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4D spatiotemporal modulation of biomolecules distribution in anisotropic corrugated microwrinkles via electrically manipulated microcapsules within hierarchical hydrogel for spinal cord regeneration.

Authors :
Chiang, Min-Yu
Cheng, Hung-Wei
Lo, Yu-Chih
Wang, Wei-Chun
Chang, Shwu-Jen
Cheng, Chu-Hsun
Lin, Yu-Chang
Lu, Huai-En
Sue, Ming-Wen
Tsou, Nien-Ti
Lo, Yu-Chun
Li, Ssu-Ju
Kuo, Chao-Hung
Chen, You-Yin
Huang, Wei-Chen
Chen, San-Yuan
Source :
Biomaterials. Apr2021, Vol. 271, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

Although traditional 3D scaffolds or biomimetic hydrogels have been used for tissue engineering and regenerative medicine, soft tissue microenvironment usually has a highly anisotropic structure and a dynamically controllable deformation with various biomolecule distribution. In this study, we developed a hierarchical hybrid gelatin methacrylate-microcapsule hydrogel (HGMH) with Neurotrophin-3(NT-3)-loaded PLGA microcapsules to fabricate anisotropic structure with patterned NT-3 distribution (demonstrated as striped and triangular patterns) by dielectrophoresis (DEP). The HGMH provides a dynamic biomimetic sinuate-microwrinkles change with NT-3 spatial gradient and 2-stage time-dependent distribution, which was further simulated using a 3D finite element model. As demonstrated, in comparison with striped-patterned hydrogel, the triangular-patterned HGMH with highly anisotropic array of microcapsules exhibits remarkably spatial NT-3 gradient distributions that can not only guide neural stem cells (NSCs) migration but also facilitate spinal cord injury regeneration. This approach to construct hierarchical 4D hydrogel system via an electromicrofluidic platform demonstrates the potential for building various biomimetic soft scaffolds in vitro tailed to real soft tissues. [Display omitted] [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01429612
Volume :
271
Database :
Academic Search Index
Journal :
Biomaterials
Publication Type :
Academic Journal
Accession number :
149712763
Full Text :
https://doi.org/10.1016/j.biomaterials.2021.120762