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MicroRNA-466 and microRNA-200 increase endothelial permeability in hyperglycemia by targeting Claudin-5

Endothelial cell (EC) permeability is essential to vascular homeostasis in diabetes. MicroRNAs are critical gene regulators whose roles in the EC permeability have yet to be characterized. This study aims to examine the change in cell permeability induced by miR-200 and miR-466 in ECs. Human aortic...

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Autores principales: Kujawa, Marisa, O’Meara, Megan, Li, Hainan, Xu, Liping, Meda Venkata, Sai Pranathi, Nguyen, Huong, Minjares, Morgan, Zhang, Kezhong, Wang, Jie-Mei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9307898/
https://www.ncbi.nlm.nih.gov/pubmed/35892090
http://dx.doi.org/10.1016/j.omtn.2022.07.002
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author Kujawa, Marisa
O’Meara, Megan
Li, Hainan
Xu, Liping
Meda Venkata, Sai Pranathi
Nguyen, Huong
Minjares, Morgan
Zhang, Kezhong
Wang, Jie-Mei
author_facet Kujawa, Marisa
O’Meara, Megan
Li, Hainan
Xu, Liping
Meda Venkata, Sai Pranathi
Nguyen, Huong
Minjares, Morgan
Zhang, Kezhong
Wang, Jie-Mei
author_sort Kujawa, Marisa
collection PubMed
description Endothelial cell (EC) permeability is essential to vascular homeostasis in diabetes. MicroRNAs are critical gene regulators whose roles in the EC permeability have yet to be characterized. This study aims to examine the change in cell permeability induced by miR-200 and miR-466 in ECs. Human aortic ECs and dermal microvascular ECs from healthy subjects and type 2 diabetic patients were used. Our in vitro experiments unveiled higher expressions of miR-200 family members and miR-466 in diabetic ECs and in healthy ECs when exposed to high glucose. Overexpression of both miR-200 and miR-466 significantly increased EC permeability through transcriptional suppression of Claudin-5, the cell tight junction protein, by directly binding to its 3′ untranslated region. In a mouse model of chronic hyperglycemia mimicking type 2 diabetes in humans (db/db mice), the delayed closure rate of a full-thickness excisional wound was partly rescued by topical application of the miR-200 inhibitor. The topical application of both miR-200 and miR-466 inhibitors exhibited improved efficacy in accelerating wound closure compared with the topical application of miR-200 inhibitor alone. Our study demonstrated the potentially effective approach of miR-200/miR-466 cocktail inhibition to restore vascular integrity and tissue repair in hyperglycemia.
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spelling pubmed-93078982022-07-25 MicroRNA-466 and microRNA-200 increase endothelial permeability in hyperglycemia by targeting Claudin-5 Kujawa, Marisa O’Meara, Megan Li, Hainan Xu, Liping Meda Venkata, Sai Pranathi Nguyen, Huong Minjares, Morgan Zhang, Kezhong Wang, Jie-Mei Mol Ther Nucleic Acids Original Article Endothelial cell (EC) permeability is essential to vascular homeostasis in diabetes. MicroRNAs are critical gene regulators whose roles in the EC permeability have yet to be characterized. This study aims to examine the change in cell permeability induced by miR-200 and miR-466 in ECs. Human aortic ECs and dermal microvascular ECs from healthy subjects and type 2 diabetic patients were used. Our in vitro experiments unveiled higher expressions of miR-200 family members and miR-466 in diabetic ECs and in healthy ECs when exposed to high glucose. Overexpression of both miR-200 and miR-466 significantly increased EC permeability through transcriptional suppression of Claudin-5, the cell tight junction protein, by directly binding to its 3′ untranslated region. In a mouse model of chronic hyperglycemia mimicking type 2 diabetes in humans (db/db mice), the delayed closure rate of a full-thickness excisional wound was partly rescued by topical application of the miR-200 inhibitor. The topical application of both miR-200 and miR-466 inhibitors exhibited improved efficacy in accelerating wound closure compared with the topical application of miR-200 inhibitor alone. Our study demonstrated the potentially effective approach of miR-200/miR-466 cocktail inhibition to restore vascular integrity and tissue repair in hyperglycemia. American Society of Gene & Cell Therapy 2022-07-06 /pmc/articles/PMC9307898/ /pubmed/35892090 http://dx.doi.org/10.1016/j.omtn.2022.07.002 Text en © 2022 The Author(s) https://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
Kujawa, Marisa
O’Meara, Megan
Li, Hainan
Xu, Liping
Meda Venkata, Sai Pranathi
Nguyen, Huong
Minjares, Morgan
Zhang, Kezhong
Wang, Jie-Mei
MicroRNA-466 and microRNA-200 increase endothelial permeability in hyperglycemia by targeting Claudin-5
title MicroRNA-466 and microRNA-200 increase endothelial permeability in hyperglycemia by targeting Claudin-5
title_full MicroRNA-466 and microRNA-200 increase endothelial permeability in hyperglycemia by targeting Claudin-5
title_fullStr MicroRNA-466 and microRNA-200 increase endothelial permeability in hyperglycemia by targeting Claudin-5
title_full_unstemmed MicroRNA-466 and microRNA-200 increase endothelial permeability in hyperglycemia by targeting Claudin-5
title_short MicroRNA-466 and microRNA-200 increase endothelial permeability in hyperglycemia by targeting Claudin-5
title_sort microrna-466 and microrna-200 increase endothelial permeability in hyperglycemia by targeting claudin-5
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9307898/
https://www.ncbi.nlm.nih.gov/pubmed/35892090
http://dx.doi.org/10.1016/j.omtn.2022.07.002
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