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Tome Biosciences debuts with $213M and a new way to edit the genome

Bio Pharma Dive

Based on the work of MIT scientists, the well-funded startup is developing ways to insert large sizes of genetic material anywhere in the genome without damaging or breaking DNA.

Genome 321
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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 161
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Uncovering packaging impurities with rAAV genome sequencing

Drug Discovery World

Join DDW for this exclusive free event, ‘ rAAV genome sequencing with Oxford Nanopore uncovers transgene integrity and packaging impurities ’. The post Uncovering packaging impurities with rAAV genome sequencing appeared first on Drug Discovery World (DDW). The event will be supported by Oxford Nanopore Technologies.

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DNA project gives scientists diverse genome for comparison

Medical Xpress

For two decades, scientists have been comparing every person's full set of DNA they study to a template that relies mostly on genetic material from one man affectionately known as "the guy from Buffalo."

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How rAAV genome sequencing uncovers transgene integrity

Drug Discovery World

Join DDW for this exclusive free event, ‘ rAAV genome sequencing with Oxford Nanopore uncovers transgene integrity and packaging impurities ’. The post How rAAV genome sequencing uncovers transgene integrity appeared first on Drug Discovery World (DDW). The event will be supported by Oxford Nanopore Technologies.

Genome 52
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rAAV Genome sequencing uncovers transgene integrity and packaging impurities

Drug Discovery World

Attendees will hear how library preparation, assessed data quality, and generated important rAAV metrics such as integrity of DNA cargo, truncation events, chimeric transgenes, and levels of co-packaged impurities were performed. A live Q&A session follows the webinar presentation.

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Novel technique opens up new possibilities in synthetic genomics

Drug Discovery World

A new technique to clone and reassemble DNA could simplify and lower the cost of making synthetic chromosomes, according to its creators at University of Southern California (USC) Dornsife. The thing about most synthetic genomics research is that it involves building chromosomes or genomes from scratch using chemically synthesised DNA pieces.

Genome 52