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image: Life Science Controversies of 2016

Life Science Controversies of 2016

By , , and | December 23, 2016

This year, the developers of CRISPR gene-editing technology argued over patent rights, a researcher fought to unmask anonymous PubPeer commenters, US regulators considered “three-parent” babies, and troubles continued for Theranos.

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Oncologists have raised concerns about a mouse study that suggests the vaccine for human papillomavirus could cause brain damage.

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image: Oligonucleotide Therapeutics Near Approval

Oligonucleotide Therapeutics Near Approval

By | December 1, 2016

Successful late-stage clinical trials could mark the maturation of a new drug development platform, but the path to commercialization is not without hurdles.

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image: More Success Fixing Sickle Cell Gene with CRISPR

More Success Fixing Sickle Cell Gene with CRISPR

By | November 9, 2016

Researchers say they have sufficient in vitro and animal data to apply for human testing.

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Family members with a certain gene variant had unnecessary interventions, highlighting the potential hazards of precision medicine.

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image: Zika Update

Zika Update

By | October 24, 2016

Virus’s effect on RNA methylation; identifying brain cells targeted by Zika; virus found in vaginal secretions for two weeks after infection; updated CDC recommendations for Miami

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image: Nixing NETs to Prevent Metastasis

Nixing NETs to Prevent Metastasis

By | October 19, 2016

Researchers discover that neutrophil extracellular traps help cancers spread, and design enzyme-loaded nanoparticles to destroy them.

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Once implanted in mice, the edited stem cells produced normal hemoglobin.

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image: Pet Meds Adapted from Human Therapies

Pet Meds Adapted from Human Therapies

By | October 1, 2016

Companies focused on developing treatments for dogs, cats, and horses are bringing a diverse array of products to the pet medicine market.

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image: Techniques for Assessing Genomic Copy Number Variations

Techniques for Assessing Genomic Copy Number Variations

By | October 1, 2016

As the importance of genomic copy number variations for health and disease becomes clearer, researchers are creating new ways to detect these changes in the genome.

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