The Roles of Hypoxia in theIn VitroEngineering of Tissues
Top Cited Papers
- 1 September 2007
- journal article
- review article
- Published by Mary Ann Liebert Inc in Tissue Engineering
- Vol. 13 (9), 2153-2162
- https://doi.org/10.1089/ten.2006.0417
Abstract
Oxygen is a potent modulator of cell function and wound repair in vivo. The lack of oxygen (hypoxia) can create a potentially lethal environment and limit cellular respiration and growth or, alternatively, enhance the production of the specific extracellular matrix components and increase angiogenesis through the hypoxia-inducible factor-1 pathway. For the in vitro generation of clinically relevant tissue-engineered grafts, these divergent actions of hypoxia should be addressed. Diffusion through culture medium and tissue typically limits oxygen transport in vitro, leading to hypoxic regions and limiting the viable tissue thickness. Approaches to overcoming the transport limitations include culture with bioreactors, scaffolds with artificial microvasculature, oxygen carriers, and hyperbaric oxygen chambers. As an alternate approach, angiogenesis after implantation may be enhanced by incorporating endothelial cells, genetically modified cells, or specific factors (including vascular endothelial growth factor) into the scaffold or exposing the graft to a hypoxic environment just before implantation. Better understanding of the roles of hypoxia will help prevent common problems and exploit potential benefits of hypoxia in engineered tissues.Keywords
This publication has 98 references indexed in Scilit:
- Hyperbaric oxygen stimulates epidermal reconstruction in human skin equivalentsWound Repair and Regeneration, 2007
- Hypoxia induces expression of connective tissue growth factor in scleroderma skin fibroblastsClinical and Experimental Immunology, 2006
- Hepatocyte Function in a Radial-flow Bioreactor Using a Perfluorocarbon Oxygen Carrier.Artificial Organs, 2005
- Effect of Low Oxygen Tension on Tissue-Engineered Cartilage Construct Development in the Concentric Cylinder BioreactorTissue Engineering, 2004
- Cellular and developmental control of O2 homeostasis by hypoxia-inducible factor 1αGenes & Development, 1998
- Hypoxia increases human keratinocyte motility on connective tissue.Journal of Clinical Investigation, 1997
- Differential effects of oxygen on human dermal fibroblasts: acute versus chronic hypoxiaWound Repair and Regeneration, 1996
- The Crystal Structure of a High Oxygen Affinity Species of Haemoglobin (Bar-headed Goose Haemoglobin in the Oxy Form)Journal of Molecular Biology, 1996
- Hypoxia Upregulates the Synthesis of TGF-β1 by Human Dermal FibroblastsJournal of Investigative Dermatology, 1991
- Stoicheiometry and kinetics of the prolyl 4-hydroxylase partial reactionBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1984