Remove Genetics Remove Genome Remove RNA Remove Vaccination
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Junk DNA: How the dark genome is changing RNA therapies

Drug Discovery World

Samir Ounzain , PhD, CEO & Co-Founder of HAYA Therapeutics, looks at how a better understanding of our DNA can lead to increased activity for RNA therapeutics. The whole world realised the power of RNA when the Covid-19 pandemic brought us the first mRNA-based vaccines.

RNA 52
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A new dawn of the genomic age: five areas set to be transformed in 2023

pharmaphorum

2022 was a banner year for genomics. In March, the collaborative T2T consortium published the first complete telomere-to-telomere sequence of the human genome, filling in the last 8% of the 3 billion base pairs that make up our DNA.

Genome 125
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Investment fuels AI-driven development of breakthrough genomic medicines

pharmaphorum

David Del Bourgo (CEO and co-founder, Whitelab Genomics) has always been passionate about introducing disruptive, innovative technologies to markets. We founded Whitelab Genomics after realising the potential to use data, data science, and AI in a more systematic way to develop genomic therapies,” Del Bourgo says.

Genome 100
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Small molecule targets SARS-CoV-2 RNA for destruction

Scienmag

Scientists are fighting back with multiple strategies, including vaccines, repurposed drugs developed for other diseases and brand-new therapies. Now, researchers reporting in ACS Central Science have identified small molecules that target a structure within the RNA genome […].

RNA 40
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Elixirgen Therapeutics’ Innovative Approach to mRNA Therapeutics

XTalks

In a field quickly gaining attention for its role in vaccine development and personalized medicine, Elixirgen Therapeutics stands out through its pursuit of innovation and safety. Founded in Baltimore, Maryland, a vibrant science hub, Elixirgen Therapeutics emerged from a vision to harness the untapped potential of mRNA technology.

Protein 52
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Molecular mechanisms of corona drug candidate Molnupiravir unraveled

The Pharma Data

The antiviral agent incorporates RNA-like building blocks into the RNA genome of the virus. If this genetic material is further replicated, defective RNA copies are produced and the pathogen can no longer spread. ” Mutations in the genome stop the virus.

RNA 52
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The Silent Mutations That Gave Coronavirus a Selective Advantage

XTalks

The answer may lie in the genetic code of the virus, which scientists at Duke University have found contains several silent mutations that affect protein folding. Moreover, Berrio says the changes likely affected the folding and function of viral RNA. The study was published on October 16 in the journal PeerJ.

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