Computational fluid dynamics for improved bioreactor design and 3D culture


Autoria(s): Hutmacher, Dietmar W.; Singh, Harmeet
Data(s)

01/04/2008

Resumo

The complex relationship between the hydrodynamic environment and surrounding tissues directly impacts on the design and production of clinically useful grafts and implants. Tissue engineers have generally seen bioreactors as 'black boxes' within which tissue engineering constructs (TECs) are cultured. It is accepted that a more detailed description of fluid mechanics and nutrient transport within process equipment can be achieved by using computational fluid dynamics (CFD) technology. This review discusses applications of CFD for tissue engineering-related bioreactors -- fluid flow processes have direct implications on cellular responses such as attachment, migration and proliferation. We conclude that CFD should be seen as an invaluable tool for analyzing and visualizing the impact of fluidic forces and stresses on cells and TECs.

Identificador

http://eprints.qut.edu.au/31432/

Publicador

Elsevier Ltd.

Relação

DOI:10.1016/j.tibtech.2007.11.012

Hutmacher, Dietmar W. & Singh, Harmeet (2008) Computational fluid dynamics for improved bioreactor design and 3D culture. Trends in Biotechnology, 26(4), pp. 166-172.

Direitos

Copyright 2008 Elsevier Ltd.

Fonte

Faculty of Built Environment and Engineering; Institute of Health and Biomedical Innovation; School of Engineering Systems

Palavras-Chave #060106 Cellular Interactions (incl. Adhesion Matrix Cell Wall) #060103 Cell Development Proliferation and Death #080110 Simulation and Modelling #Cell Adhesion #Cell Proliferation #Computer Simulation #Tissue Engineering #Bioreactors
Tipo

Journal Article