共 52 条
Printing Structurally Anisotropic Biocompatible Fibrillar Hydrogel for Guided Cell Alignment
被引:11
作者:

Chen, Zhengkun
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Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada

Khuu, Nancy
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Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada

Xu, Fei
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Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada

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Yakavets, Ilya
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Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada

Rakhshani, Faeze
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Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada

Morozova, Sofia
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h-index: 0
机构:
Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada
NE Bauman Moscow State Tech Univ, 5-1 2nd Baumanskaya St, Moscow 105005, Russia Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada

Kumacheva, Eugenia
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h-index: 0
机构:
Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada
Univ Toronto, Dept Chem Engn & Appl Chem, Toronto, ON M5S 3E5, Canada
Univ Toronto, Inst Biomed Engn, Toronto, ON M5S 3G9, Canada Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada
机构:
[1] Univ Toronto, Dept Chem, Toronto, ON M5S 3H6, Canada
[2] Univ Toronto, Dept Mech & Ind Engn, Toronto, ON M5S 3G8, Canada
[3] NE Bauman Moscow State Tech Univ, 5-1 2nd Baumanskaya St, Moscow 105005, Russia
[4] Univ Toronto, Dept Chem Engn & Appl Chem, Toronto, ON M5S 3E5, Canada
[5] Univ Toronto, Inst Biomed Engn, Toronto, ON M5S 3G9, Canada
来源:
基金:
加拿大自然科学与工程研究理事会;
关键词:
anisotropy;
cellulose nanofiber;
3D printing;
hydrogels;
alignment;
CELLULOSE NANOFIBERS;
STRAIN-RATE;
NANOCELLULOSE;
SCAFFOLD;
D O I:
10.3390/gels8110685
中图分类号:
O63 [高分子化学(高聚物)];
学科分类号:
070305 ;
080501 ;
081704 ;
摘要:
Many fibrous biological tissues exhibit structural anisotropy due to the alignment of fibers in the extracellular matrix. To study the impact of such anisotropy on cell proliferation, orientation, and mobility, it is important to recapitulate and achieve control over the structure of man-made hydrogel scaffolds for cell culture. Here, we report a chemically crosslinked fibrous hydrogel due to the reaction between aldehyde-modified cellulose nanofibers and gelatin. We explored two ways to induce structural anisotropy in this gel by extruding the hydrogel precursor through two different printheads. The cellulose nanofibers in the hydrogel ink underwent shear-induced alignment during extrusion and retained it in the chemically crosslinked hydrogel. The degree of anisotropy was controlled by the ink composition and extrusion flow rate. The structural anisotropy of the hydrogel extruded through a nozzle affected the orientation of human dermal fibroblasts that were either seeded on the hydrogel surface or encapsulated in the extruded hydrogel. The reported straightforward approach to constructing fibrillar hydrogel scaffolds with structural anisotropy can be used in studies of the biological impact of tissue anisotropy.
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页数:15
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