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image: Blood Stem Cells Grown in the Lab

Blood Stem Cells Grown in the Lab

By | May 17, 2017

Researchers identify transcription factors and environmental conditions necessary to reprogram human and mouse cells into cells that function like hematopoietic stem cells.

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image: Stem Cell Trial Data Mostly Go Unpublished

Stem Cell Trial Data Mostly Go Unpublished

By | May 5, 2017

Less than half of completed stem cell studies in humans are published in peer-reviewed journals, according to an analysis of regenerative medicine trials. 

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image: Developing Brains in Dishes

Developing Brains in Dishes

By | April 26, 2017

Two studies report methods to mimic human fetal brain development using neurons derived from human induced pluripotent stem cells that form 3-D, brain-like structures. 

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image: CRISPR Corrects Duchenne-Causing Mutations

CRISPR Corrects Duchenne-Causing Mutations

By | April 12, 2017

Using CRISPR-Cpf1 gene editing, researchers have fixed mutations that cause a form of muscular dystrophy in cultured human cardiomyocytes and a mouse model.

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Octopus, cuttlefish, and squid extensively edit messenger RNAs in an evolutionarily conserved process. 

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image: Cross-Sample Sequencing Contamination Galore

Cross-Sample Sequencing Contamination Galore

By | April 5, 2017

Scientists conducting a large-scale, comparative transcriptomics project have inadvertently highlighted widespread contamination in sequencing data.

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image: CRISPR Screen Detects Functional Gene Regulation

CRISPR Screen Detects Functional Gene Regulation

By | April 3, 2017

A CRISPR-Cas9–based method probes the regulatory roles of noncoding DNA sequences.

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image: Should Healthy People Have Their Exomes Sequenced?

Should Healthy People Have Their Exomes Sequenced?

By | March 24, 2017

With its announced launch of a whole-exome sequencing service for apparently healthy individuals, Ambry Genetics is the latest company to enter this growing market. But whether these services are useful for most people remains up for debate.  

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Mitochondrial DNA polymerase is necessary for the destruction of paternal mtDNA in fruit fly sperm, scientists show.

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Proteins with unstable 3-D structures help the microscopic animals withstand drying.

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