Multicellular spheroids
- 1 April 1987
- journal article
- review article
- Published by Springer Nature in Zeitschrift für Krebsforschung und Klinische Onkologie
- Vol. 113 (2) , 101-122
- https://doi.org/10.1007/bf00391431
Abstract
Cellular aggregates have been used in developmental biology and in experimental cancer research for several decades. Spherical aggregates of malignant cells, i.e. multicellular tumor spheroids, may serve as in vitro models of tumor microregions and of an early, avascular stage of tumor growth. The similarities between the original tumor and the respective spheroids include volume growth kinetics, cellular heterogeneity, e.g. the induction of proliferation gradients and quiescence, as well as differentiation characteristics, such as the development of specific histological structures or the expression of antigens. Research using cell aggregates has been focussed on mechanisms involved in the control of proliferation, invasion and metastasis. Immunological studies with spheroids have resulted in the characterization of defense cells which are responsible for specific host-versus-tumor reactions. The vast majority of investigations on spheroids concerns the simulation of therapy with regard to various treatment modalities, combination treatments and systematic analyses of using various endpoints in predictive assays. Only a few pathophysiological studies on the interrelationship among tumor-specific micromilieu, cellular metabolism, proliferative status, and cellular viability have been undertaken with the spheroid model up to now. Since these studies are indicative of a large influence of the cellular microenvironment on basic biological properties of cancer cells, investigations of these epigenetic mechanisms should be intensified in future research on cell aggregates. Similarly, the molecular basis of the biological peculiarities found in malignant cells grown as three-dimensional aggregates has to be investigated more intensively.Keywords
This publication has 230 references indexed in Scilit:
- Increased radioresistance of cells in cultured multicell spheroidsRadiation and Environmental Biophysics, 1983
- Is there a relationship between hypoxia, contact resistance, and intercellular communication?Radiation and Environmental Biophysics, 1983
- Glycosaminoglycan synthesis by mammary tumor spheroidsBiochemical and Biophysical Research Communications, 1982
- Increased radioresistance of cells in cultured multicell spheroids. I. Dependence on cellular interactionRadiation and Environmental Biophysics, 1981
- Two chick embryonic adhesion systems: Molecular vs tissue specificityJournal of Supramolecular Structure and Cellular Biochemistry, 1981
- Correlation of the growth of chinese hamster V279‐171b multicellular spheroids with cytokinetic parametersCytometry, 1980
- Cell-Cell adhesion molecule: Identification of a glycoprotein relevant to the Ca2+-independent aggregation of chinese hamster fibroblastsCell, 1980
- Biological effects of negative pions in monolayers and spheroids of chinese hamster cellsRadiation and Environmental Biophysics, 1979
- Primary Bioassay of Human Tumor Stem CellsScience, 1977
- Differences in Patterns of Aggregation of Malignant and Non-Malignant Mammalian CellsNature, 1966