Remove 2015 Remove DNA Remove RNA Remove Small Molecule
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Reinventing the small molecule toolbox: from proteins to RNA

Dark Matter Blog

Prior to 2015, I had a casual relationship, at best, with targeting RNA. The bulk of my nearly three decades of experience up to that point was with drugging protein targets using a variety of modalities, but principally small molecules. Welcome to the RNA world.

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New trends in DNA-encoded library screening

Drug Discovery World

Matthew Clark , CEO of X-Chem, looks at what the future could hold for DNA-encoded library (DEL) technology. In the 13 years since it was first described, DNA-encoded library (DEL) technology has become a firmly established approach to small molecule hit generation in drug discovery. ACS Comb Sci (2015).

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Driving Toward Nanopores

Codon

And unlike traditional DNA sequencers, which parse genetic material by breaking it up into fragments and interpreting it chunk-by-chunk, a nanopore device unspools a long strand of DNA and reads it all at once. A scientist can isolate DNA and load up a flow cell in fifteen minutes. Nanopore devices work incredibly fast.

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Defense-Forward Biosecurity

Codon

Allison Berke makes the case for real-time DNA sequencing and AI tools to detect pathogens before they spread widely. Reading DNA The first step in detecting a novel pathogen is recognizing it as an anomaly amidst a noisy background of other material. After copying the DNA to form a big pool, each piece is sequenced.

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Codon Digest: Discovering Antibiotics with Deep Learning

Codon

This week: A way to measure a transgene’s expression in the brain using ultrasound, a DNA sequencing method that uses 1000x less reagents, and base editors get even smaller. An engineered version of this protein can convert DNA bases with efficiencies up to 92%. so this Digest will be published more irregularly.

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Codon Digest: Discovering Antibiotics with Deep Learning

Codon

This week: A way to measure a transgene’s expression in the brain using ultrasound, a DNA sequencing method that uses 1000x less reagents, and base editors get even smaller. An engineered version of this protein can convert DNA bases with efficiencies up to 92%. so this Digest will be published more irregularly.

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