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Uveal Melanoma Cells Elicit Retinal Pericyte Phenotypical and Biochemical Changes in an in Vitro Model of Coculture

Vascular pericytes are an important cellular component in the tumor microenvironment, however, their role in supporting cancer invasion is poorly understood. We hypothesized that PDGF-BB could be involved in the transition of human retinal pericytes (HRPC) in cancer-activated fibroblasts (CAF), indu...

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Autores principales: Anfuso, Carmelina Daniela, Longo, Anna, Distefano, Alfio, Amorini, Angela Maria, Salmeri, Mario, Zanghì, Guido, Giallongo, Cesarina, Giurdanella, Giovanni, Lupo, Gabriella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432414/
https://www.ncbi.nlm.nih.gov/pubmed/32756477
http://dx.doi.org/10.3390/ijms21155557
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author Anfuso, Carmelina Daniela
Longo, Anna
Distefano, Alfio
Amorini, Angela Maria
Salmeri, Mario
Zanghì, Guido
Giallongo, Cesarina
Giurdanella, Giovanni
Lupo, Gabriella
author_facet Anfuso, Carmelina Daniela
Longo, Anna
Distefano, Alfio
Amorini, Angela Maria
Salmeri, Mario
Zanghì, Guido
Giallongo, Cesarina
Giurdanella, Giovanni
Lupo, Gabriella
author_sort Anfuso, Carmelina Daniela
collection PubMed
description Vascular pericytes are an important cellular component in the tumor microenvironment, however, their role in supporting cancer invasion is poorly understood. We hypothesized that PDGF-BB could be involved in the transition of human retinal pericytes (HRPC) in cancer-activated fibroblasts (CAF), induced by the 92.1 uveal melanoma (UM) cell line. In our model system, HRPC were conditioned by co-culturing with 92.1UM for 6 days (cHRPC), in the presence or absence of imatinib, to block PDGF receptor-β (PDGFRβ). The effects of the treatments were tested by wound healing assay, proliferation assay, RT-PCR, high-content screening, Western blot analysis, and invasion assay. Results showed profound changes in cHRPC shape, with increased proliferation and motility, reduction of NG2 and increase of TGF-β1, α-SMA, vimentin, and FSP-1 protein levels, modulation of PDGF isoform mRNA levels, phospho-PDGFRβ, and PDGFRβ, as well as phospho-STAT3 increases. A reduction of IL-1β and IFNγ and an increase in TNFα, IL10, and TGF-β1, CXCL11, CCL18, and VEGF mRNA in cHRPC were found. Imatinib was effective in preventing all the 92.1UM-induced changes. Moreover, cHRPC elicited a significant increase of 92.1UM cell invasion and active MMP9 protein levels. Our data suggest that retinal microvascular pericytes could promote 92.1UM growth through the acquisition of the CAF phenotype.
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spelling pubmed-74324142020-08-24 Uveal Melanoma Cells Elicit Retinal Pericyte Phenotypical and Biochemical Changes in an in Vitro Model of Coculture Anfuso, Carmelina Daniela Longo, Anna Distefano, Alfio Amorini, Angela Maria Salmeri, Mario Zanghì, Guido Giallongo, Cesarina Giurdanella, Giovanni Lupo, Gabriella Int J Mol Sci Article Vascular pericytes are an important cellular component in the tumor microenvironment, however, their role in supporting cancer invasion is poorly understood. We hypothesized that PDGF-BB could be involved in the transition of human retinal pericytes (HRPC) in cancer-activated fibroblasts (CAF), induced by the 92.1 uveal melanoma (UM) cell line. In our model system, HRPC were conditioned by co-culturing with 92.1UM for 6 days (cHRPC), in the presence or absence of imatinib, to block PDGF receptor-β (PDGFRβ). The effects of the treatments were tested by wound healing assay, proliferation assay, RT-PCR, high-content screening, Western blot analysis, and invasion assay. Results showed profound changes in cHRPC shape, with increased proliferation and motility, reduction of NG2 and increase of TGF-β1, α-SMA, vimentin, and FSP-1 protein levels, modulation of PDGF isoform mRNA levels, phospho-PDGFRβ, and PDGFRβ, as well as phospho-STAT3 increases. A reduction of IL-1β and IFNγ and an increase in TNFα, IL10, and TGF-β1, CXCL11, CCL18, and VEGF mRNA in cHRPC were found. Imatinib was effective in preventing all the 92.1UM-induced changes. Moreover, cHRPC elicited a significant increase of 92.1UM cell invasion and active MMP9 protein levels. Our data suggest that retinal microvascular pericytes could promote 92.1UM growth through the acquisition of the CAF phenotype. MDPI 2020-08-03 /pmc/articles/PMC7432414/ /pubmed/32756477 http://dx.doi.org/10.3390/ijms21155557 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Anfuso, Carmelina Daniela
Longo, Anna
Distefano, Alfio
Amorini, Angela Maria
Salmeri, Mario
Zanghì, Guido
Giallongo, Cesarina
Giurdanella, Giovanni
Lupo, Gabriella
Uveal Melanoma Cells Elicit Retinal Pericyte Phenotypical and Biochemical Changes in an in Vitro Model of Coculture
title Uveal Melanoma Cells Elicit Retinal Pericyte Phenotypical and Biochemical Changes in an in Vitro Model of Coculture
title_full Uveal Melanoma Cells Elicit Retinal Pericyte Phenotypical and Biochemical Changes in an in Vitro Model of Coculture
title_fullStr Uveal Melanoma Cells Elicit Retinal Pericyte Phenotypical and Biochemical Changes in an in Vitro Model of Coculture
title_full_unstemmed Uveal Melanoma Cells Elicit Retinal Pericyte Phenotypical and Biochemical Changes in an in Vitro Model of Coculture
title_short Uveal Melanoma Cells Elicit Retinal Pericyte Phenotypical and Biochemical Changes in an in Vitro Model of Coculture
title_sort uveal melanoma cells elicit retinal pericyte phenotypical and biochemical changes in an in vitro model of coculture
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432414/
https://www.ncbi.nlm.nih.gov/pubmed/32756477
http://dx.doi.org/10.3390/ijms21155557
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