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Multi-Dimensional Printing for Bone Tissue Engineering

delete2021-04-19
delete53
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OA
AI
M
Moyuan Qu
C
Canran Wang
X
Xingwu Zhou
A
Alberto Libanori
X
Xing Jiang
W
Weizhe Xu
S
Songsong Zhu
Q
Qianming Chen
W
Wujin Sun
A
Ali Khademhosseini *
DOI:10.1002/adhm.202001986delete
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Abstract

Abstract

En 中文
The development of 3D printing has significantly advanced the field of bone tissue engineering by enabling the fabrication of scaffolds that faithfully recapitulate desired mechanical properties and architectures. In addition, computer-based manufacturing relying on patient-derived medical images permits the fabrication of customized modules in a patient-specific manner. In addition to conventional 3D fabrication, progress in materials engineering has led to the development of 4D printing, allowing time-sensitive interventions such as programed therapeutics delivery and modulable mechanical features. Therapeutic interventions established via multi-dimensional engineering are expected to enhance the development of personalized treatment in various fields, including bone tissue regeneration. Here, recent studies utilizing 3D printed systems for bone tissue regeneration are summarized and advances in 4D printed systems are highlighted. Challenges and perspectives for the future development of multi-dimensional printed systems toward personalized bone regeneration are also discussed.
Keywords:
3D printing
4D printing
bone
drug delivery
tissue engineering
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Journal

Advanced Healthcare Materials cover
Advanced Healthcare Materials
IF:
9.6
Papers:
7.6K
Citations:
4.4W

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U
university of california los angeles
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Papers: 4.2W
Citations: 89
University of California System cover
University of California System
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Citations: 6.6K