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Anika 14 yr old won $25,000 prize for a potential Covid-19 treatment

Anika Chebrolu, a 14-year-old from Texas, has just won the 2020 3M Young Scientist Challenge for her work on a potential drug to treat COVID-19, reports America media .
 
An Indian-American teenager schoolgirl has developed a molecule that can bind to a certain protein of the coronavirus and prevent it from functioning.
 
“I developed this molecule that can bind to a certain protein on the SARS-CoV-2 virus. This protein by binding to it it will stop the function of the protein,” the eight-grader was quoted as saying by ABC News.
 
“It’s exciting. I’m still trying to process everything,” she said of her big win.
 
Anika wasn’t always focused on the coronavirus. When the year began, she was working on ways to fight the seasonal flu.
 
Her plans changed when the pandemic hit. In order to find a potential drug for the highly infectious virus, the 14-year-old used multiple computer programs to identify how and where the molecule would bind to the SARS-CoV-2 virus.
 
Anika used in-silico methodology for drug discovery to find a molecule that can selectively bind to the Spike protein of the SARS-CoV-2 virus in an attempt to find a cure for the COVID-19 pandemic.
 
According to ABC News, it is not clear whether her research has been tested on a live model.
 
She told America media that the media hype around her science project is indicative of the fact that everyone wants the pandemic to end.
 
“The last two days, I saw that there is a lot of media hype about my project since it involves the SARS-CoV-2 virus and it reflects our collective hopes to end this pandemic as I, like everyone else, wish that we go back to our normal lives soon.”
Splco Reporter
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Mahal Popar
Mahal Popar
October 30, 2020 01:22

The effective molecule attaching on SARS-CoV-2 virus proteins was detected in may 2020, and the original paper was published as
preprint online. The name of the molecule is N-ACETY-D-GLUCOSAMINE, CHECK THIS LINK FOR DATA: https://www.preprints.org/manuscript/202005.0397/v1
Kind regards to all world.