Vol. 123, No. 1 (Supplement) 2018
Supplement abstract

NAP modulates inflammatory cytokines release and counteracts outer blood retinal barrier breakdown in diabetic rat retina

Agata Grazia D’Amico
an Raffaele Open University of Rome, Department of Human Science and Promotion of quality of Life, Roma
Grazia Maugeri
Section of Human Anatomy and Histology, University of Catania, Department of Biomedical and Biotechnological Sciences, University of Catania, Italy, Catania
Daniela Maria Rasà
Section of Animal Biology, University of Catania, Department of Biological, Geological and Environmental Sciences, University of Catania, Italy
Concetta Federico
3 Section of Animal Biology, University of Catania, Department of Biological, Geological and Environmental Sciences, University of Catania, Italy
Salvatore Saccone
Section of Animal Biology, University of Catania, Department of Biological, Geological and Environmental Sciences, University of Catania, Italy
Claudio Bucolo
Section of Pharmacology, University of Catania, Department of Biomedical and Biotechnological Sciences, University of Catania, Italy
Velia D’Agata
Section of Human Anatomy and Histology, University of Catania, Department o Biomedical and Biotechnological Sciences, University of Catania, Italy

Published 2020-05-29

Keywords

  • Diabetic retinopathy,
  • NAP,
  • blood retinal barrier,
  • inflammatory cytokines

How to Cite

D’Amico, A. G., Maugeri, G., Rasà, D. M., Federico, C., Saccone, S., Bucolo, C., & D’Agata, V. (2020). NAP modulates inflammatory cytokines release and counteracts outer blood retinal barrier breakdown in diabetic rat retina. Italian Journal of Anatomy and Embryology, 123(1), 74. https://doi.org/10.13128/ijae-11374

Abstract

Diabetic retinopathy (DR) is a common microvascular complication of diabetes. Prolonged hyper- glycaemia triggers inflammatory response mediated by release of some cytokines. Combination of these events leads to thinning retinal thickness and blood retinal barrier (BRB) impairment. Many evi- dences have shown the protective effect played by a small peptide, known as NAP, in some retinal diseases [1]. To this regard, we have recently demonstrated that it reduces apoptotic cell death and interferes with HIFs/VEGF system during early stage of DR [2, 3]. However, the effect of NAP on inflammatory process affecting hyperglycaemic retina has not been identified, yet.

In the present work, we have studied the effect of this peptide in retina of STZ-injected rats, mimicking an in vivo model of diabetes. Furthermore, we have also characterized its role on outer- BRB impairment following exposure of human retinal epithelial cells (ARPE 19) to hyperglycaemic/ inflammatory insult.

Results have demonstrated that a single intraocular injection of NAP modulates inflammatory cytokines expression by downregulating IL-1β and related receptors and upregulating IL-1Ra level in diabetic rat retina. These data have been confirmed by immunofluorescence analysis using confocal microscopy. IL-1β immunosignal increased in all retinal layers of diabetic rats as compared to con- trol. NAP treatment reduced cytokine immunoreactivity in inner plexiform layer (IPL), outer plexi- form layer (OPL) and rod and cone layer (RCL). We have also evaluated the effect of NAP on the outer-BRB integrity. ARPE19 monolayer hyperpermeability induced by hyperglycaemic/inflammatory insult was significantly reduced after NAP addition in the culture medium. This effect is also medi- ated through enhancement of tight-junction related proteins expression levels. In conclusion, charac- terization of NAP action mechanism may be useful to develop a new strategy to prevent retinal dam- age during DR.

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