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Updated: Jun 21, 2025

Characterization of a Novel Human Organotypic Retinal Culture Technique
Published on: June 9, 2021
Aberration in myeloid-derived pro-angiogenic cells in type-2 diabetes mellitus; implication for diabetic retinopathy?
Mahnaz Shariatzadeh1, Trishika R R Binda1, Conny van Holten-Neelen2
1Department of Immunology, Erasmus University Medical Center, Rotterdam, Netherlands.
Purpose:
Diabetic retinopathy (DR) is a major microvascular complication of type 2 diabetes mellitus (T2DM). Myelomonocytic proangiogenic cells (PAC) have been implicated in DR pathogenesis, but their functional and developmental abnormalities are unclear. In this study we assessed PAC characteristics from healthy controls, T2DM patients with DR (DR) and without (NoDR) in order to determine the consequence of the diabetic condition on PAC phenotype and function, and whether these differ between DR and NoDR patients.
Methods:
PAC were generated by culturing PBMC on fibronectin coating and then immunophenotyped using flow cytometry. Furthermore, cells were sorted based on CD14, CD105, and CD133 expression and added to an in vitro 3-D endothelial tubule formation assay, containing GFP-expressing human retinal endothelial cells (REC), pericytes, and pro-angiogenic growth factors. Tubule formation was quantified by fluorescence microscopy and image analysis. Moreover, sorted populations were analyzed for angiogenic mediator production using a multiplex assay.
Results:
The expression of CD16, CD105 and CD31, but not CD133, was lower in PAC from T2DM patients with or without DR. Myeloid and non-myeloid T2DM-derived sorted populations increased REC angiogenesis in vitro as compared to control cultures. They also showed increased S100A8 secretion, decreased VEGF-A secretion, and similar levels of IL-8, HGF, and IL-3 as compared to healthy control (HC)-derived cell populations.
Conclusion:
T2DM PAC are phenotypically and functionally altered compared to PAC from HC. Differences between DR and NoDR PAC are limited. We propose that impaired T2DM PAC provide inadequate vascular support and promote compensatory, albeit pathological, retinal neovascularization.
Insights
Type 2 diabetes mellitus (T2DM) alters proangiogenic cells (PAC), impacting their function in diabetic retinopathy (DR). While T2DM PAC show functional changes, differences between DR and non-DR patients were minimal, suggesting impaired vascular support.
Area of Science:
- Ophthalmology
- Endocrinology
- Cell Biology
Background:
- Diabetic retinopathy (DR) is a significant microvascular complication of type 2 diabetes mellitus (T2DM).
- Proangiogenic cells (PAC) are implicated in DR, but their specific abnormalities in T2DM are not fully understood.
- Understanding PAC phenotype and function in T2DM is crucial for elucidating DR pathogenesis.
Purpose of the Study:
- To assess PAC characteristics in healthy controls, T2DM patients with DR, and T2DM patients without DR.
- To determine the impact of diabetes on PAC phenotype and function.
- To identify differences in PAC between DR and non-DR T2DM patients.
Main Methods:
- PAC were generated from peripheral blood mononuclear cells (PBMC) and immunophenotyped.
- Cells were sorted based on CD14, CD105, and CD133 expression.
- An in vitro 3-D endothelial tubule formation assay was used to assess angiogenic potential and mediator production.
Main Results:
- PAC from T2DM patients (with or without DR) showed lower expression of CD16, CD105, and CD31 compared to controls.
- T2DM-derived PAC populations enhanced endothelial cell angiogenesis in vitro.
- Increased S100A8 and decreased VEGF-A secretion were observed in T2DM PAC.
Conclusions:
- PAC in T2DM exhibit altered phenotype and function compared to healthy controls.
- Limited differences were found between DR and non-DR T2DM PAC.
- Impaired T2DM PAC may lead to inadequate vascular support and pathological retinal neovascularization.
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