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image: AACR Q&A: Elaine Mardis

AACR Q&A: Elaine Mardis

By | April 18, 2016

The genomics pioneer shares the sessions she most looks forward to at this year’s American Association for Cancer Research annual meeting.


image: Another Gene-Editing IPO

Another Gene-Editing IPO

By | April 12, 2016

Intellia Therapeutics, which seeks to develop CRISPR-based technologies to target rare diseases, is hoping to raise $120 million in an initial public offering.


image: Microglia Tamp Down Neurogenesis

Microglia Tamp Down Neurogenesis

By | April 7, 2016

The immune cells—known for clearing dead cells—also chew up live progenitors in neurogenic regions of mouse brains. 


image: One Way Placenta Deflects Zika Infection

One Way Placenta Deflects Zika Infection

By | April 5, 2016

Certain immune cells surrounding the organ appear to block viral entry.


image: Guts and Glory

Guts and Glory

By | April 1, 2016

An open mind and collaborative spirit have taken Hans Clevers on a journey from medicine to developmental biology, gastroenterology, cancer, and stem cells.

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image: Tumor Traps

Tumor Traps

By | April 1, 2016

After surgery to remove a tumor, neutrophils recruited to the site spit out sticky webs of DNA that aid cancer recurrence.


image: CRISPR Patent Investigation to Begin

CRISPR Patent Investigation to Begin

By | March 9, 2016

The US Patent and Trademark Office is set to launch its “patent interference” inquiry into the competing patents on the gene-editing technology.


image: More Support for Allergen-Exposure Strategy

More Support for Allergen-Exposure Strategy

By | March 8, 2016

A second study finds evidence that feeding children peanuts could help prevent them from developing allergies to the legume later in life.


image: Viral Remnants Help Regulate Human Immunity

Viral Remnants Help Regulate Human Immunity

By | March 3, 2016

Endogenous retroviruses in the human genome can regulate genes involved in innate immune responses.


image: Amoebae Have Human-Like Immunity

Amoebae Have Human-Like Immunity

By | March 2, 2016

Dictyostelium discoideum produce extracellular nets that can kill bacteria, just as phagocytes in people and other higher animals do, according to a study.


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