Basement membrane and the SIKVAV laminin-derived peptide promote tumor growth and metastases |
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Authors: | Thomas M. Sweeney Maura C. Kibbey Mona Zain Rafael Fridman Hynda K. Kleinman |
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Affiliation: | (1) Laboratory of Developmental Biology, National Institute of Dental Research, National Institutes of Health, Bethesda, Maryland, USA;(2) Molecular Oncology, Inc., 19 Firstfield Rd., Gaithersburg, Maryland, USA;(3) Laboratory of Developmental Biology, National Institute of Dental Research, NIH, Building 30, Room 407, 20892 Bethesda, MD, USA |
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Abstract: | Summary Laminin, the major glycoprotein component of basement membrane, promotes the malignant phenotype. Cells which are adherent to laminin are more malignant than the non-adherent cells and in certain tumor cells, the number of laminin receptors is positively correlated with malignancy. Laminin also increases collagenase IV activity, an enzyme demonstrated to be critical for tumor spread. A site on laminin, containing the amino acid sequence SIKVAV, has been identified which when injected intravenously with B16F10 melanoma cells, causes an increase in the number of colonies on the surface of the lungs. This peptide does not affect tumor cell arrest in the vasculature or the immune system. It does promote angiogenesis in various in vitro and in vivo models, thereby facilitating tumor cell survival.When a complex mixture of laminin-enriched basement membrane components (Matrigel) is coinjected with tumor cells subcutaneously, tumor incidence and growth increases. Various tumor cell lines and primary isolates, which previously could not form tumors in mice, can be induced to grow rapidly in the presence of Matrigel. Slowly growing tumors or arrested tumors can also be induced to grow more quickly with additional injections of Matrigel. When an SIKVAV-containing synthetic peptide is coinjected with B16F10 tumor cells and Matrigel subcutaneously in mice, larger tumors are formed than that observed with either Matrigel or cells alone. Such studies define the role of laminin in tumor growth and spread and generate new models for studying therapeutic agents. Of particular interest is the ability to grow primary isolates which generally do not grow in mice. |
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Keywords: | laminin basement membrane synthetic peptide extracellular matrix collagenase metastasis |
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