New research carried out at the Hebrew University of Jerusalem suggests that several existing drugs should be studied as potential treatments for COVID-19.

Professor Isaiah Arkin of HU’s Department of Biological Chemistry and his team looked for antiviral drugs that exploit a weak link in many viruses—proteins called ion channels.

Arkin and his group focused on the E protein ion channel in the coronavirus membrane. They scanned a small library of substances already approved for use in humans and found two that block it: gliclazide (a drug used to treat diabetes) and memantine (used to treat Alzheimer’s disease).

Since all the inhibitors found are already approved for use in humans, Arkin expects a swift path to regulatory approval for clinical research.

“Thirty percent of the drugs available today have been approved in this way, including the drugs currently available against the coronavirus or those recently tested against this virus,” said Arkin.

Indeed, earlier Israeli research identified several other existing drugs that could be used to treat COVID-19.

He added that it’s safe to assume inhibitors of the E protein—an essential component of SARS-CoV-2—would be relevant to variants, even those against which current vaccines are less effective.

“The general feeling in Israel and around the world is that if there are vaccines, there is no reason to continue working on [treatments for] the virus because we have found a solution. Unfortunately, if we rely on one solution, the vaccine, we may find ourselves in a situation where a new variant [resists the vaccine],” said Arkin. “We’re not there yet, but the variants around the world are a warning light.”

His group hopes to publish another study on the effectiveness of the inhibitors against the entire virus and not just against the E protein.

“The stage is now set for in vitro and in vivo studies [in appropriate biosafety facilities] to examine the effects of the compounds on the virus,” the researchers concluded.

This article was first published by Israel21c.

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