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March 4, 2026Journal of Clinical Investigation6 citationsOpen Access

Molecular stress and neurovascular injury in the diabetic retina

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CGChuanyu GuoJohns Hopkins UniversityASAkrit Sodhi

Key Points

  • This research investigates the relationship between molecular stress and neurovascular injury in diabetic retinopathy.
  • Exploration of glucose dysregulation and dysmetabolism effects on retinal injury.
  • Examination of oxidative stress and inflammation in relation to neuronal damage.
  • Focus on the role of HIF transcription factors in various retinal cell types.
  • Identified significant links between molecular stress and retinal vascular and neuronal injury.
  • Highlight that neurodegeneration can occur alongside or before vascular cell injury in diabetic retinopathy.
  • Suggest molecular mechanisms as novel targets for therapeutic intervention.

Abstract

Diabetic retinopathy (DR), the most common microvascular complication in patients with diabetes mellitus (DM), is a leading cause of vision loss worldwide. Sustained hyperglycemia plays a central role in promoting DR. However, tight glycemic control does not prevent - and indeed sometimes worsens - DR, highlighting the importance of ongoing studies aimed at improving our understanding of this complex disease. Over the last few decades, the dogma that DR is a vascular disease that results in secondary neuronal injury has evolved, as emerging evidence suggests that neurodegeneration occurs in parallel with or prior to vascular cell injury in the retina of patients with DM. This has led to appreciation of DR as a neurovascular disease, characterized by microvascular injury and neurodegeneration, both of which contribute to vision loss. Here, we explore how molecular stress (i.e., glucose dysregulation, dysmetabolism, oxidative stress, and inflammation) promote retinal vascular cell and neuronal injury in patients with DM. We focus on how these processes influence, and are influenced by, genes regulated by the HIF family of transcription factors in glial, vascular, neuronal, and inflammatory cells, with the goal of identifying new therapeutic avenues for the prevention or early treatment of patients with this vision-threating disease.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/69a7cc4cd48f933b5eed7e54https://doi.org/10.1172/jci200945
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