RedHill Biopharma announced promising preliminary results from a preclinical study within which opaganib, a novel, orally administered sphingosine kinase 2 (SK2) selective inhibitor, (administered at 250mg/kg,) demonstrating a reduction of thrombosis (blood clotting) in an acute respiratory distress syndrome (ARDS) – a preclinical animal model designed to measure thrombotic (blood clot) risks.
This latest finding points towards another potential benefit of opaganib to COVID-19 patients – in addition to the already established inhibition of SARS-CoV-2 replication and the potential reduction in hyper immune-response by opaganib. Following these preliminary findings, additional work is being planned to evaluate the range of potential physiologically and pharmacologically relevant opaganib doses with respect to thrombosis reduction.
"Acute Respiratory Distress Syndrome (ARDS) is one of the most dangerous outcomes of COVID-19 disease, putting severely ill COVID-19 patients at an increased risk of potentially fatal venous thrombosis and pulmonary embolism. There are currently very limited options available to physicians that have been shown to be effective against ARDS, and specifically against ARDS-induced thrombosis," said Reza Fathi, PhD., RedHill's Senior VP, R&D. "Results from our study show opaganib 250 mg/kg reduced blood clot length, weight and total thrombus score in a preclinical model of ARDS. This adds to the known antiviral and anti-inflammatory activities of opaganib and provides the potential for a unique triple-action effect on the pathophysiological processes associated with COVID-19 disease. Opaganib, which targets a host cell component, potentially minimizes the likelihood for resistance due to viral mutations. Before the end of this month, we expect topline clinical data insights into the safety and potential efficacy signals of opaganib from the non-powered U.S. Phase 2 study in which the last patient has been given their last dose on November 26, followed in Q1/2021 by top-line data from the larger global Phase 2/3 study, which is powered for efficacy and already more than 60% enrolled."
"The ARDS thrombosis model we used to conduct this work is validated and highly predictive, and the results we saw with opaganib are impressive and provide reason for promise," said Sebastien Labbe, Ph.D., Director, Translational Research at IPS Therapeutique Inc., who carried out the study. "The results provide insight into a highly desirable potential effect of opaganib for use in managing patients with severe COVID-19, whose prognosis can be very poor."
ARDS-induced thrombosis may occur in up to one-third of COVID-19 patients requiring Intensive Care Unit (ICU) admission and up to 9% of all hospitalized patients and is associated with a poor prognosis. The preclinical study was designed to assess the efficacy of opaganib in reducing the incidence of adverse thromboembolic events in situ in the lipopolysaccharide (LPS)-induced model of pulmonary inflammation, a reliable model of ARDS that can mimic COVID-19 inflammation.
The results from the preclinical study of opaganib are preliminary and were provided to the Company by an independent third-party following an initial independent analysis and remain subject to additional review and analysis. Such review and analysis may result in findings inconsistent with the results disclosed in this release and may not be replicated in future preclinical or clinical studies.
Opaganib is a novel, orally administered, sphingosine kinase-2 (SK2) selective inhibitor with demonstrated dual anti-inflammatory and antiviral activity that acts on both the cause and the effects of COVID-19 disease, targeting a host cell component involved in viral replication, potentially minimizing likelihood of resistance due to viral mutations.
A U.S. Phase 2 study with opaganib in patients with severe COVID-19 pneumonia (NCT04414618) has completed enrollment of all 40 subjects, and the last patient has been given their last dose – top-line data is expected later this month. This Phase 2 study is not powered for efficacy and is focused on safety evaluation and identification ...










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