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Efficient calculation of fluid-induced wall shear stress within tissue engineering scaffolds by an empirical model

Authors :
Husham Ahmed
Matthew Bedding-Tyrrell
Davide Deganello
Zhidao Xia
Yi Xiong
Feihu Zhao
Source :
Medicine in Novel Technology and Devices, Vol 18, Iss , Pp 100223- (2023)
Publication Year :
2023
Publisher :
Elsevier, 2023.

Abstract

Mechanical stimulation, such as fluid-induced wall shear stress (WSS), is known that can influence the cellular behaviours. Therefore, in some tissue engineering experiments in vitro, mechanical stimulation is applied via bioreactors to the cells in cell culturing to study cell physiology and pathology. In 3D cell culturing, porous scaffolds are used for housing the cells. It is known that the scaffold porous geometries can influence the scaffold permeability and internal WSS in a bioreactor (such as perfusion bioreactor). To calculate the WSS generated on cells within scaffolds, usually computational fluid dynamics (CFD) simulation is needed. However, the limitations of the computational method for WSS calculation are: (i) the high time cost of the CFD simulation (in particular for the highly irregular geometries); (ii) accessibility to the CFD model for some cell culturing experimentalists due to the knowledge gap. To address these limitations, this study aims to develop an empirical model for calculating the WSS based on scaffold permeability. This model can allow the tissue engineers to efficiently calculate the WSS generated within the scaffold and/or determine the bioreactor loading without performing the computational simulations.

Details

Language :
English
ISSN :
25900935
Volume :
18
Issue :
100223-
Database :
Directory of Open Access Journals
Journal :
Medicine in Novel Technology and Devices
Publication Type :
Academic Journal
Accession number :
edsdoj.1d46e5e9773d41b59ebf1c5d21b3d463
Document Type :
article
Full Text :
https://doi.org/10.1016/j.medntd.2023.100223