Jiashing Yu
Publications
1 3D Scaffolds Fabricated by Microfluidic Device for Rat Cardiomyocytes Observation
Authors: Chih-Wei Chao, Jiashing Yu
Abstract:
To mimic the natural circumstances of cell growth in an organism, we present three-dimensional (3D) scaffolds fabricated by microfluidics for cultivation. This work investigates the cellular behaviors of rat cardiomyocytes in gelatin 3D scaffolds compared to those on 2D control, such as proliferation, viability and morphology. We found that the scaffolds may induce skeletal differentiation of H9c2 cells.
Keywords: Tissue Engineering, Microfluidic Device, H9c2
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2 The Influence of Alginate Microspheres Modified with DAT on the Proliferation and Adipogenic Differentiation of ASCs
Authors: Shin-Yi Mao, Jiashing Yu
Abstract:
Decellularized adipose tissue (DAT) has received lots of attention as biological scaffolds recently. DAT that extracted from the extracellular matrix (ECM) of adipose tissues holds great promise as a xenogeneic biomaterial for tissue engineering and regenerative medicine. In our study, 2-D DATsol film was fabricated to enhance cell adhesion, proliferation, and differentiation of ASCs in vitro. DAT was also used to modify alginate for improvement of cell adhesion. Alginate microspheres modified with DAT were prepared by Nisco. These microspheres could provide a highly supportive 3-D environment for ASCs. In our works, ASCs were immobilized in alginate microspheres modified with DAT to promoted cell adhesion and adipogenic differentiation. Accordingly, we hypothesize that tissue regeneration in vivo could be promoted with the aid of modified microspheres in future.Keywords: alginate, adipose stem cells, decellularize adipose tissue, microcarries
Procedia PDF Downloads 2921 3D Scaffolds Fabricated by Microfluidic Device for Rat Cardiomyocytes Observation
Authors: Chih-Wei Chao, Jiashing Yu
Abstract:
Microfluidic devices have recently emerged as promising tools for the fabrication of scaffolds for cell culture. To mimic the natural circumstances of organism for cells to grow, here we present three-dimensional (3D) scaffolds fabricated by microfluidics for cells cultivation. This work aims at investigating the behavior in terms of the viability and the proliferation capability of rat H9c2 cardiomyocytes in the gelatin 3D scaffolds by fluorescent images.Keywords: Tissue Engineering, Microfluidic Device, H9c2
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