Prospects for use of microgravity‐based bioreactors to study three‐dimensional host—tumor interactions in human neoplasia
- 1 March 1993
- journal article
- review article
- Published by Wiley in Journal of Cellular Biochemistry
- Vol. 51 (3), 290-300
- https://doi.org/10.1002/jcb.240510308
Abstract
Microgravity offers unique advantages for the cultivation of mammalian tissues because the lack of gravity‐induced sedimentation supports three‐dimensional growth in batch culture in aqueous medium. Bioreactors that simulate microgravity but operate in unit gravity provide conditions that permit human epithelial cells to grow to densities approaching 107 cells/ml on microcarriers in suspension, in masses up to 1 cm in diameter, and under conditions of low shear stress. While useful for many different applications in tissue culture, this culture system is especially useful for the analysis of the microenvironment in which host matrix and cells interact with infiltrating tumor cells. Growth in the microgravity‐based bioreactor has supported morphological differentiation of human colon carcinoma cells when cultured with normal human stromal cells. Furthermore, these co‐cultures produced factors that stimulated goblet cell production in normal colon cells in an in vivo bioassay. Early experiments also suggest that the microgravity environment will not alter the ability of epithelial cells to recognize and associate with each other and with constituents of basement membrane and extracellular matrix. These findings suggest that cells grown in bioreactors that simulate aspects of microgravity or under actual microgravity conditions will produce tissues and substances in sufficient quantity and at high enough concentration to promote characterization of molecules that control differentiation and neoplastic transformation.Keywords
This publication has 18 references indexed in Scilit:
- Altered deposition of basement‐membrane molecules in co‐cultures of colonic cancer cells and fibroblastsInternational Journal of Cancer, 1991
- Continuous Cell Cultures in Fluidized‐Bed BioreactorsAnnals of the New York Academy of Sciences, 1990
- Bioreactor for mammalian cell culturePublished by Springer Nature ,1989
- Physical mechanisms of cell damage in microcarrier cell culture bioreactorsBiotechnology & Bioengineering, 1988
- Large‐Scale Culture of Hybridoma and Mammalian Cells in Fluidized Bed BioreactorsAnnals of the New York Academy of Sciences, 1987
- Absorptive and mucus-secreting subclones isolated from a multipotent intestinal cell line (HT-29) provide new models for cell polarity and terminal differentiation.The Journal of cell biology, 1987
- Importance of a fibroblastic support for in vitro differentiation of intestinal endodermal cells and for their response to glucocorticoidsCell Differentiation, 1987
- Isolation and Characterization of an Undifferentiated Human Colon Carcinoma Cell Line (MIP-101)Cancer Investigation, 1987
- Growth and differentiation of intestinal endodermal cells in a coculture system.Gut, 1987
- Isolation and characterization of type IV procollagen, laminin, and heparan sulfate proteoglycan from the EHS sarcomaBiochemistry, 1982