2024
DOI: 10.1186/s12974-024-03075-x
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Pathological high intraocular pressure induces glial cell reactive proliferation contributing to neuroinflammation of the blood-retinal barrier via the NOX2/ET-1 axis-controlled ERK1/2 pathway

Xin Shi,
Panpan Li,
Marc Herb
et al.

Abstract: Background NADPH oxidase (NOX), a primary source of endothelial reactive oxygen species (ROS), is considered a key event in disrupting the integrity of the blood-retinal barrier. Abnormalities in neurovascular-coupled immune signaling herald the loss of ganglion cells in glaucoma. Persistent microglia-driven inflammation and cellular innate immune system dysregulation often lead to deteriorating retinal degeneration. However, the crosstalk between NOX and the retinal immune environment remains … Show more

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“…Besides, NADPH is a key coenzyme for the synthesis of lipids and cholesterol within cells, which is crucial for the membrane structure and function of retinal cells. In ophthalmic diseases, the synthesis and utilization of NADPH may be affected, leading to dysfunction of retinal cells ( 102 ). Therefore, maintaining the levels and functionality of NADPH is essential for protecting vision and treating ophthalmic diseases ( 103 ).…”
Section: Characteristics Of Ferroptosismentioning
confidence: 99%
“…Besides, NADPH is a key coenzyme for the synthesis of lipids and cholesterol within cells, which is crucial for the membrane structure and function of retinal cells. In ophthalmic diseases, the synthesis and utilization of NADPH may be affected, leading to dysfunction of retinal cells ( 102 ). Therefore, maintaining the levels and functionality of NADPH is essential for protecting vision and treating ophthalmic diseases ( 103 ).…”
Section: Characteristics Of Ferroptosismentioning
confidence: 99%