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PMID: 8422710 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Adriamycin-induced inhibition of melanoma cell invasion is correlated with decreases in tumor cell motility and increases in focal contact formation.

Clinical & experimental metastasis ·Vol. 11 ·No. 1 ·1993-01-00 ·Pages 91-102

Repesh LA, Drake SR, Warner MC, Downing SW, Jyring R, Seftor EA, Hendrix MJ, McCarthy JB

Abstract

Tumor cell adhesion to the extracellular matrix (ECM) is closely linked with tumor cell invasion and metastasis. In this study, we demonstrate that low levels of adriamycin, a widely used anticancer drug, can inhibit the invasion of highly metastatic K1735-M2 mouse melanoma cells in vitro through a reconstituted basement membrane extract. Adriamycin-induced inhibition of melanoma cell invasion occurred at levels of the drug (i.e. 1 ng/ml) that did not inhibit tumor cell growth, suggesting that the observed inhibition in tumor cell invasion was not due to the well-documented ability of adriamycin to interfere with DNA and/or RNA synthesis. Rather, these studies indicated that adriamycin-induced inhibition of melanoma cell invasion was accompanied by a corresponding decrease in the ability of adriamycin-treated tumor cells to migrate in response to several isolated ECM components including fibronectin, laminin and basement membrane (type IV) collagen. The decreased migration of adriamycin-treated tumor cells was not accompanied by a decrease in the adhesion or spreading of the adriamycin-treated cells on substrata coated with these ECM components. Instead, adriamycin-treated cells actually exhibited a slightly increased propensity (compared to untreated control cells) to adhere on fibronectin-, laminin-, and type IV collagen-coated substrata. Additionally, adriamycin treatment caused a dramatic increase in focal contact formation by these melanoma cells, as assessed by fluorescent microscopy of actin and vinculin. In addition to providing a useful model for which to study the molecular and cellular basis for focal contact formation, these results further emphasize the results of several other investigators that have suggested an important role for focal contacts in modulating tumor cell motility, invasion and metastasis.

MeSH Terms
Actins/metabolism Animals Cell Adhesion/drug effects Cell Division/drug effects Cell Movement/drug effects Cell Survival/drug effects Doxorubicin/pharmacology Extracellular Matrix/physiology Melanoma, Experimental/metabolism,pathology,secondary Mice Neoplasm Invasiveness/physiopathology Neoplasm Proteins/metabolism Tumor Cells, Cultured Vinculin/metabolism
Chemicals
Actins Neoplasm Proteins Vinculin Doxorubicin
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Repesh L A
University of Minnesota, Department of Anatomy, Duluth 55812.
Drake S R
Warner M C
Downing S W
Jyring R
Seftor E A
Hendrix M J
McCarthy J B
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Article Info
Journal
Clinical & experimental metastasis
Abbr.
Clin Exp Metastasis
ISSN
0262-0898
Published
1993-01-00
Pages
91-102
Language
English
Region
Netherlands
NLM ID
8409970
Subset
IM
Grants
NCI NIH HHS · CA 43924 · United States
NCI NIH HHS · CA 54984 · United States
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