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miR-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis

Mesenchymal Stromal/Stem Cells (MSC) are currently being explored in diverse clinical applications, including regenerative therapies. Their contribution to regeneration of bone fractures is dependent on their capacity to proliferate, undergo osteogenesis and induce angiogenesis. This study aimed to...

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Autores principales: Almeida, Maria Ines, Silva, Andreia Machado, Vasconcelos, Daniel Marques, Almeida, Catarina Rodrigues, Caires, Hugo, Pinto, Marta Teixeira, Calin, George Adrian, Santos, Susana Gomes, Barbosa, Mário Adolfo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4807979/
https://www.ncbi.nlm.nih.gov/pubmed/26683705
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author Almeida, Maria Ines
Silva, Andreia Machado
Vasconcelos, Daniel Marques
Almeida, Catarina Rodrigues
Caires, Hugo
Pinto, Marta Teixeira
Calin, George Adrian
Santos, Susana Gomes
Barbosa, Mário Adolfo
author_facet Almeida, Maria Ines
Silva, Andreia Machado
Vasconcelos, Daniel Marques
Almeida, Catarina Rodrigues
Caires, Hugo
Pinto, Marta Teixeira
Calin, George Adrian
Santos, Susana Gomes
Barbosa, Mário Adolfo
author_sort Almeida, Maria Ines
collection PubMed
description Mesenchymal Stromal/Stem Cells (MSC) are currently being explored in diverse clinical applications, including regenerative therapies. Their contribution to regeneration of bone fractures is dependent on their capacity to proliferate, undergo osteogenesis and induce angiogenesis. This study aimed to uncover microRNAs capable of concomitantly regulate these mechanisms. Following microRNA array results, we identified miR-195 and miR-497 as downregulated in human primary MSC under osteogenic differentiation. Overexpression of miR-195 or miR-497 in human primary MSC leads to a decrease in osteogenic differentiation and proliferation rate. Conversely, inhibition of miR-195 increased alkaline phosphatase expression and activity and cells proliferation. Then, miR-195 was used to study MSC capacity to recruit blood vessels in vivo. We provide evidence that the paracrine effect of MSC on angiogenesis is diminishedwhen cells over-express miR-195. VEGF may partially mediate this effect, as its expression and secreted protein levels are reduced by miR-195, while increased by anti-miR-195, in human MSC. Luciferase reporter assays revealed a direct interaction between miR-195 and VEGF 3′-UTR in bone cancer cells. In conclusion, our results suggest that miR-195 regulates important mechanisms for bone regeneration, specifically MSC osteogenic differentiation, proliferation and control of angiogenesis; therefore, it is a potential target for clinical bone regenerative therapies.
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spelling pubmed-48079792016-04-19 miR-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis Almeida, Maria Ines Silva, Andreia Machado Vasconcelos, Daniel Marques Almeida, Catarina Rodrigues Caires, Hugo Pinto, Marta Teixeira Calin, George Adrian Santos, Susana Gomes Barbosa, Mário Adolfo Oncotarget Research Paper: Gerotarget (Focus on Aging) Mesenchymal Stromal/Stem Cells (MSC) are currently being explored in diverse clinical applications, including regenerative therapies. Their contribution to regeneration of bone fractures is dependent on their capacity to proliferate, undergo osteogenesis and induce angiogenesis. This study aimed to uncover microRNAs capable of concomitantly regulate these mechanisms. Following microRNA array results, we identified miR-195 and miR-497 as downregulated in human primary MSC under osteogenic differentiation. Overexpression of miR-195 or miR-497 in human primary MSC leads to a decrease in osteogenic differentiation and proliferation rate. Conversely, inhibition of miR-195 increased alkaline phosphatase expression and activity and cells proliferation. Then, miR-195 was used to study MSC capacity to recruit blood vessels in vivo. We provide evidence that the paracrine effect of MSC on angiogenesis is diminishedwhen cells over-express miR-195. VEGF may partially mediate this effect, as its expression and secreted protein levels are reduced by miR-195, while increased by anti-miR-195, in human MSC. Luciferase reporter assays revealed a direct interaction between miR-195 and VEGF 3′-UTR in bone cancer cells. In conclusion, our results suggest that miR-195 regulates important mechanisms for bone regeneration, specifically MSC osteogenic differentiation, proliferation and control of angiogenesis; therefore, it is a potential target for clinical bone regenerative therapies. Impact Journals LLC 2015-12-13 /pmc/articles/PMC4807979/ /pubmed/26683705 Text en Copyright: © 2016 Almeida et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper: Gerotarget (Focus on Aging)
Almeida, Maria Ines
Silva, Andreia Machado
Vasconcelos, Daniel Marques
Almeida, Catarina Rodrigues
Caires, Hugo
Pinto, Marta Teixeira
Calin, George Adrian
Santos, Susana Gomes
Barbosa, Mário Adolfo
miR-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis
title miR-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis
title_full miR-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis
title_fullStr miR-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis
title_full_unstemmed miR-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis
title_short miR-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis
title_sort mir-195 in human primary mesenchymal stromal/stem cells regulates proliferation, osteogenesis and paracrine effect on angiogenesis
topic Research Paper: Gerotarget (Focus on Aging)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4807979/
https://www.ncbi.nlm.nih.gov/pubmed/26683705
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