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Light-driven chemistry method could create antiviral compound libraries 10 to 100 times la

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Light-driven chemistry method could create antiviral compound libraries 10 to 100 times la

Light-driven chemistry method could create antiviral compound libraries 10 to 100 times larger within weeks. As the world faces new and often untreatable viral threats, Simon Fraser University researchers have found a way to cut years off the time it takes to discover antiviral drugs.

A apuração publicada por phys.org vira base para uma leitura editorial direta e contextualizada.

Trechos de apoio da pauta: As the world faces new and often untreatable viral threats, Simon Fraser University researchers have found a way to cut years off the time it takes to discover antiviral drugs. The new research enables scientists to quickly create large libraries of nucleoside analogs (NAs), compounds that mimic the building blocks of DNA and RNA and are widely used to treat cancer and viral infections such as HIV and hepatitis.

  • Ponto de atenção: light.
  • Ponto de atenção: driven.
  • Ponto de atenção: chemistry.

Em resumo, a leitura editorial acompanha o impacto do tema no nicho Meio Ambiente.

Artigo originalmente publicado em phys.org
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