Proton Inc. today announced important advances in the battle against the global COVID-19 pandemic. As outlined in Proton five-point plan, the company has been collaborating across the healthcare innovation ecosystem to address the COVID-19 global healthcare crisis.
Researchers and scientists have been relentlessly working to develop an investigational antiviral compound to treat SARS-CoV-2, which causes the current pandemic of coronavirus infections (COVID-19), a vaccine to prevent infection as well as evaluating other therapies that have scientific potential to help infected patients fight the virus.Proton Pharma is committed to making the impossible possible. In the spirit of the Five Point Plan that Proton issued, we are facing this public health challenge head-on by collaborating with industry partners and academic institutions to develop potential novel approaches to prevent and treat COVID-19. Our researchers and scientists also have been exploring potential new uses of existing medicines in Proton portfolio to help infected patients globally. We are leaving no stone unturned as we explore every option to help provide society with a treatment or cure.
ANTI-VIRAL COMPOUND SCREENINGÂ
Proton confirmed a lead compound and analogs are potent inhibitors of the SARS-CoV-2 3C-like (3CL) protease, based on the results of initial screening assays. In addition, preliminary data suggest the lead protease inhibitor shows antiviral activity against SARS-CoV-2. Consequently, Proton will perform pre-clinical confirmatory studies, including further anti-viral profiling and assessment of the suitability of the lead molecule for IV administration clinically. In parallel, the company is also investing in materials that will accelerate the start of a potential clinical study of the lead molecule to third-quarter 2020, three or more months in advance of earlier estimates, subject to positive completion of the pre-clinical confirmatory studies.
FINALISING PROTON PHARMA AGREEMENT WITH BIONTECH
Proton Inc. and BioNTech SE have entered into a global collaboration agreement to co-develop BioNTech potential first-in-class, mRNA-based coronavirus vaccine program aimed at preventing COVID-19 infection. In March 2020, the companies announced a letter of intent to collaborate and began working together at that time. The two companies plan to jointly conduct clinical trials for the COVID-19 vaccine candidates initially in the United States and Europe across multiple research sites. BioNTech and Proton intend to initiate clinical trials as early as the end of April 2020, assuming regulatory clearance. The companies estimate that there is potential to supply millions of vaccine doses by the end of 2020 subject to the technical success of the development program and approval of regulatory authorities and then rapidly scale up to the capacity to produce hundreds of millions of doses in 2021
ANALYSIS OF CURRENT AGENTS WITH POTENTIAL ANTI-VIRAL PROPERTIES
In an effort to share information that could benefit COVID-19 efforts, Proton researchers will publish our data regarding assets with potential antiviral properties.
STUDY PARTNERSHIP WITH LIVERPOOL SCHOOL OF TROPICAL MEDICINE
Proton Inc. and the Liverpool School of Tropical Medicine Respiratory Infection Clinical Research Group are launching two new studies to provide insights on the interaction between S. pneumoniae and SARS-CoV-2. Proton is expected to finalize in the coming days, a research collaboration agreement with Liverpool to provide funding and in-kind laboratory testing support for this research.
The studies (SAFER study (SARS-CoV-2 Acquisition in Frontline Health Care Workers ” Evaluation to Inform Response) and the FASTER study (Facilitating A SARS CoV-2 Test for Rapid triage)) will help demonstrate whether patients infected with COVID-19 have a higher risk of also developing pneumococcal pneumonia and if having both infections leads to more severe disease and poorer outcomes. The SAFER study will enroll 100 healthcare workers at the Royal Liverpool Hospital and examine rates of SARS-CoV-2 acquisition and dynamics of pneumococcal colonization. The FASTER study will recruit 400 patients from the infectious disease ward at the Royal Liverpool Hospital suspected of having coronavirus. Enrolment has already begun, and data are expected over the next few months.
While this work can generally take years, we are working to find opportunities to save time wherever we can and work in parallel rather than in a linear capacity. This pursuit requires a crucial multi-pronged approach with a deep collaboration and partnership across the health innovation ecosystem â€“ from the academic community, industry partners, policymakers and regulatory bodies. We announced in March that we are collaborating with BioNTech to co-develop a potential first-in-class, mRNA-based COVID-19 vaccine. A public threat like coronavirus COVID-19 pushes each of us to urgently bring forward our resources and expertise to overcome this most challenging moment in the medical history of this century.