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Effects of surface patterning and topography on the cellular functions of tissue engineered scaffolds with special reference to 3D bioprinting

Authors
Adhikari, JaideepRoy, AvinavaChanda, AmitGouripriya, D. A.Thomas, SabuGhosh, ManojitKim, JinkuSaha, Prosenjit
Issue Date
19-Dec-2022
Publisher
ROYAL SOC CHEMISTRY
Citation
BIOMATERIALS SCIENCE, v.11, no.4, pp.1236 - 1269
Journal Title
BIOMATERIALS SCIENCE
Volume
11
Number
4
Start Page
1236
End Page
1269
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/30818
DOI
10.1039/d2bm01499h
ISSN
2047-4830
Abstract
The extracellular matrix (ECM) of the tissue organ exhibits a topography from the nano to micrometer range, and the design of scaffolds has been inspired by the host environment. Modern bioprinting aims to replicate the host tissue environment to mimic the native physiological functions. A detailed discussion on the topographical features controlling cell attachment, proliferation, migration, differentiation, and the effect of geometrical design on the wettability and mechanical properties of the scaffold are presented in this review. Moreover, geometrical pattern-mediated stiffness and pore arrangement variations for guiding cell functions have also been discussed. This review also covers the application of designed patterns, gradients, or topographic modulation on 3D bioprinted structures in fabricating the anisotropic features. Finally, this review accounts for the tissue-specific requirements that can be adopted for topography-motivated enhancement of cellular functions during the fabrication process with a special thrust on bioprinting.
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