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High-Resolution Patterned Cellular Constructs by Droplet-Based 3D Printing

delete2017-08-01
delete175
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OA
AI
A
Alexander Graham
S
Sam N. Olof
M
Madeline Burke
J
James P. K. Armstrong
E
Ellina Mikhailova
J
James Nicholson
S
Stuart J. Box
F
Francis G. Szele
A
Adam W. Perriman
H
Hagan Bayley *
DOI:10.1038/s41598-017-06358-xdelete
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摘要

摘要

En 中文
Bioprinting is an emerging technique for the fabrication of living tissues that allows cells to be arranged in predetermined three-dimensional (3D) architectures. However, to date, there are limited examples of bioprinted constructs containing multiple cell types patterned at high-resolution. Here we present a low-cost process that employs 3D printing of aqueous droplets containing mammalian cells to produce robust, patterned constructs in oil, which were reproducibly transferred to culture medium. Human embryonic kidney (HEK) cells and ovine mesenchymal stem cells (oMSCs) were printed at tissue-relevant densities (10(7) cells mL(-1)) and a high droplet resolution of 1 nL. High-resolution 3D geometries were printed with features of <= 200 mu m; these included an arborised cell junction, a diagonal-plane junction and an osteochondral interface. The printed cells showed high viability (90% on average) and HEK cells within the printed structures were shown to proliferate under culture conditions. Significantly, a five-week tissue engineering study demonstrated that printed oMSCs could be differentiated down the chondrogenic lineage to generate cartilage-like structures containing type II collagen.
Keyword:
MESENCHYMAL STEM-CELLS
TISSUE
FABRICATION
DENSITY
SKIN
PROTEINS
EPITAXY
NUMBER
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期刊

Scientific Reports 封面图
Scientific Reports
IF:
3.9
论文数:
28.0W
被引数:
83.5W

机构

U
university of oxford
学者数:
9.8W
论文数: 8.6W
被引数: 137
U
University of Bristol
学者数:
3.1W
论文数: 3.0W
被引数: 5.3W
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