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Novo Nordisk’s gene silencing alliance with Dicerna bears first fruit

pharmaphorum

Two years after starting to work together, Novo Nordisk and Dicerna have selected the first candidate from a joint project to find new, gene-silencing drugs for liver-related cardiometabolic diseases. The post Novo Nordisk’s gene silencing alliance with Dicerna bears first fruit appeared first on.

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Novo Nordisk snaps up RNAi partner Dicerna in $3.3bn takeover deal

pharmaphorum

Danish drugmaker Novo Nordisk must like what it has seen in its two-year-old alliance with gene-silencing specialist Dicerna Pharma – it has just agreed to acquire the biotech for $3.3 Once in the blood, the GalXC molecules travel to the liver, where they enter hepatocyte cells and can switch protein production on or off.

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Epigenetic Editing with CRISPR Might Be Easier Than We Thought

XTalks

Researchers at the University of California San Francisco (UCSF) and the Whitehead Institute have developed a novel CRISPR-based tool called “CRISPRoff” that can switch off genes in human cells through epigenetic editing without altering the genetic sequence itself. Epigenetic Editing with CRISPR.

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Using CRISPR to Edit the Epigenome Might Be Easier Than We Thought

XTalks

Researchers at the University of California San Francisco (UCSF) and the Whitehead Institute have developed a novel CRISPR-based tool called “CRISPRoff” that can switch off genes in human cells without editing the genetic sequence itself. These modifications regulate gene expression without altering the sequence or structure of DNA.

DNA 52
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World RNA Day: What impact RNA it had on drug discovery?  

Drug Discovery World

1 August was first chosen as World RNA Day in 2018 as a play on AUG (adenine, uracil and guanine), a triple sequence of RNA (called a codon) that initiates protein synthesis by the cell. Since then, it has been observed to publicise the importance of this molecule in the generation of proteins in the body.

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RNA Therapeutics: A Novel Approach to Treating Diseases

Roots Analysis

Coding RNAs include messenger RNA (mRNA) and short interfering RNA (siRNA), which encode proteins and silence gene expression, respectively. ASOs are short single-stranded nucleotides that bind to specific messenger RNAs and prevent the production of a particular protein.

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