Template-Enabled Biofabrication of Thick 3D Tissues with Patterned Perfusable Macrochannels

被引:21
作者
Davoodi, Elham [1 ,2 ,3 ,4 ]
Montazerian, Hossein [2 ,3 ,4 ]
Zhianmanesh, Masoud [5 ]
Abbasgholizadeh, Reza [4 ]
Haghniaz, Reihaneh [4 ]
Baidya, Avijit [6 ]
Pourmohammadali, Homeyra [7 ]
Annabi, Nasim [6 ]
Weiss, Paul S. [2 ,3 ,8 ,9 ]
Toyserkani, Ehsan [1 ]
Khademhosseini, Ali [4 ]
机构
[1] Univ Waterloo, Mech & Mechatron Engn Dept, Multiscale Addit Mfg Lab, 200 Univ Ave West, Waterloo, ON N2L 3G1, Canada
[2] Univ Calif Los Angeles, Dept Bioengn, Los Angeles, CA 90095 USA
[3] Univ Calif Los Angeles, Calif NanoSyst Inst, Los Angeles, CA 90095 USA
[4] Terasaki Inst Biomed Innovat, Los Angeles, CA 90024 USA
[5] Univ Sydney, Sch Biomed Engn, Sydney, NSW 2006, Australia
[6] Univ Calif Los Angeles, Dept Chem & Biomol Engn, Los Angeles, CA 90095 USA
[7] Univ Waterloo, Dept Syst Design Engn, 200 Univ Ave West, Waterloo, ON N2L 3G1, Canada
[8] Univ Calif Los Angeles, Dept Chem & Biochem, Los Angeles, CA 90095 USA
[9] Univ Calif Los Angeles, Dept Mat Sci & Engn, Los Angeles, CA 90095 USA
基金
美国国家卫生研究院; 加拿大自然科学与工程研究理事会;
关键词
3D bioprinting; additive manufacturing; biofabrication; cell-laden hydrogels; gelatin methacryloyl; GELATIN; SCAFFOLDS; PERMEABILITY; ARCHITECTURE; FABRICATION; HYDROGELS; DESIGN;
D O I
10.1002/adhm.202102123
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Interconnected pathways in 3D bioartificial organs are essential to retaining cell activity in thick functional 3D tissues. 3D bioprinting methods have been widely explored in biofabrication of functionally patterned tissues; however, these methods are costly and confined to thin tissue layers due to poor control of low-viscosity bioinks. Here, cell-laden hydrogels that could be precisely patterned via water-soluble gelatin templates are constructed by economical extrusion 3D printed plastic templates. Tortuous co-continuous plastic networks, designed based on triply periodic minimal surfaces (TPMS), serve as a sacrificial pattern to shape the secondary sacrificial gelatin templates. These templates are eventually used to form cell-encapsulated gelatin methacryloyl (GelMA) hydrogel scaffolds patterned with the complex interconnected pathways. The proposed fabrication process is compatible with photo-crosslinkable hydrogels wherein prepolymer casting enables incorporation of high cell populations with high viability. The cell-laden hydrogel constructs are characterized by robust mechanical behavior. In vivo studies demonstrate a superior cell ingrowth into the highly permeable constructs compared to the bulk hydrogels. Perfusable complex interconnected networks within cell-encapsulated hydrogels may assist in engineering thick and functional tissue constructs through the permeable internal channels for efficient cellular activities in vivo.
引用
收藏
页数:12
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