Engineered 3D Polymer and Hydrogel Microenvironments for Cell Culture Applications

被引:80
作者
Fan, Daniel [1 ]
Staufer, Urs [1 ]
Accardo, Angelo [1 ]
机构
[1] Delft Univ Technol, Dept Precis & Microsyst Engn, Mekelweg 2, NL-2628 CD Delft, Netherlands
来源
BIOENGINEERING-BASEL | 2019年 / 6卷 / 04期
关键词
3D microenvironment; additive manufacturing; biomaterials; cell culture; tissue engineering; polymer; hydrogel;
D O I
10.3390/bioengineering6040113
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The realization of biomimetic microenvironments for cell biology applications such as organ-on-chip, in vitro drug screening, and tissue engineering is one of the most fascinating research areas in the field of bioengineering. The continuous evolution of additive manufacturing techniques provides the tools to engineer these architectures at different scales. Moreover, it is now possible to tailor their biomechanical and topological properties while taking inspiration from the characteristics of the extracellular matrix, the three-dimensional scaffold in which cells proliferate, migrate, and differentiate. In such context, there is therefore a continuous quest for synthetic and nature-derived composite materials that must hold biocompatible, biodegradable, bioactive features and also be compatible with the envisioned fabrication strategy. The structure of the current review is intended to provide to both micro-engineers and cell biologists a comparative overview of the characteristics, advantages, and drawbacks of the major 3D printing techniques, the most promising biomaterials candidates, and the trade-offs that must be considered in order to replicate the properties of natural microenvironments.
引用
收藏
页数:43
相关论文
共 351 条
[91]   Fabrication of hybrid nanocomposite scaffolds by incorporating ligand-free hydroxyapatite nanoparticles into biodegradable polymer scaffolds and release studies [J].
Farkas, Balazs ;
Rodio, Marina ;
Romano, Ilaria ;
Diaspro, Alberto ;
Intartaglia, Romuald ;
Beke, Szabolcs .
BEILSTEIN JOURNAL OF NANOTECHNOLOGY, 2015, 6 :2217-2223
[92]   Four-order stiffness variation of laser-fabricated photopolymer biodegradable scaffolds by laser parameter modulation [J].
Farkas, Balazs ;
Romano, Ilaria ;
Ceseracciu, Luca ;
Diaspro, Alberto ;
Brandi, Fernando ;
Beke, Szabolcs .
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2015, 55 :14-21
[93]   Bioprinting of human pluripotent stem cells and their directed differentiation into hepatocyte-like cells for the generation of mini-livers in 3D [J].
Faulkner-Jones, Alan ;
Fyfe, Catherine ;
Cornelissen, Dirk-Jan ;
Gardner, John ;
King, Jason ;
Courtney, Aidan ;
Shu, Wenmiao .
BIOFABRICATION, 2015, 7 (04)
[94]   Hydrogels as extracellular matrices for skeletal tissue engineering: state-of-the-art and novel application in organ printing [J].
Fedorovich, Natalja E. ;
Alblas, Jacqueline ;
de Wijn, Joost R. ;
Hennink, Wim E. ;
Verbout, Ab J. ;
Dhert, Wouter J. A. .
TISSUE ENGINEERING, 2007, 13 (08) :1905-1925
[95]   In vitro degradation and mechanical properties of PLA-PCL copolymer unit cell scaffolds generated by two-photon polymerization [J].
Felfel, R. M. ;
Poocza, Leander ;
Gimeno-Fabra, Miquel ;
Milde, Tobias ;
Hildebrand, Gerhard ;
Ahmed, Ifty ;
Scotchford, Colin ;
Sottile, Virginie ;
Grant, David M. ;
Liefeith, Klaus .
BIOMEDICAL MATERIALS, 2016, 11 (01)
[96]   A Multimaterial Scaffold With Tunable Properties: Toward Bone Tissue Repair [J].
Feng, Pei ;
Wu, Ping ;
Gao, Chengde ;
Yang, Youwen ;
Guo, Wang ;
Yang, Wenjing ;
Shuai, Cijun .
ADVANCED SCIENCE, 2018, 5 (06)
[97]   Lignin-coated cellulose nanocrystal filled methacrylate composites prepared via 3D stereolithography printing: Mechanical reinforcement and thermal stabilization [J].
Feng, Xinhao ;
Yang, Zhaozhe ;
Chmely, Stephen ;
Wang, Qingwen ;
Wang, Siqun ;
Xie, Yanjun .
CARBOHYDRATE POLYMERS, 2017, 169 :272-281
[98]   Influence of 3D printed porous architecture on mesenchymal stem cell enrichment and differentiation [J].
Ferlin, Kimberly M. ;
Prendergast, Margaret E. ;
Miller, Makenzie L. ;
Kaplan, David S. ;
Fisher, John P. .
ACTA BIOMATERIALIA, 2016, 32 :161-169
[99]   Patient-specific meniscus prototype based on 3D bioprinting of human cell-laden scaffold [J].
Filardo, G. ;
Petretta, M. ;
Cavallo, C. ;
Roseti, L. ;
Durante, S. ;
Albisinni, U. ;
Grigolo, B. .
BONE & JOINT RESEARCH, 2019, 8 (02) :101-106
[100]   Protein patterning by microcontact printing using pyramidal PDMS stamps [J].
Filipponi, Luisa ;
Livingston, Peter ;
Kaspar, Ondrej ;
Tokarova, Viola ;
Nicolau, Dan V. .
BIOMEDICAL MICRODEVICES, 2016, 18 (01) :1-7