
pmid: 3018097
Cellular transformation may be accomplished in vitro and in vivo through the concerted action of growth factors and oncogenes. This association has demonstrated that malignant growth results from aberrations in growth factor-signal transduction pathways that normally operate to control proliferation. Activation of genes that code for growth factors and/or their receptors provides tumor cells with potential mechanisms to maintain their proliferative state. Tumor cells have been shown to produce endogenous substances that augment their growth (autocrine stimulation), as well as responding to exogenous substances (paracrine stimulation). With solid tumor cells these responses have been shown to involve aberrant expression of growth factor and/or receptor genes. The study of the interrelationship of these various growth regulatory molecules is important not only in the identification of gene products essential to cellular proliferation, but also in providing clues as to what forces are driving tumor cell growth.
Epidermal Growth Factor, Receptors, Cell Surface, Oncogenes, ErbB Receptors, Cell Transformation, Neoplastic, Phenotype, Gene Expression Regulation, Transforming Growth Factors, Animals, Humans, Growth Substances, Peptides, Cell Division
Epidermal Growth Factor, Receptors, Cell Surface, Oncogenes, ErbB Receptors, Cell Transformation, Neoplastic, Phenotype, Gene Expression Regulation, Transforming Growth Factors, Animals, Humans, Growth Substances, Peptides, Cell Division
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