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TCam-2 Seminoma Cells Exposed to Egg-Derived Microenvironment Modify Their Shape, Adhesive Pattern and Migratory Behaviour: A Molecular and Morphometric Analysis

Seminoma is one of the most common Testicular Germ Cell Tumours that originates during embryonic development due to an alteration of the local niche that in turn results in a delayed or blocked differentiation of Primordial Germ Cells. The block of differentiation is actually a common way to develop...

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Autores principales: Ferranti, Francesca, D’Anselmi, Fabrizio, Caruso, Maria, Lei, Vittorio, Dinicola, Simona, Pasqualato, Alessia, Cucina, Alessandra, Palombo, Alessandro, Ricci, Giulia, Catizone, Angela, Bizzarri, Mariano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3788130/
https://www.ncbi.nlm.nih.gov/pubmed/24098438
http://dx.doi.org/10.1371/journal.pone.0076192
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author Ferranti, Francesca
D’Anselmi, Fabrizio
Caruso, Maria
Lei, Vittorio
Dinicola, Simona
Pasqualato, Alessia
Cucina, Alessandra
Palombo, Alessandro
Ricci, Giulia
Catizone, Angela
Bizzarri, Mariano
author_facet Ferranti, Francesca
D’Anselmi, Fabrizio
Caruso, Maria
Lei, Vittorio
Dinicola, Simona
Pasqualato, Alessia
Cucina, Alessandra
Palombo, Alessandro
Ricci, Giulia
Catizone, Angela
Bizzarri, Mariano
author_sort Ferranti, Francesca
collection PubMed
description Seminoma is one of the most common Testicular Germ Cell Tumours that originates during embryonic development due to an alteration of the local niche that in turn results in a delayed or blocked differentiation of Primordial Germ Cells. The block of differentiation is actually a common way to develop cancer disease as postulated by the "embryonic rest theory of cancer". In agreement with this theory different studies have demonstrated that embryonic cues display the capacity of reprogramming aggressive cancer cells towards a less aggressive phenotype. Herein we investigate the ability of a culture medium added with 10% egg albumen (EW, Egg White) to modulate seminoma cell phenotype and behaviour, by ensuring a proper set of morphogenetic signals. We chose to use the TCam-2 seminoma cell line that has been established as the only available cell line, obtained from a primary testicular seminoma. EW is able to: 1) modify TCam-2 cell spreading rate and cell-substrate adhesion without affecting proliferation and survival indexes; 2) modulate TCam-2 actin distribution pattern increasing cortical localization of actin filaments; 3) increase TCam-2 cell-cell junction capability; 4) decrease both chemo-sensitive and collective TCam-2 migratory behaviour. According to these observations morphometric fractal analysis revealed the ability of EW to increase Circularity and Solidity parameters and, consequently, to decrease Fractal dimension. Prompted by these observations we hypothesize that EW treatment could rescue, at least in part, the neoplastic-metastatic behaviour of seminoma cells.
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spelling pubmed-37881302013-10-04 TCam-2 Seminoma Cells Exposed to Egg-Derived Microenvironment Modify Their Shape, Adhesive Pattern and Migratory Behaviour: A Molecular and Morphometric Analysis Ferranti, Francesca D’Anselmi, Fabrizio Caruso, Maria Lei, Vittorio Dinicola, Simona Pasqualato, Alessia Cucina, Alessandra Palombo, Alessandro Ricci, Giulia Catizone, Angela Bizzarri, Mariano PLoS One Research Article Seminoma is one of the most common Testicular Germ Cell Tumours that originates during embryonic development due to an alteration of the local niche that in turn results in a delayed or blocked differentiation of Primordial Germ Cells. The block of differentiation is actually a common way to develop cancer disease as postulated by the "embryonic rest theory of cancer". In agreement with this theory different studies have demonstrated that embryonic cues display the capacity of reprogramming aggressive cancer cells towards a less aggressive phenotype. Herein we investigate the ability of a culture medium added with 10% egg albumen (EW, Egg White) to modulate seminoma cell phenotype and behaviour, by ensuring a proper set of morphogenetic signals. We chose to use the TCam-2 seminoma cell line that has been established as the only available cell line, obtained from a primary testicular seminoma. EW is able to: 1) modify TCam-2 cell spreading rate and cell-substrate adhesion without affecting proliferation and survival indexes; 2) modulate TCam-2 actin distribution pattern increasing cortical localization of actin filaments; 3) increase TCam-2 cell-cell junction capability; 4) decrease both chemo-sensitive and collective TCam-2 migratory behaviour. According to these observations morphometric fractal analysis revealed the ability of EW to increase Circularity and Solidity parameters and, consequently, to decrease Fractal dimension. Prompted by these observations we hypothesize that EW treatment could rescue, at least in part, the neoplastic-metastatic behaviour of seminoma cells. Public Library of Science 2013-10-01 /pmc/articles/PMC3788130/ /pubmed/24098438 http://dx.doi.org/10.1371/journal.pone.0076192 Text en © 2013 Ferranti et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ferranti, Francesca
D’Anselmi, Fabrizio
Caruso, Maria
Lei, Vittorio
Dinicola, Simona
Pasqualato, Alessia
Cucina, Alessandra
Palombo, Alessandro
Ricci, Giulia
Catizone, Angela
Bizzarri, Mariano
TCam-2 Seminoma Cells Exposed to Egg-Derived Microenvironment Modify Their Shape, Adhesive Pattern and Migratory Behaviour: A Molecular and Morphometric Analysis
title TCam-2 Seminoma Cells Exposed to Egg-Derived Microenvironment Modify Their Shape, Adhesive Pattern and Migratory Behaviour: A Molecular and Morphometric Analysis
title_full TCam-2 Seminoma Cells Exposed to Egg-Derived Microenvironment Modify Their Shape, Adhesive Pattern and Migratory Behaviour: A Molecular and Morphometric Analysis
title_fullStr TCam-2 Seminoma Cells Exposed to Egg-Derived Microenvironment Modify Their Shape, Adhesive Pattern and Migratory Behaviour: A Molecular and Morphometric Analysis
title_full_unstemmed TCam-2 Seminoma Cells Exposed to Egg-Derived Microenvironment Modify Their Shape, Adhesive Pattern and Migratory Behaviour: A Molecular and Morphometric Analysis
title_short TCam-2 Seminoma Cells Exposed to Egg-Derived Microenvironment Modify Their Shape, Adhesive Pattern and Migratory Behaviour: A Molecular and Morphometric Analysis
title_sort tcam-2 seminoma cells exposed to egg-derived microenvironment modify their shape, adhesive pattern and migratory behaviour: a molecular and morphometric analysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3788130/
https://www.ncbi.nlm.nih.gov/pubmed/24098438
http://dx.doi.org/10.1371/journal.pone.0076192
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