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Oxenrider, A.

Publications and source records attributed to Oxenrider, A..

2 recordsLinked to original sources

CYP46A1 Activation Improves Retinal Neovascularization in a Mouse Model of Retinopathy of Prematurity

Previous studies have shown the metabolic and regulatory significance of CYP46A1 in the adult retina; however, its role in the developing retina is unknown. Here, we evaluate CYP46A1 expression and the impact of its activation in the developing mouse retina under normal and pathological conditions. Seven-day-old (P7) C57BL/6J mice maintained in room air (controls) or subjected to oxygen-induced retinopathy (OIR) were treated with/without 20 mg/kg efavirenz (EFV), a CYP46A1 activator administered intraperitoneally from P7 to P17. Retinal cross sections and flat mounts were prepared to study retinal vasculature morphology, Muller and microglia activation, and ganglion cell viability. EFV treatment significantly reduced pathological neovascularization and the size of avascular and hypoxic areas in OIR mice retinas. EFV treatment additionally limited reactive gliosis and microglia activation and improved retinal ganglion cell survival in OIR mice. The current study demonstrates the developmental regulation of CYP46A1 and the dysregulated expression and levels of the downstream metabolite 24-Hydroxycholesterol (24HC) in OIR mice. The study further suggests that pharmacological CYP46A1 activation may improve key pathological features associated with pathological neovascularization in OIR mice.

biochemistry↗

Protective Effects of Butyrate on Retinal Neovascularization in Preclinical Retinopathy of Prematurity Models

Retinopathy of prematurity (ROP) remains a leading cause of childhood blindness worldwide, necessitating new therapeutic strategies. Current interventions targeting advanced disease stages often fail to prevent long-term visual impairment. This study investigates the potential of sodium butyrate (NaB), an orally administered short-chain fatty acid, in preclinical models of ROP. Using the oxygen-induced retinopathy (OIR) mouse model, we demonstrate that daily oral NaB supplementation significantly protects against pathological angiogenesis, impacting not only vascular but also neuronal and microglial pathology in the inner retina. Notably, NaB shows efficacy in early-phase ROP intervention, as evidenced by studies in postnatal day 9 (P9) OIR mice and a novel hyperglycemia-associated retinopathy (HAR) model that mimics the hyperglycemic conditions of many premature infants. These findings highlight NaB as a promising alternative or adjunct therapy to current anti-VEGF treatments, offering protection across multiple retinal cell types and stages of ROP development. The study underscores the need for further research to elucidate the specific mechanisms of NaBs action, paving the way for its potential clinical application in ROP management. This research marks the first exploration of butyrate as a preventative and therapeutic agent for ROP, setting the stage for additional preclinical evaluations and optimization.

pharmacology and toxicology↗