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Immunomodulation of inflammatory responses preserves retinal integrity in murine models of pericyte-depletion retinopathy
Urbanus Muthai Kinuthia, Christoph Moehle, Ralf H. Adams, Thomas Langmann
Urbanus Muthai Kinuthia, Christoph Moehle, Ralf H. Adams, Thomas Langmann
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Research Article Immunology Ophthalmology

Immunomodulation of inflammatory responses preserves retinal integrity in murine models of pericyte-depletion retinopathy

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Abstract

The loss of integrity of the blood retina barrier (BRB) is a key pathological hallmark of vision-threatening complications in diabetic retinopathy (DR). Although DR is considered a microvascular disease, mounting evidence from mouse models and patients show that inflammation is closely connected with microvasculopathy. Inflammatory responses during retinal pathophysiology are often orchestrated by microglia, resident innate immune cells of the retina. However, the precise role of microglia activity during DR pathogenesis remains elusive. Here, we used an anti-PDGFRβ antibody and inducible endothelial cell–specific PDGFB-KO during postnatal development of retinal vasculature to reproduce a key feature of DR pathology in mice. In addition, we applied a minocycline therapy to modulate retinal inflammation. Postnatal depletion of pericytes or loss of PDGFB in retinal vessels altered BRB integrity and triggered secretion of angiogenic and inflammatory factors with concomitant microglia reactivity, which was sustained in retinas of adult mice. Microglia reactivity was accompanied by upregulation of disease-associated genes. Notably, minocycline attenuated the cycle of inflammatory responses in young and mature retinas, thereby preserving retinal vascular and structural integrity in mice. Together, our findings suggest that immunomodulation of microglia-driven inflammatory responses preserves retinal vasculature and maintains BRB integrity in 2 different mouse models of human DR.

Authors

Urbanus Muthai Kinuthia, Christoph Moehle, Ralf H. Adams, Thomas Langmann

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Figure 7

Depletion of PDGFB in retinal vascular endothelium.

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Depletion of PDGFB in retinal vascular endothelium.
(A) Schematic repres...
(A) Schematic representation of tamoxifen inducible depletion of PDGFB in retinal endothelium under the control of Ve-Cdh5 promoter. (B–D) qPCR analysis of mRNA expression levels of Pdgfb (B), Cdh5 (C), and Pdgfrβ (D). (E and F) Representative images of automated SD-OCT scans of mice retinas (E) and the corresponding SD-OCT heat maps (F). (G and H) Quantification of retina thickness within the central (G) and peripheral regions (H), corresponding to 3 mm and 6 mm, respectively, from the optic nerve head (n = 20 eyes per group). (I and J) Representative images of fluorescein angiography showing vessel engorgement and permeability (J, n = 20 eye per group). (K–N) IHC with Isolectin B4 showing vascular network in the capillary and superficial plexus (K), and analyses of vascular density (L), number of junctions (M) (n = 5–8 retinas), and capillary diameters (N) (n = 5–6 retinas). (O–Q) qPCR analyses of angiogenic factors Vegfa (O), Pgf (P), and Edn2 (Q) in whole retina lysates of 4-week-old mice (n = 8–10 retinas). Scale bar: 200 μm (E, F, and I) and 50 μm (K). *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001. Data show mean ± SD. One-way ANOVA.

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ISSN 2379-3708

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