4D Biofabrication: Materials, Methods, and Applications

被引:78
|
作者
Ionov, Leonid [1 ]
机构
[1] Univ Bayreuth, Fac Engn Sci, Univ Str 30, D-95440 Bayreuth, Germany
关键词
4D; biofabrication; bioprinting; CROSS-LINKABLE POLYMER; SELF-ROLLED POLYMER; TISSUE; SCAFFOLDS; HYDROGELS; BIOMATERIALS; DELIVERY; DESIGN; CELL; FABRICATION;
D O I
10.1002/adhm.201800412
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The mission of regenerative medicine is the development of methods to regrow, repair, or replace damaged or diseased cells, organs, or tissues. 3D bioprinting techniques are one of the most promising approaches for engineering the design of artificial tissues. Current 3D bioprinting technologies possess, however, several intrinsic limitations. 4D biofabrication, a recently developed technology with the embedded ability of shape transformation upon response to intrinsic and/or external stimuli, may solve challenges of 3D bioprinting as well as more accurately mimic the dynamics of the native tissues. This article covers recent advances in 4D biofabrication. It gives a detailed picture of used materials and technologies, provides critical comparisons of methods, discusses possibilities and limitations of different 4D biofabrication technologies, and gives examples of applications.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] 4D Printing and Stimuli-responsive Materials in Biomedical Applications
    Lui, Yuan Siang
    Sow, Wan Ting
    Tan, Lay Poh
    Wu, Yunlong
    Lai, Yuekun
    Li, Huaqiong
    [J]. ACTA BIOMATERIALIA, 2019, 92 (19-36) : 19 - 36
  • [22] Direct Ink Writing Based 4D Printing of Materials and Their Applications
    Wan, Xue
    Luo, Lan
    Liu, Yanju
    Leng, Jinsong
    [J]. ADVANCED SCIENCE, 2020, 7 (16)
  • [23] 4D Printing: Materials, Technologies, and Future Applications in the Biomedical Field
    Bajpai, Ankur
    Baigent, Anna
    Raghav, Sakshika
    Bradaigh, Conchur O.
    Koutsos, Vasileios
    Radacsi, Norbert
    [J]. SUSTAINABILITY, 2020, 12 (24) : 1 - 32
  • [24] Recent Advances in 4D Printing of Advanced Materials and Structures for Functional Applications
    Wan, Xue
    Xiao, Zhongmin
    Tian, Yujia
    Chen, Mei
    Liu, Feng
    Wang, Dong
    Liu, Yong
    Bartolo, Paulo Jorge Da Silva
    Yan, Chunze
    Shi, Yusheng
    Zhao, Ruike Renee
    Qi, Hang Jerry
    Zhou, Kun
    [J]. ADVANCED MATERIALS, 2024, 36 (34)
  • [25] 4D Printing of Electroactive Materials
    Chen, Andrew Y.
    Pegg, Elizabeth
    Chen, Ailin
    Jin, Zeqing
    Gu, Grace X.
    [J]. ADVANCED INTELLIGENT SYSTEMS, 2021, 3 (12)
  • [26] Advances in 4D printing of liquid crystalline elastomers: materials, techniques, and applications
    Guan, Zhecun
    Wang, Ling
    Bae, Jinhye
    [J]. MATERIALS HORIZONS, 2022, 9 (07) : 1825 - 1849
  • [27] Review of 4D printing materials and reinforced composites: Behaviors, applications and challenges
    Alshahrani, Hassan A.
    [J]. JOURNAL OF SCIENCE-ADVANCED MATERIALS AND DEVICES, 2021, 6 (02): : 167 - 185
  • [28] 4D attosecond imaging with free electrons: Diffraction methods and potential applications
    Baum, Peter
    Zewail, Ahmed H.
    [J]. CHEMICAL PHYSICS, 2009, 366 (1-3) : 2 - 8
  • [29] 3D and 4D Printing of Polymer Nanocomposite Materials: Processes, Applications, and Challenges
    不详
    [J]. JOURNAL OF PRINT AND MEDIA TECHNOLOGY RESEARCH, 2019, 8 (04): : 246 - 246
  • [30] Heart applications of 4D flow
    Corrias, Giuseppe
    Cocco, Daniele
    Suri, Jasjit S.
    Meloni, Luigi
    Cademartiri, Filippo
    Saba, Luca
    [J]. CARDIOVASCULAR DIAGNOSIS AND THERAPY, 2020, 10 (04) : 1140 - 1149