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Tribbles Homolog 3 Mediates the Development and Progression of Diabetic Retinopathy

The current understanding of the molecular pathogenesis of diabetic retinopathy does not provide a mechanistic link between early molecular changes and the subsequent progression of the disease. In this study, we found that human diabetic retinas overexpressed TRIB3 and investigated the role of TRIB...

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Autores principales: Pitale, Priyamvada M., Saltykova, Irina V., Adu-Agyeiwaah, Yvonne, Calzi, Sergio Li, Satoh, Takashi, Akira, Shizuo, Gorbatyuk, Oleg, Boulton, Michael E., Pardue, Machelle T., Garvey, W. Timothy, Athar, Mohammad, Grant, Maria B., Gorbatyuk, Marina S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8385618/
https://www.ncbi.nlm.nih.gov/pubmed/33975909
http://dx.doi.org/10.2337/db20-1268
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author Pitale, Priyamvada M.
Saltykova, Irina V.
Adu-Agyeiwaah, Yvonne
Calzi, Sergio Li
Satoh, Takashi
Akira, Shizuo
Gorbatyuk, Oleg
Boulton, Michael E.
Pardue, Machelle T.
Garvey, W. Timothy
Athar, Mohammad
Grant, Maria B.
Gorbatyuk, Marina S.
author_facet Pitale, Priyamvada M.
Saltykova, Irina V.
Adu-Agyeiwaah, Yvonne
Calzi, Sergio Li
Satoh, Takashi
Akira, Shizuo
Gorbatyuk, Oleg
Boulton, Michael E.
Pardue, Machelle T.
Garvey, W. Timothy
Athar, Mohammad
Grant, Maria B.
Gorbatyuk, Marina S.
author_sort Pitale, Priyamvada M.
collection PubMed
description The current understanding of the molecular pathogenesis of diabetic retinopathy does not provide a mechanistic link between early molecular changes and the subsequent progression of the disease. In this study, we found that human diabetic retinas overexpressed TRIB3 and investigated the role of TRIB3 in diabetic retinal pathobiology in mice. We discovered that TRIB3 controlled major molecular events in early diabetic retinas via HIF1α-mediated regulation of retinal glucose flux, reprogramming cellular metabolism, and governing of inflammatory gene expression. These early molecular events further defined the development of neurovascular deficit observed in mice with diabetic retinopathy. TRIB3 ablation in the streptozotocin-induced mouse model led to significant retinal ganglion cell survival and functional restoration accompanied by a dramatic reduction in pericyte loss and acellular capillary formation. Under hypoxic conditions, TRIB3 contributed to advanced proliferative stages by significant upregulation of GFAP and VEGF expression, thus controlling gliosis and aberrant vascularization in oxygen-induced retinopathy mouse retinas. Overall, our data reveal that TRIB3 is a master regulator of diabetic retinal pathophysiology that may accelerate the onset and progression of diabetic retinopathy to proliferative stages in humans and present TRIB3 as a potentially novel therapeutic target for diabetic retinopathy.
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spelling pubmed-83856182021-09-09 Tribbles Homolog 3 Mediates the Development and Progression of Diabetic Retinopathy Pitale, Priyamvada M. Saltykova, Irina V. Adu-Agyeiwaah, Yvonne Calzi, Sergio Li Satoh, Takashi Akira, Shizuo Gorbatyuk, Oleg Boulton, Michael E. Pardue, Machelle T. Garvey, W. Timothy Athar, Mohammad Grant, Maria B. Gorbatyuk, Marina S. Diabetes Pathophysiology The current understanding of the molecular pathogenesis of diabetic retinopathy does not provide a mechanistic link between early molecular changes and the subsequent progression of the disease. In this study, we found that human diabetic retinas overexpressed TRIB3 and investigated the role of TRIB3 in diabetic retinal pathobiology in mice. We discovered that TRIB3 controlled major molecular events in early diabetic retinas via HIF1α-mediated regulation of retinal glucose flux, reprogramming cellular metabolism, and governing of inflammatory gene expression. These early molecular events further defined the development of neurovascular deficit observed in mice with diabetic retinopathy. TRIB3 ablation in the streptozotocin-induced mouse model led to significant retinal ganglion cell survival and functional restoration accompanied by a dramatic reduction in pericyte loss and acellular capillary formation. Under hypoxic conditions, TRIB3 contributed to advanced proliferative stages by significant upregulation of GFAP and VEGF expression, thus controlling gliosis and aberrant vascularization in oxygen-induced retinopathy mouse retinas. Overall, our data reveal that TRIB3 is a master regulator of diabetic retinal pathophysiology that may accelerate the onset and progression of diabetic retinopathy to proliferative stages in humans and present TRIB3 as a potentially novel therapeutic target for diabetic retinopathy. American Diabetes Association 2021-08 2021-05-11 /pmc/articles/PMC8385618/ /pubmed/33975909 http://dx.doi.org/10.2337/db20-1268 Text en © 2021 by the American Diabetes Association https://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 https://www.diabetesjournals.org/content/license.
spellingShingle Pathophysiology
Pitale, Priyamvada M.
Saltykova, Irina V.
Adu-Agyeiwaah, Yvonne
Calzi, Sergio Li
Satoh, Takashi
Akira, Shizuo
Gorbatyuk, Oleg
Boulton, Michael E.
Pardue, Machelle T.
Garvey, W. Timothy
Athar, Mohammad
Grant, Maria B.
Gorbatyuk, Marina S.
Tribbles Homolog 3 Mediates the Development and Progression of Diabetic Retinopathy
title Tribbles Homolog 3 Mediates the Development and Progression of Diabetic Retinopathy
title_full Tribbles Homolog 3 Mediates the Development and Progression of Diabetic Retinopathy
title_fullStr Tribbles Homolog 3 Mediates the Development and Progression of Diabetic Retinopathy
title_full_unstemmed Tribbles Homolog 3 Mediates the Development and Progression of Diabetic Retinopathy
title_short Tribbles Homolog 3 Mediates the Development and Progression of Diabetic Retinopathy
title_sort tribbles homolog 3 mediates the development and progression of diabetic retinopathy
topic Pathophysiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8385618/
https://www.ncbi.nlm.nih.gov/pubmed/33975909
http://dx.doi.org/10.2337/db20-1268
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