Ultra-Low-Cost 3D Bioprinting: Modification and Application of an Off-the-Shelf Desktop 3D-Printer for Biofabrication

被引:59
作者
Kahl, Melanie [1 ]
Gertig, Markus [1 ]
Hoyer, Phillipp [1 ]
Friedrich, Oliver [1 ]
Gilbert, Daniel F. [1 ]
机构
[1] Friedrich Alexander Univ Erlangen Nurnberg, Inst Med Biotechnol, Erlangen, Germany
关键词
ultra-low-cost bioprinting technology; alginate and alginate/gelatin-based hydrogel; HEK293(YFPI152L) cells; rapid prototyping; 3D desktop printing; BIOMEDICAL-RESEARCH; ALGINATE; TISSUE; PLATFORM; MATRIX; CELLS;
D O I
10.3389/fbioe.2019.00184
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
3D bioprinting has become a versatile and powerful method in tissue engineering and regenerative medicine and is increasingly adapted by other disciplines due to its tremendous potential beyond its typical applications. However, commercially available 3D bioprinting systems are typically expensive circumventing the broad implementation, including laboratories in low-resource settings. To address the limitations of conventional and commercially available technology, we developed a 3D bioprinter by modification of an off-the-shelf 3D desktop printer, that can be installed within a single day, is of handy size to fit into a standard laminar flow hood, customizable, ultra-low cost and thus, affordable to a broad range of research labs, or educational institutions. We evaluate accuracy and reproducibility of printing results using alginate and alginate/gelatin-hydrogels and demonstrate its potential for biomedical use by printing of various two-and three-dimensional cell-free and mammalian cell-laden objects using recombinant HEKYFP cells, stably expressing yellow fluorescent protein (YFP) as a model system and high-content imaging. We further provide a parts list and 3D design files in STL and STEP format for reconstructing the device. A time-lapse video of the custom-built device during operation is available at https://vimeo.com/274482794.
引用
收藏
页数:12
相关论文
共 38 条
[1]   Chondrocyte-alginate constructs with or without TGF-β1 produces superior extracellular matrix expression than monolayer cultures [J].
Ab-Rahim, Sharaniza ;
Selvaratnam, Lakshmi ;
Raghavendran, Hanumantha Rao Balaji ;
Kamarul, Tunku .
MOLECULAR AND CELLULAR BIOCHEMISTRY, 2013, 376 (1-2) :11-20
[2]   Osteogenic behavior of alginate encapsulated bone marrow stromal cells: An in vitro study [J].
Abbah, S. A. ;
Lu, W. W. ;
Chan, D. ;
Cheung, K. M. C. ;
Liu, W. G. ;
Zhao, F. ;
Li, Z. Y. ;
Leong, J. C. Y. ;
Luk, K. D. K. .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2008, 19 (05) :2113-2119
[3]   Additive Biomanufacturing: An Advanced Approach for Periodontal Tissue Regeneration [J].
Carter, Sarah-Sophia D. ;
Costa, Pedro F. ;
Vaquette, Cedryck ;
Ivanovski, Saso ;
Hutmacher, Dietmar W. ;
Malda, Jos .
ANNALS OF BIOMEDICAL ENGINEERING, 2017, 45 (01) :12-22
[4]   Sustained regeneration of high-volume adipose tissue for breast reconstruction using computer aided design and biomanufacturing [J].
Chhaya, Mohit Prashant ;
Melchels, Ferry Petrus Wilhelmus ;
Holzapfel, Boris Michael ;
Baldwin, Jeremy Grant ;
Hutmacher, Dietmar Werner .
BIOMATERIALS, 2015, 52 :551-560
[5]  
Conrad K.L., 2000, P 8 MED C CONTR AUT
[6]   3D printed lattices as an activation and expansion platform for T cell therapy [J].
Delalat, Bahman ;
Harding, Frances ;
Gundsambuu, Batjargal ;
De-Juan-Pardo, Elena M. ;
Wunner, Felix M. ;
Wille, Marie-Luise ;
Jasieniak, Marek ;
Malatesta, Kristen A. L. ;
Griesser, Hans J. ;
Simula, Antonio ;
Hutmacher, Dietmar W. ;
Voelcker, Nicolas H. ;
Barry, Simon C. .
BIOMATERIALS, 2017, 140 :58-68
[7]   3D Bioprinting of heterogeneous aortic valve conduits with alginate/gelatin hydrogels [J].
Duan, Bin ;
Hockaday, Laura A. ;
Kang, Kevin H. ;
Butcher, Jonathan T. .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2013, 101 (05) :1255-1264
[8]   Three-Dimensional Bioprinting Materials with Potential Application in Preprosthetic Surgery [J].
Fahmy, Mina D. ;
Jazayeri, Hossein E. ;
Razavi, Mehdi ;
Masri, Radi ;
Tayebi, Lobat .
JOURNAL OF PROSTHODONTICS-IMPLANT ESTHETIC AND RECONSTRUCTIVE DENTISTRY, 2016, 25 (04) :310-318
[9]   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)
[10]   Feasibility of Bioprinting with a Modified Desktop 3D Printer [J].
Goldstein, Todd A. ;
Epstein, Casey J. ;
Schwartz, John ;
Krush, Alex ;
Lagalante, Dan J. ;
Mercadante, Kevin P. ;
Zeltsman, David ;
Smith, Lee P. ;
Grande, Daniel A. .
TISSUE ENGINEERING PART C-METHODS, 2016, 22 (12) :1071-1076