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Biology subjects

Gitterle, M.

Publications and source records attributed to Gitterle, M..

2 recordsLinked to original sources

Rejuveinix Mitigates Sepsis-Associated Oxidative Stress in the Brain of Mice: Clinical Impact Potential in COVID-19 and Nervous System Disorders

Here, we demonstrate that our anti-sepsis and COVID-19 drug candidate Rejuveinix (RJX) substantially improves the survival outcome in the LPS-GalN animal model of sepsis and multi-organ failure. One hundred (100) percent (%) of untreated control mice remained alive throughout the experiment. By comparison, 100% of LPS-GalN injected mice died at a median of 4.6 hours. In contrast to the invariably fatal treatment outcome of vehicle-treated control mice, 40% of mice treated with RJX (n=25) remained alive with a 2.4-fold longer median time survival time of 10.9 hours (Log-rank X2=20.60, P<0.0001). Notably, RJX increased the tissue levels of antioxidant enzymes SOD, CAT, and GSH-Px, and reduced oxidative stress in the brain. These findings demonstrate the clinical impact potential of RJX as a neuroprotective COVID-19 and sepsis drug candidate.

pharmacology and toxicology

Rejuveinix Reverses Severe Inflammatory Lung Damage in a Mouse Model of Fatal Sepsis

We set out to determine if our anti-sepsis drug candidate Rejuveinix (RJX) can effectively treat systemic inflammation in a mouse model of sepsis when used at a dose level that is >10-times lower than its maximum tolerated dose (MTD) for human subjects. Our findings obtained in the LPS-GalN mouse model of fatal sepsis provide experimental evidence that RJX exhibits potent single-agent anti-inflammatory activity and reverses very severe inflammatory lung injury when used therapeutically, thereby significantly improving the survival outcome. These findings demonstrate the clinical impact potential of RJX for the treatment of severe sepsis.

pharmacology and toxicology