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Moderna partners with Life Edit for mRNA gene editing therapies

Pharmaceutical Technology

Moderna has entered a strategic research and development partnership with ElevateBio’s Life Edit Therapeutics to discover and develop new in-vivo mRNA gene editing therapies. The company’s nuclease collection includes several Protospacer Adjacent Motifs (PAMs), short sequences that help determine the genome’s DNA segments.

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New CRISPR-Based Tool Called PASTE Gene Editing Inserts Large DNA Sequences at Desired Sites

XTalks

Expanding upon the CRISPR-Cas9 gene editing system, researchers at MIT have designed a new technique called PASTE gene editing that can cut out defective genes and replace them with new genes in a safer and more efficient way. The PASTE gene editing technique was recently published in Nature Biotechnology.

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Delivering on the promise of gene editing

Drug Discovery World

As gene editing technologies like CRISPR progress toward clinical study, researchers must continue to advance new approaches and address inherent challenges, explains Jon Chesnut, PhD, Senior Director, Cell Biology R&D, Thermo Fisher Scientific. Early phase clinical trials for gene editing therapies.

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Vertex signs licence deal with CRISPR Therapeutics for diabetes therapies

Pharmaceutical Technology

Under the terms of the deal, the company will receive non-exclusive rights to CRISPR/Cas9, a gene-editing technology of CRISPR Therapeutics, for the development of potentially curative T1D cell therapies. The gene-editing technology allows for precise, directed changes to genomic DNA.

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New CRISPR-ready neurons could democratise genomics

Drug Discovery World

With ioCRISPR-Ready Cells, we’re putting the future of genomics in the hands of every scientist. The neurons arrive ready-to-use and can enable researchers to achieve functional experimental readouts in days and without prior expertise in iPSC differentiation or guide RNA delivery optimisation.

Genome 52
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Why genomic healthcare data matters in the development of new therapies 

Drug Discovery World

Genomic healthcare data is critical to identify disease risk, ancestry, traits and response to medicines and aids in the development of new targeted therapies – precision medicines. In April 2003, after its launch in October 1990, the project was completed, generating the first sequence of the human genome. The origins .

Genome 98
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RNA interference method could treat muscular dystrophy

Drug Discovery World

Japanese researchers propose using RNA interference for correcting a mistake in the genetic code of patients with Fukuyama muscular dystrophy. . One form of FCMD is caused by a genetic abnormality in the ‘fukutin’ (FKTN) gene. One form of FCMD is caused by a genetic abnormality in the ‘fukutin’ (FKTN) gene.

RNA 52