VEGFR1 signaling in retinal angiogenesis and microinflammation

Сигнальная передача VEGFR1 при ангиогенезе сетчатки и микро-воспалении
Patrìcia A. D'Amore, Marcus Fruttiger, Akiyoshi Uemura, Sandro De Falco, Antonia M. Joussen, Florian Sennlaub, Lynne R. Brunck, Kristian T. Johnson, George N. Lambrou, Kay D. Rittenhouse, Thomas Langmann
2021-02-25

VEGF-A decoy functionVEGFR1 signalingmicroinflammationplacental growth factor (PlGF)retinal angiogenesis
Five vascular endothelial growth factor receptor (VEGFR) ligands (VEGF-A, -B, -C, -D, and placental growth factor [PlGF]) constitute the VEGF family. VEGF-A binds VEGF receptors 1 and 2 (VEGFR1/2), whereas VEGF-B and PlGF only bind VEGFR1. Although much research has been conducted on VEGFR2 to elucidate its key role in retinal diseases, recent efforts have shown the importance and involvement of VEGFR1 and its family of ligands in angiogenesis, vascular permeability, and microinflammatory cascades within the retina. Expression of VEGFR1 depends on the microenvironment, is differentially regulated under hypoxic and inflammatory conditions, and it has been detected in retinal and choroidal endothelial cells, pericytes, retinal and choroidal mononuclear phagocytes (including microglia), Müller cells, photoreceptor cells, and the retinal pigment epithelium. Whilst the VEGF-A decoy function of VEGFR1 is well established, consequences of its direct signaling are less clear. VEGFR1 activation can affect vascular permeability and induce macrophage and microglia production of proinflammatory and proangiogenic mediators. However the ability of the VEGFR1 ligands (VEGF-A, PlGF, and VEGF-B) to compete against each other for receptor binding and to heterodimerize complicates our understanding of the relative contribution of VEGFR1 signaling alone toward the pathologic processes seen in diabetic retinopathy, retinal vascular occlusions, retinopathy of prematurity, and age-related macular degeneration. Clinically, anti-VEGF drugs have proven transformational in these pathologies and their impact on modulation of VEGFR1 signaling is still an opportunity-rich field for further research.
1
Ligand competition and heterodimerization among VEGF-A, PlGF, and VEGF-B complicate attribution of pathological effects specifically to VEGFR1 signaling in retinal diseases.
2
VEGFR1 acts as a decoy for VEGF-A, but direct VEGFR1 signaling can increase vascular permeability and drive macrophage/microglia production of proinflammatory and proangiogenic mediators.
3
VEGFR1 and its ligands (VEGF-A, VEGF-B, PlGF) play important roles in retinal angiogenesis, vascular permeability, and microinflammatory cascades.
4
VEGFR1 expression is microenvironment-dependent and is differentially regulated under hypoxic and inflammatory conditions.
5
VEGFR1 is expressed in multiple retinal cell types including endothelial cells, pericytes, mononuclear phagocytes (including microglia), Müller cells, photoreceptors, and retinal pigment epithelium.

VEGFR1 signaling in the retina

Role and effects of VEGFR1 activation (and its ligands VEGF-A, VEGF-B, PlGF) on retinal angiogenesis, vascular permeability, and microinflammatory responses including macrophage/microglia production of proinflammatory and proangiogenic mediators

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2021-02-25
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Authors
Patrìcia A. D'Amore
Marcus Fruttiger
Akiyoshi Uemura
Sandro De Falco
Antonia M. Joussen
Florian Sennlaub
Lynne R. Brunck
Kristian T. Johnson
George N. Lambrou
Kay D. Rittenhouse
Thomas Langmann
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