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Vascular Deletion of HDAC6 Ameliorates Diabetic Retinal Microangiopathy and Diabetic Retinopathy in an Experimental Model of Type 1 Diabetes.

Vascular Deletion of HDAC6 Ameliorates Diabetic Retinal Microangiopathy and Diabetic Retinopathy in an Experimental Model of Type 1 Diabetes.

期刊: Cells 日期: 2026-07-10 PMID: 42505354 DOI: 10.3390/cells15141244 浏览: 8
作者: Ngumbi S, Gad MS, Mahrous M, Ijaz A, Orecchioni M, Bollinger K, Bartoli M
S, N., MS, G., M, M., A, I., M, O., K, B., & M, B. (2026). Vascular Deletion of HDAC6 Ameliorates Diabetic Retinal Microangiopathy and Diabetic Retinopathy in an Experimental Model of Type 1 Diabetes.. Cells. https://doi.org/10.3390/cells15141244
S N, MS G, M M, A I, M O, K B, et al. Vascular Deletion of HDAC6 Ameliorates Diabetic Retinal Microangiopathy and Diabetic Retinopathy in an Experimental Model of Type 1 Diabetes.. Cells. 2026; doi: 10.3390/cells15141244
S N, MS G, M M, et al. Vascular Deletion of HDAC6 Ameliorates Diabetic Retinal Microangiopathy and Diabetic Retinopathy in an Experimental Model of Type 1 Diabetes.[J]. Cells. 2026. DOI: 10.3390/cells15141244.
@article{s2026,
  author = {Ngumbi S and Gad MS and Mahrous M and Ijaz A and Orecchioni M and Bollinger K and Bartoli M},
  title = {Vascular Deletion of HDAC6 Ameliorates Diabetic Retinal Microangiopathy and Diabetic Retinopathy in an Experimental Model of Type 1 Diabetes.},
  journal = {Cells},
  year = {2026},
  doi = {10.3390/cells15141244},
  note = {PMID: 42505354},
}
TY  - JOUR
AU  - Ngumbi S
AU  - Gad MS
AU  - Mahrous M
AU  - Ijaz A
AU  - Orecchioni M
AU  - Bollinger K
AU  - Bartoli M
TI  - Vascular Deletion of HDAC6 Ameliorates Diabetic Retinal Microangiopathy and Diabetic Retinopathy in an Experimental Model of Type 1 Diabetes.
T2  - Cells
PY  - 2026
DO  - 10.3390/cells15141244
AN  - PMID:42505354
ER  - 

摘要

Diabetic retinopathy (DR) is a leading cause of vision loss among working-age adults and is characterized by progressive retinal microvascular dysfunction driven by hyperglycemia-induced inflammation and oxidative stress. Histone deacetylase 6 (HDAC6), a cytoplasmic deacetylase involved in multiple cellular processes, has been implicated in vascular pathology; however, its specific role in retinal endothelial cells remains unclear. In this study, we investigated whether endothelial-specific deletion of HDAC6 protects against diabetic retinal injury. Endothelial HDAC6 knockout mice were generated using VE-cadherin-Cre recombination and subjected to streptozotocin-induced diabetes. Retinal vascular integrity, inflammatory and oxidative stress responses, endothelial senescence, and visual function were assessed during the course of hyperglycemia. Diabetic control mice developed characteristic features of DR, including vascular dysfunction, heightened inflammatory and oxidative stress responses, increased endothelial senescence, and impaired visual function. In contrast, endothelial-specific HDAC6 deletion markedly attenuated these pathological changes, preserving retinal vascular integrity and visual performance while reducing oxidative stress and inflammation. These findings identify endothelial HDAC6 as a key contributor to diabetes-induced retinal vascular injury and suggest that targeting endothelial HDAC6 may represent a promising therapeutic strategy for preventing microvascular damage and vision loss in DR.

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