shimazu Yuka、Zhang Binbin、Yue Zhilian、Wallace Gordon G.、Fukuda Junji
    • Journal Title

      Journal of Bioscience and Bioengineering

      Volume: 127 Issue: 1 Pages: 114-120

    • DOI

      10.1016/j.jbiosc.2018.07.006

    • NAID

      120006539323

    • Related Report
      2019 Annual Research Report
    • Peer Reviewed / Open Access / Int'l Joint Research
  • [Presentation] ハイドロゲルの変形を利用した四次元組織構築法の確立2019

    • Author(s)
      小澤聖奈、景山達斗、Binbin Zhang、福田淳二
    • Organizer
      日本動物細胞工学会 2019
    • Related Report
      2019 Annual Research Report
  • [Presentation] 細胞形態モニタリング装置とこれを用いた細胞分化能の予測2019

    • Author(s)
      増本美波、大崎達哉、景山達斗、Binbin Zhang、木村博之、坂根勲、高橋晋太郎、瀧本真一、福田淳二
    • Organizer
      日本動物細胞工学会 2019
    • Related Report
      2019 Annual Research Report
  • [Presentation] 細胞形態モニタリング装置と細胞分化機能の予測2019

    • Author(s)
      増本美波、大崎達哉、景山達斗、Binbin Zhang、木村博之、坂根勲、高橋晋太郎、瀧本真一、福田淳二
    • Organizer
      日本動物実験代替法学会第32回
    • Related Report
      2019 Annual Research Report
  • [Presentation] 4D tissue engineering using hydrogel swelling and shrinkage2019

    • Author(s)
      Sena Ozawa, Binbin Zhang, Junji Fukuda
    • Organizer
      APCChE2019
    • Related Report
      2019 Annual Research Report
  • [Presentation] Minami Masumoto, Tatsuya Osaki, Tatsuto Kageyama, Binbin Zhang, Isao Sakane, Shintaro Takahashi, Shinichi Takimoto & Junji Fukuda2019

    • Author(s)
      Cell Morphology Monitoring during Culture for Daily Cell Quality Control
    • Organizer
      TERMIS-AM 2019
    • Related Report
      2019 Annual Research Report
  • [Presentation] Ascorbic Acid-2-phosphate protective effect against ROS on pancreatic β-cell spheroids2018

    • Author(s)
      Dina Myasnikova, Binbin Zhang, Junji Fukuda
    • Organizer
      TERMIS-World Congress 2018
    • Related Report
      2018 Annual Research Report
    • Int'l Joint Research

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Published: 2017-11-13   Modified: 2024-03-26  

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