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Changes in cell shape are correlated with metastatic potential in murine and human osteosarcomas
Author(s) -
Samanthe M. Lyons,
Elaheh Alizadeh,
Joshua Mannheimer,
Katherine Schuamberg,
Jordan Castle,
Bryce Schroder,
Philip Turk,
Douglas H. Thamm,
Ashok Prasad
Publication year - 2016
Publication title -
biology open
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.936
H-Index - 41
ISSN - 2046-6390
DOI - 10.1242/bio.013409
Subject(s) - biology , osteosarcoma , cell culture , metastasis , cancer , cancer cell , cell , cytoskeleton , cancer research , mesenchymal stem cell , pathology , microbiology and biotechnology , genetics , medicine
Metastatic cancer cells for many cancers are known to have altered cytoskeletal properties, in particular to be more deformable and contractile. Consequently, shape characteristics of more metastatic cancer cells may be expected to have diverged from those of their parental cells. To examine this hypothesis we study shape characteristics of paired osteosarcoma cell lines, each consisting of a less metastatic parental line and a more metastatic line, derived from the former by in vivo selection. Two-dimensional images of four pairs of lines were processed. Statistical analysis of morphometric characteristics shows that shape characteristics of the metastatic cell line are partly overlapping and partly diverged from the parental line. Significantly, the shape changes fall into two categories, with three paired cell lines displaying a more mesenchymal-like morphology, while the fourth displaying a change towards a more rounded morphology. A neural network algorithm could distinguish between samples of the less metastatic cells from the more metastatic cells with near perfect accuracy. Thus, subtle changes in shape carry information about the genetic changes that lead to invasiveness and metastasis of osteosarcoma cancer cells.

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