NanoViricides to Present COVID-19 Drug Update at The LD 500 Virtual Conference
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NanoViricides to Present COVID-19 Drug Update at The LD 500 Virtual Conference

SHELTON, CT / ACCESSWIRE / September 2, 2020 / NanoViricides, Inc. (NYSE American:NNVC) (the "Company") a global leader in the development of highly effective antiviral therapies based on a novel nanomedicines platform, today announced that it will be presenting at the LD 500 investor conference on Thursday, September 3rd at 8:20 AM PDT / 11:20 AM EDT. Anil R. Diwan, PhD, President and Executive Chairman of the Company, will be presenting to a live audience.

NanoViricides has successfully performed significant drug development work against COVID-19 and believes it is close to declaring a clinical candidate. Our current COVID-19 drug development candidates have shown efficacy against multiple different coronaviruses in our BSL2 virology lab. The Company believes this research provides scientific support that the virus would not be able to escape our drug candidate despite mutations, unlike many other drugs, antibodies and vaccines.

In addition, our current development candidates against COVID-19 have also been shown to be extremely safe in animal studies. Their effectiveness in cell culture and animal models has led us to believe that they are worthy of human clinical development.

Subsequently, the Company has completed CMC ("Chemistry, Manufacture, and Controls") studies that would be required for an IND ("Investigational New Drug) application to the U.S. FDA. The Company is also in the process of drafting sections of an IND for COVID-19 drug candidate. The Company is currently conducting studies to finalize its clinical candidate.

The Company develops its class of drugs, that we call nanoviricides®, using a platform technology. This approach enables rapid development of new drugs against a number of different viruses. A nanoviricide is a "biomimetic" - it is designed to "look like" the cell surface to the virus. The nanoviricide® technology enables direct attacks at multiple points on a virus particle. It is believed that such attacks would lead to the virus particle becoming ineffective at infecting cells. Antibodies in contrast attack a virus particle at only a maximum of two attachment points per antibody.

Because of the worldwide urgency of the pandemic caused by the SARS-CoV-2 virus, we have focused all our efforts recently on taking a drug against SARS-CoV-2 into human clinical trials for treatment of patients with COVID-19. An effective drug could potentially allow full-fledged opening of normal activities, including schools, businesses, and economies all over the world.