Remove DNA Remove Engineer Remove Genomics
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Tome acquires startup Replace, gaining new genome editing tools

Bio Pharma Dive

The deal is the second startup sale engineered by University of California, Berkeley scientist Shakked Halperin, and gives Tome a way to insert or delete small DNA sequences into the genome.

Genome 182
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Opinion: Where are the guidelines for the production of animals with intentional genomic alterations?

STAT News

Genetic engineering has the potential to transform how we raise animals for meat and other products, making food safer, improving animal health and welfare, and shrinking animal agriculture’s environmental footprint. Pigs that are less likely to induce allergic reactions in humans. Read the rest…

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Generating Over a Billion Cells with CRISPR for Next Generation Cell Therapies

XTalks

CRISPR is notable for engineering living cells, allowing scientists to edit, turn off, delete, or replace genes in a cell’s genome. Viral vectors have traditionally been used in gene editing where the shells of viruses carry the template DNA into cells, but this method has its disadvantages.

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The world’s first DNA ‘tricorder’ in your pocket

Scienmag

Credit: CSHL Cold Spring Harbor Laboratory (CSHL) scientists developed the world’s first mobile genome sequence analyzer, a new iPhone app called iGenomics. By pairing an iPhone with a handheld DNA sequencer, users can create a mobile genetics laboratory, reminiscent of the “tricorder” featured in Star Trek.

DNA 74
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Bringing in Light Genome Editing Techniques: ZFN, TALEN and Meganucleases

Roots Analysis

Gene engineering based on recombination was pioneered in the mid-1990s; Currently, development of gene editing technologies has opened up the possibility of modifying genomic sequences in both eukaryotic and prokaryotic organisms. Genome Editing is a way of making changes in the DNA.

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STAT+: CRISPR? Nah. A new startup bets on an old approach to gene editing

STAT News

Before there was CRISPR, aspiring genome editors relied on an island of misfit, less elegantly named enzymes: Zinc-finger nucleases, TALENs, recombinases. They were stubborn, inflexible enzymes, requiring endless engineering. They were stubborn, inflexible enzymes, requiring endless engineering.

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Artificial Intelligence innovation: Leading companies in in-silico drug discovery

Pharmaceutical Technology

Within the emerging innovation stage, DNA chips, tissue culturing automation, and mass spectrometry analysis are disruptive technologies that are in the early stages of application and should be tracked closely. Codexis, a protein engineering company, is the leading patent filer.

Drugs 189