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Heart-derived fibroblasts express LYPD-1 and negatively regulate angiogenesis in rat

Angiogenesis is regulated by a balance between promoting and inhibitory mechanisms. Although angiogenesis-promoting mechanisms have been well studied in ischemic heart diseases, angiogenesis-inhibitory mechanisms have not. Recently, we identified LYPD-1 as a novel anti-angiogenic factor derived from...

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Autores principales: Sakamoto, Satoru, Matsuura, Katsuhisa, Masuda, Shinako, Hagiwara, Nobuhisa, Shimizu, Tatsuya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Society for Regenerative Medicine 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7261953/
https://www.ncbi.nlm.nih.gov/pubmed/32514414
http://dx.doi.org/10.1016/j.reth.2020.03.010
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author Sakamoto, Satoru
Matsuura, Katsuhisa
Masuda, Shinako
Hagiwara, Nobuhisa
Shimizu, Tatsuya
author_facet Sakamoto, Satoru
Matsuura, Katsuhisa
Masuda, Shinako
Hagiwara, Nobuhisa
Shimizu, Tatsuya
author_sort Sakamoto, Satoru
collection PubMed
description Angiogenesis is regulated by a balance between promoting and inhibitory mechanisms. Although angiogenesis-promoting mechanisms have been well studied in ischemic heart diseases, angiogenesis-inhibitory mechanisms have not. Recently, we identified LYPD-1 as a novel anti-angiogenic factor derived from human heart-derived fibroblasts, which suppresses endothelial cell network formation in co-culture. However, it remains unclear whether the low angiogenicity of heart-derived fibroblasts with high expression of LYPD-1 is also observed in other mammalian species, and the properties of LYPD-1 under normal and pathological conditions remain elusive. Fibroblasts isolated from neonatal and adult rat heart also express LYPD-1 and inhibit endothelial network formation in co-culture. Moreover, immunohistochemical analysis revealed that LYPD-1 was predominantly observed in the interstitial tissues of rat heart and LYPD1 expression levels were identical from late developmental period to adult. Conversely, LYPD-1 mRNA expression was significantly downregulated temporally in myocardial infarction model rats, suggesting that angiogenesis-inhibitory mechanisms might not be sufficiently suppressed to promote angiogenesis in ischemic heart diseases. These findings suggest that heart has relatively low angiogenicity compared with other organs via the high expression of LYPD-1 by fibroblasts. Moreover, understanding the regulatory mechanisms of LYPD-1-mediated inhibition of angiogenesis might lead a novel angiogenic therapy for ischemic heart diseases and contribute to development of bioengineered cardiac tissue.
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spelling pubmed-72619532020-06-07 Heart-derived fibroblasts express LYPD-1 and negatively regulate angiogenesis in rat Sakamoto, Satoru Matsuura, Katsuhisa Masuda, Shinako Hagiwara, Nobuhisa Shimizu, Tatsuya Regen Ther Original Article Angiogenesis is regulated by a balance between promoting and inhibitory mechanisms. Although angiogenesis-promoting mechanisms have been well studied in ischemic heart diseases, angiogenesis-inhibitory mechanisms have not. Recently, we identified LYPD-1 as a novel anti-angiogenic factor derived from human heart-derived fibroblasts, which suppresses endothelial cell network formation in co-culture. However, it remains unclear whether the low angiogenicity of heart-derived fibroblasts with high expression of LYPD-1 is also observed in other mammalian species, and the properties of LYPD-1 under normal and pathological conditions remain elusive. Fibroblasts isolated from neonatal and adult rat heart also express LYPD-1 and inhibit endothelial network formation in co-culture. Moreover, immunohistochemical analysis revealed that LYPD-1 was predominantly observed in the interstitial tissues of rat heart and LYPD1 expression levels were identical from late developmental period to adult. Conversely, LYPD-1 mRNA expression was significantly downregulated temporally in myocardial infarction model rats, suggesting that angiogenesis-inhibitory mechanisms might not be sufficiently suppressed to promote angiogenesis in ischemic heart diseases. These findings suggest that heart has relatively low angiogenicity compared with other organs via the high expression of LYPD-1 by fibroblasts. Moreover, understanding the regulatory mechanisms of LYPD-1-mediated inhibition of angiogenesis might lead a novel angiogenic therapy for ischemic heart diseases and contribute to development of bioengineered cardiac tissue. Japanese Society for Regenerative Medicine 2020-05-29 /pmc/articles/PMC7261953/ /pubmed/32514414 http://dx.doi.org/10.1016/j.reth.2020.03.010 Text en © 2020 The Japanese Society for Regenerative Medicine. Production and hosting by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Sakamoto, Satoru
Matsuura, Katsuhisa
Masuda, Shinako
Hagiwara, Nobuhisa
Shimizu, Tatsuya
Heart-derived fibroblasts express LYPD-1 and negatively regulate angiogenesis in rat
title Heart-derived fibroblasts express LYPD-1 and negatively regulate angiogenesis in rat
title_full Heart-derived fibroblasts express LYPD-1 and negatively regulate angiogenesis in rat
title_fullStr Heart-derived fibroblasts express LYPD-1 and negatively regulate angiogenesis in rat
title_full_unstemmed Heart-derived fibroblasts express LYPD-1 and negatively regulate angiogenesis in rat
title_short Heart-derived fibroblasts express LYPD-1 and negatively regulate angiogenesis in rat
title_sort heart-derived fibroblasts express lypd-1 and negatively regulate angiogenesis in rat
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7261953/
https://www.ncbi.nlm.nih.gov/pubmed/32514414
http://dx.doi.org/10.1016/j.reth.2020.03.010
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