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γ Peptide Nucleic Acid-Based miR-122 Inhibition Rescues Vascular Endothelial Dysfunction in Mice Fed a High-Fat Diet

[Image: see text] The blood levels of microRNA-122 (miR-122) is associated with the severity of cardiovascular disorders, and targeting it with efficient and safer miR inhibitors could be a promising approach. Here, we report the generation of a γ-peptide nucleic acid (γPNA)-based miR-122 inhibitor...

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Autores principales: Gaddam, Ravinder Reddy, Dhuri, Karishma, Kim, Young-Rae, Jacobs, Julia S., Kumar, Vikas, Li, Qiuxia, Irani, Kaikobad, Bahal, Raman, Vikram, Ajit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8883473/
https://www.ncbi.nlm.nih.gov/pubmed/35133835
http://dx.doi.org/10.1021/acs.jmedchem.1c01831
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author Gaddam, Ravinder Reddy
Dhuri, Karishma
Kim, Young-Rae
Jacobs, Julia S.
Kumar, Vikas
Li, Qiuxia
Irani, Kaikobad
Bahal, Raman
Vikram, Ajit
author_facet Gaddam, Ravinder Reddy
Dhuri, Karishma
Kim, Young-Rae
Jacobs, Julia S.
Kumar, Vikas
Li, Qiuxia
Irani, Kaikobad
Bahal, Raman
Vikram, Ajit
author_sort Gaddam, Ravinder Reddy
collection PubMed
description [Image: see text] The blood levels of microRNA-122 (miR-122) is associated with the severity of cardiovascular disorders, and targeting it with efficient and safer miR inhibitors could be a promising approach. Here, we report the generation of a γ-peptide nucleic acid (γPNA)-based miR-122 inhibitor (γP-122-I) that rescues vascular endothelial dysfunction in mice fed a high-fat diet. We synthesized diethylene glycol-containing γP-122-I and found that its systemic administration counteracted high-fat diet (HFD)-feeding-associated increase in blood and aortic miR-122 levels, impaired endothelial function, and reduced glycemic control. A comprehensive safety analysis established that γP-122-I affects neither the complete blood count nor biochemical tests of liver and kidney functions during acute exposure. In addition, long-term exposure to γP-122-I did not change the overall adiposity, or histology of the kidney, liver, and heart. Thus, γP-122-I rescues endothelial dysfunction without any evidence of toxicity in vivo and demonstrates the suitability of γPNA technology in generating efficient and safer miR inhibitors.
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spelling pubmed-88834732022-03-01 γ Peptide Nucleic Acid-Based miR-122 Inhibition Rescues Vascular Endothelial Dysfunction in Mice Fed a High-Fat Diet Gaddam, Ravinder Reddy Dhuri, Karishma Kim, Young-Rae Jacobs, Julia S. Kumar, Vikas Li, Qiuxia Irani, Kaikobad Bahal, Raman Vikram, Ajit J Med Chem [Image: see text] The blood levels of microRNA-122 (miR-122) is associated with the severity of cardiovascular disorders, and targeting it with efficient and safer miR inhibitors could be a promising approach. Here, we report the generation of a γ-peptide nucleic acid (γPNA)-based miR-122 inhibitor (γP-122-I) that rescues vascular endothelial dysfunction in mice fed a high-fat diet. We synthesized diethylene glycol-containing γP-122-I and found that its systemic administration counteracted high-fat diet (HFD)-feeding-associated increase in blood and aortic miR-122 levels, impaired endothelial function, and reduced glycemic control. A comprehensive safety analysis established that γP-122-I affects neither the complete blood count nor biochemical tests of liver and kidney functions during acute exposure. In addition, long-term exposure to γP-122-I did not change the overall adiposity, or histology of the kidney, liver, and heart. Thus, γP-122-I rescues endothelial dysfunction without any evidence of toxicity in vivo and demonstrates the suitability of γPNA technology in generating efficient and safer miR inhibitors. American Chemical Society 2022-02-08 2022-02-24 /pmc/articles/PMC8883473/ /pubmed/35133835 http://dx.doi.org/10.1021/acs.jmedchem.1c01831 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Gaddam, Ravinder Reddy
Dhuri, Karishma
Kim, Young-Rae
Jacobs, Julia S.
Kumar, Vikas
Li, Qiuxia
Irani, Kaikobad
Bahal, Raman
Vikram, Ajit
γ Peptide Nucleic Acid-Based miR-122 Inhibition Rescues Vascular Endothelial Dysfunction in Mice Fed a High-Fat Diet
title γ Peptide Nucleic Acid-Based miR-122 Inhibition Rescues Vascular Endothelial Dysfunction in Mice Fed a High-Fat Diet
title_full γ Peptide Nucleic Acid-Based miR-122 Inhibition Rescues Vascular Endothelial Dysfunction in Mice Fed a High-Fat Diet
title_fullStr γ Peptide Nucleic Acid-Based miR-122 Inhibition Rescues Vascular Endothelial Dysfunction in Mice Fed a High-Fat Diet
title_full_unstemmed γ Peptide Nucleic Acid-Based miR-122 Inhibition Rescues Vascular Endothelial Dysfunction in Mice Fed a High-Fat Diet
title_short γ Peptide Nucleic Acid-Based miR-122 Inhibition Rescues Vascular Endothelial Dysfunction in Mice Fed a High-Fat Diet
title_sort γ peptide nucleic acid-based mir-122 inhibition rescues vascular endothelial dysfunction in mice fed a high-fat diet
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8883473/
https://www.ncbi.nlm.nih.gov/pubmed/35133835
http://dx.doi.org/10.1021/acs.jmedchem.1c01831
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