刊名 | Progress in Public Health and Preventive Medicine | ||||
作者 | Jing Wang1,2, Shufen Fang2, Jue Wang2, Weiwei Liu2, Fanjun Meng2, Xue Zhou2, Lei Gao3,4, Linna Zhang1, * | 英文名 | Electronic Communication Technology | 年,卷(期) | 2025年,第1期 |
主办单位 | 睿核出版社有限公司 | 刊号 | DOI |
Background: Retinal hypoxia is linked to the onset and progression of blinding retinal vascular diseases, such as diabetic retinopathy (DR). This study aims to investigate the role and associated molecular mechanisms of HIF-1α in mice with DR. Methods: Streptozotocin (STZ) was utilized to induce diabetic mouse models. Hematoxylin and Eosin (H&E) staining and Fundus Fluorescein Angiography (FFA) assays were employed to analyze retinal structure and observe the fundus of the mice. A Western blot assay was conducted to measure the protein levels of HIF-1α, GDNF, NRTN, LC3, P16, P21, PPAR-γ, and SIRT1 in retinal tissues. PX-478, an inhibitor of HIF-1α, was administered to treat STZ-induced mice, and Evans Blue staining was performed to assess the impact of HIF-1α depletion on blood-retinal barrier (BRB) function. Results: Through H&E staining and FFA assays, we successfully established a model of diabetic retinopathy (DR) in mice. In retinal tissues isolated from STZ-induced mice, the protein levels of HIF-1α, P16, P21, and PPAR-γ were found to be elevated, while the protein levels of GDNF, NRTN, LC3, and SIRT1 were decreased. Following treatment with PX-478, the reduction in protein levels of GDNF, NRTN, LC3, and SIRT1 was halted, and the elevated protein levels of HIF-1α, P16, P21, and PPAR-γ were also suppressed. Furthermore, PX-478 demonstrated an ability to enhance the permeability of the BRB in mice with DR. Conclusions: We have demonstrated the role of HIF-1α in diabetic retinopathy (DR), which may provide a stronger theoretical basis for clinical treatment. This finding holds significant implications for preventing blindness and improving the survival rate of patients with DR.
营业时间:9;00-11:30 13:30-18:00
地址:香港九龍新蒲崗太子道東704號新時代工貿商業中心31樓5-11室A03單位
RM A03,UNIT5-11,31/F,NEW TREND CENTRE, 704 PRINCE EDWARD ROAD EAST,SAN PO KONG,KOWLOON
邮箱:1711201256@qq.com
客服QQ:1711201256