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Montelukast Prevents Early Diabetic Retinopathy in Mice

Chronic inflammation and oxidative stress are critical components in the pathogenic cascade of early diabetic retinopathy, characterized by neuronal and vascular degeneration. We investigated pharmacologic inhibition of the proinflammatory leukotriene cascade for therapeutic benefit in early diabeti...

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Autores principales: Bapputty, Reena, Talahalli, Ramaprasad, Zarini, Simona, Samuels, Ivy, Murphy, Robert, Gubitosi-Klug, Rose
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6754245/
https://www.ncbi.nlm.nih.gov/pubmed/31350303
http://dx.doi.org/10.2337/db19-0026
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author Bapputty, Reena
Talahalli, Ramaprasad
Zarini, Simona
Samuels, Ivy
Murphy, Robert
Gubitosi-Klug, Rose
author_facet Bapputty, Reena
Talahalli, Ramaprasad
Zarini, Simona
Samuels, Ivy
Murphy, Robert
Gubitosi-Klug, Rose
author_sort Bapputty, Reena
collection PubMed
description Chronic inflammation and oxidative stress are critical components in the pathogenic cascade of early diabetic retinopathy, characterized by neuronal and vascular degeneration. We investigated pharmacologic inhibition of the proinflammatory leukotriene cascade for therapeutic benefit in early diabetic retinopathy. Using the streptozotocin-induced diabetes mouse model, we administered montelukast, a leukotriene receptor antagonist, and diabetes-related retinal pathology was assessed. Early biochemical and cellular function measures were evaluated at 3 months’ diabetes duration and included vascular permeability, superoxide production, leukotriene generation, leukocyte-induced microvascular endothelial cell death, and retinal function by electroretinography. Histopathology assessments at 9 months’ diabetes duration included capillary degeneration and retinal ganglion cell loss. Leukotriene receptor antagonism resulted in a significant reduction of early, diabetes-induced retinal capillary leakage, superoxide generation, leukocyte adherence, and leukotriene generation. After 9 months of diabetes, the retinal microvasculature from untreated diabetic mice demonstrated a nearly threefold increase in capillary degeneration compared with nondiabetic mice. Montelukast inhibited the diabetes-induced capillary and neuronal degeneration, whether administered as a prevention strategy, immediately after induction of diabetes, or as an intervention strategy starting at 4.5 months after confirmation of diabetes. Pharmacologic blockade of the leukotriene pathway holds potential as a novel therapy to prevent or slow the development of diabetic retinopathy.
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spelling pubmed-67542452020-10-01 Montelukast Prevents Early Diabetic Retinopathy in Mice Bapputty, Reena Talahalli, Ramaprasad Zarini, Simona Samuels, Ivy Murphy, Robert Gubitosi-Klug, Rose Diabetes Complications Chronic inflammation and oxidative stress are critical components in the pathogenic cascade of early diabetic retinopathy, characterized by neuronal and vascular degeneration. We investigated pharmacologic inhibition of the proinflammatory leukotriene cascade for therapeutic benefit in early diabetic retinopathy. Using the streptozotocin-induced diabetes mouse model, we administered montelukast, a leukotriene receptor antagonist, and diabetes-related retinal pathology was assessed. Early biochemical and cellular function measures were evaluated at 3 months’ diabetes duration and included vascular permeability, superoxide production, leukotriene generation, leukocyte-induced microvascular endothelial cell death, and retinal function by electroretinography. Histopathology assessments at 9 months’ diabetes duration included capillary degeneration and retinal ganglion cell loss. Leukotriene receptor antagonism resulted in a significant reduction of early, diabetes-induced retinal capillary leakage, superoxide generation, leukocyte adherence, and leukotriene generation. After 9 months of diabetes, the retinal microvasculature from untreated diabetic mice demonstrated a nearly threefold increase in capillary degeneration compared with nondiabetic mice. Montelukast inhibited the diabetes-induced capillary and neuronal degeneration, whether administered as a prevention strategy, immediately after induction of diabetes, or as an intervention strategy starting at 4.5 months after confirmation of diabetes. Pharmacologic blockade of the leukotriene pathway holds potential as a novel therapy to prevent or slow the development of diabetic retinopathy. American Diabetes Association 2019-10 2019-07-19 /pmc/articles/PMC6754245/ /pubmed/31350303 http://dx.doi.org/10.2337/db19-0026 Text en © 2019 by the American Diabetes Association. http://www.diabetesjournals.org/content/licenseReaders may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. More information is available at http://www.diabetesjournals.org/content/license.
spellingShingle Complications
Bapputty, Reena
Talahalli, Ramaprasad
Zarini, Simona
Samuels, Ivy
Murphy, Robert
Gubitosi-Klug, Rose
Montelukast Prevents Early Diabetic Retinopathy in Mice
title Montelukast Prevents Early Diabetic Retinopathy in Mice
title_full Montelukast Prevents Early Diabetic Retinopathy in Mice
title_fullStr Montelukast Prevents Early Diabetic Retinopathy in Mice
title_full_unstemmed Montelukast Prevents Early Diabetic Retinopathy in Mice
title_short Montelukast Prevents Early Diabetic Retinopathy in Mice
title_sort montelukast prevents early diabetic retinopathy in mice
topic Complications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6754245/
https://www.ncbi.nlm.nih.gov/pubmed/31350303
http://dx.doi.org/10.2337/db19-0026
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