Lysosomal Membrane Protein SCARB2 Mediates the Pathogenesis of Diabetic Retinopathy Through the MAPK / ERK / MMP9 Signaling Pathway

Diabetic retinopathy (DR), the most prevalent complication of diabetes, remains a major cause of preventable blindness in the working-age population. Retinal microvascular endothelial cell dysfunction is central to DR pathogenesis, and lysosomal pathways play a key role in regulating endothelial injury. This study aims to identify potential core regulators of endothelial dysfunction in DR and explore their regulatory mechanisms, thereby providing therapeutic targets for DR treatment. Transcriptome sequencing was first performed to screen for potential core regulators associated with endothelial dysfunction in DR. Scavenger receptor class B member 2 (SCARB2) was identified as a candidate. Two experimental models were constructed for validation: a HG-stimulated retinal microvascular endothelial cell model and a STZ-induced diabetic rat model. Western blot, tube formation assay, Transwell, EdU proliferation assay, immunofluorescence, and Evans Blue assay were conducted to evaluate the effect of SCARB2 on endothelial dysfunction. RNA-seq analysis was further used to explore the downstream signaling pathway of SCARB2. Transcriptome sequencing confirmed SCARB2 as a potential core regulator of endothelial dysfunction in DR. Under high-glucose conditions, elevated SCARB2 exacerbates retinal microvascular endothelial cell injury and promotes neovascularization and DR progression by upregulating VEGFR1 and VEGFA. Mechanistically, SCARB2 modulates MMP9 via the MAPK/ERK pathway, mediates endothelial cell migration and invasion, and facilitates pathological neovascularization. SCARB2 is a key regulator in the progression of diabetic retinopathy, which modulates endothelial dysfunction by regulating the MAPK/ERK/MMP9 signaling pathway. This study identifies SCARB2 as a novel potential therapeutic target for the treatment of diabetic retinopathy.

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Publication Details

Journal
The FASEB Journal
Published
2026-08-24
DOI
https://doi.org/10.1096/fj.202601737r
Primary Topic
Retinal Diseases and Treatments
Type
article
Field-Weighted Citation Impact
0.00

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article

Lysosomal Membrane Protein SCARB2 Mediates the Pathogenesis of Diabetic Retinopathy Through the MAPK / ERK / MMP9 Signaling Pathway

Jianghui Wang, Zhengxuan Jiang, Weiqian Cao, Yue Hao et al.
The FASEB Journal
Retinal Diseases and Treatments
article

Lysosomal Membrane Protein SCARB2 Mediates the Pathogenesis of Diabetic Retinopathy Through the MAPK / ERK / MMP9 Signaling Pathway

Jianghui Wang, Zhengxuan Jiang, Weiqian Cao, Yue Hao, Yulin Tao, Fangpu Zhang, Jiawei Fan, Xiang Gao
article en

Abstract

Diabetic retinopathy (DR), the most prevalent complication of diabetes, remains a major cause of preventable blindness in the working-age population. Retinal microvascular endothelial cell dysfunction is central to DR pathogenesis, and lysosomal pathways play a key role in regulating endothelial injury. This study aims to identify potential core regulators of endothelial dysfunction in DR and explore their regulatory mechanisms, thereby providing therapeutic targets for DR treatment. Transcriptome sequencing was first performed to screen for potential core regulators associated with endothelial dysfunction in DR. Scavenger receptor class B member 2 (SCARB2) was identified as a candidate. Two experimental models were constructed for validation: a HG-stimulated retinal microvascular endothelial cell model and a STZ-induced diabetic rat model. Western blot, tube formation assay, Transwell, EdU proliferation assay, immunofluorescence, and Evans Blue assay were conducted to evaluate the effect of SCARB2 on endothelial dysfunction. RNA-seq analysis was further used to explore the downstream signaling pathway of SCARB2. Transcriptome sequencing confirmed SCARB2 as a potential core regulator of endothelial dysfunction in DR. Under high-glucose conditions, elevated SCARB2 exacerbates retinal microvascular endothelial cell injury and promotes neovascularization and DR progression by upregulating VEGFR1 and VEGFA. Mechanistically, SCARB2 modulates MMP9 via the MAPK/ERK pathway, mediates endothelial cell migration and invasion, and facilitates pathological neovascularization. SCARB2 is a key regulator in the progression of diabetic retinopathy, which modulates endothelial dysfunction by regulating the MAPK/ERK/MMP9 signaling pathway. This study identifies SCARB2 as a novel potential therapeutic target for the treatment of diabetic retinopathy.

The FASEB JournalVol. 40(16)
Anhui Medical University (CN), Second Affiliated Hospital of Anhui Medical University (CN)
Natural Science Foundation for Distinguished Young Scholars of Anhui Province, National Natural Science Foundation of China
Openalex Percentile: Top 8%
Retinal Diseases and Treatments
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