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Published on: June 14, 2021
Somatostatin protects human retinal pericytes from inflammation mediated by microglia
Aurora Mazzeo1, Ana I Arroba2, Elena Beltramo1
1Dept of Medical Sciences, University of Turin, Corso AM Dogliotti 14, 10126 Torino, Italy.
Abstract:
Diabetic retinopathy (DR) is usually considered a microvascular disease. However, involvement of the neuroretina in the early stages of DR has recently gained major credit. Inflammatory processes, leading to glial activation and neuronal apoptosis, develop early in the retina of diabetic subjects. Pericytes constitute a link between the vascular and the neural retina, play a central role in blood-retinal barrier maintenance, and may influence neuroinflammation. Somatostatin (SST) is a potent neuroprotective factor, which is down-regulated during early DR. In this paper, we have investigated the effects of the inflammatory signals triggered by the activation of microglia on inflammation and apoptosis/survival pathways in pericytes. Microglia cells (Bv-2) were stimulated with lipopolysaccharide (LPS) and/or SST. Human retinal pericytes (HRP) were exposed to conditioned media (CM) collected from Bv-2 cells in physiological conditions and in the settings described above. A panel of inflammation, apoptosis and survival mediators was analyzed. HRP treated with LPS-CM showed a significant increase of pro-inflammatory (iNos and TNFα) and pro-apoptotic mediators (FasL, active caspase-8, tBid and Bax), and a concomitant decrease in pro-survival factors (BclxL and pAkt). SST added to LPS was able to counteract these effects in all conditions. In conclusion, SST is able to modulate apoptosis/survival pathways in HRP during microglia-mediated inflammation. These results demonstrate a crosstalk between microglia and retinal pericytes, evidencing a possible defensive role of microglia in the early phases of DR.
Insights
Somatostatin (SST) protects retinal pericytes from inflammation-induced apoptosis. This study reveals microglia-pericyte crosstalk, suggesting microglia may defend against early diabetic retinopathy (DR).
Area of Science:
- Ophthalmology
- Neuroscience
- Immunology
Background:
- Diabetic retinopathy (DR) involves neuroretinal changes early on, beyond microvascular damage.
- Microglia activation and neuroinflammation are early events in diabetic retinas.
- Retinal pericytes link vascular and neural retina, maintaining the blood-retinal barrier and influencing neuroinflammation.
Purpose of the Study:
- To investigate the impact of microglia-derived inflammatory signals on retinal pericyte inflammation and apoptosis.
- To explore the neuroprotective role of Somatostatin (SST) in this context.
Main Methods:
- Microglia (Bv-2) were stimulated with lipopolysaccharide (LPS) and/or SST.
- Human retinal pericytes (HRP) were exposed to conditioned media from stimulated microglia.
- Analysis of inflammatory, apoptotic, and survival mediators in HRP.
Main Results:
- LPS-stimulated microglia conditioned media increased pro-inflammatory and pro-apoptotic mediators in HRP.
- This treatment also decreased pro-survival factors in HRP.
- SST counteracted the detrimental effects of LPS-induced inflammation on HRP.
Conclusions:
- Somatostatin modulates apoptosis and survival pathways in retinal pericytes during microglia-mediated inflammation.
- Demonstrates crosstalk between microglia and retinal pericytes.
- Suggests a potential defensive role for microglia in early diabetic retinopathy.

