Related Experiment Video
Updated: May 22, 2026

Behavioral Assessment of Visual Function via Optomotor Response and Cognitive Function via Y-Maze in Diabetic Rats
Published on: October 23, 2020
Bone marrow-CNS connections: implications in the pathogenesis of diabetic retinopathy
Jane Yellowlees Douglas1, Ashay D Bhatwadekar, Sergio Li Calzi
1Clinical and Translational Science Institute, College of Medicine, University of Florida, Gainesville, FL 32610, USA.
Abstract:
Diabetic retinopathy is the fourth most common cause of blindness in adults. Current therapies, including anti-VEGF therapy, have partial efficacy in arresting the progression of proliferative diabetic retinopathy and diabetic macular edema. This review provides an overview of a novel, innovative approach to viewing diabetic retinopathy as the result of an inflammatory cycle that affects the bone marrow (BM) and the central and sympathetic nervous systems. Diabetes associated inflammation may be the result of BM neuropathy which skews haematopoiesis towards generation of increased inflammatory cells but also reduces production of endothelial progenitor cells responsible for maintaining healthy endothelial function and renewal. The resulting systemic inflammation further impacts the hypothalamus, promoting insulin resistance and diabetes, and initiates an inflammatory cascade that adversely impacts both macrovascular and microvascular complications, including diabetic retinopathy (DR). This review examines the idea of using anti-inflammatory agents that cross not only the blood-retinal barrier to enter the retina but also have the capability to target the central nervous system and cross the blood-brain barrier to reduce neuroinflammation. This neuroinflammation in key sympathetic centers serves to not only perpetuate BM pathology but promote insulin resistance which is characteristic of type 2 diabetic patients (T2D) but is also seen in T1D. A case series of morbidly obese T2D patients with retinopathy and neuropathy treated with minocycline, a well-tolerated antibiotic that crosses both the blood-retina and blood-brain barrier is presented. Our results indicates that minocycine shows promise for improving visual acuity, reducing pain from peripheral neuropathy, promoting weight loss and improving blood pressure control and we postulate that these observed beneficial effects are due to a reduction of chronic inflammation.
Insights
Diabetic retinopathy may stem from a systemic inflammatory cycle impacting bone marrow and nervous systems. Targeting neuroinflammation with agents like minocycline shows promise for improving diabetic complications.
Area of Science:
- Ophthalmology
- Endocrinology
- Neuroscience
Background:
- Diabetic retinopathy (DR) is a leading cause of adult blindness.
- Current anti-VEGF therapies offer limited efficacy for proliferative DR and diabetic macular edema.
- DR may be linked to a systemic inflammatory cycle involving bone marrow and nervous systems.
Purpose of the Study:
- To review a novel approach viewing diabetic retinopathy as a result of neuroinflammation.
- To examine the potential of anti-inflammatory agents targeting both the blood-retinal and blood-brain barriers.
- To present a case series on minocycline's efficacy in treating DR and associated complications.
Main Methods:
- Literature review on the inflammatory cycle in diabetic complications.
- Analysis of minocycline's properties (crossing blood-retinal and blood-brain barriers).
- Case series of morbidly obese T2D patients with retinopathy and neuropathy treated with minocycline.
Main Results:
- Minocycline treatment in a case series showed promise for improving visual acuity.
- Patients experienced reduced peripheral neuropathy pain, weight loss, and improved blood pressure.
- Observed benefits are postulated to result from minocycline's reduction of chronic inflammation.
Conclusions:
- Diabetic retinopathy may be addressed by targeting systemic neuroinflammation.
- Minocycline demonstrates potential as a therapeutic agent for DR and associated diabetic complications.
- Further research is warranted to validate minocycline's role in managing diabetic retinopathy.
Related Concept Videos
Diabetic Retinopathy
Diabetic Neuropathy
Type I Diabetes II: Pathophysiology
Pathophysiology of Diabetes
Type 1 diabetes is characterized by autoimmune-mediated destruction of pancreatic β cells, with environmental factors potentially triggering this process in genetically susceptible individuals. Despite many not having a family history, certain genes increase susceptibility, suggesting a...
Diabetic Nephropathy
Type II Diabetes II: Pathophysiology

