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image: Next Generation: Super-Fast Tracking of Single Molecules

Next Generation: Super-Fast Tracking of Single Molecules

By | November 23, 2016

A clever twist on a super-resolution microscopy technique improves the temporal resolution of single-molecule tracking. 

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Lawyers for PubPeer have obtained and posted the full investigation report from Wayne State University, which lists more than 140 misconduct allegations against pathologist Fazlul Sarkar.

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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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Results from experiments in mice revise a long-held hypothesis that certain protein scaffolds are needed for synaptic activity.

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The ribosome-associated organelle consists of tightly packed tubes, not flat sheets as previously believed, according to new super-resolution microscopy images.

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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: Week in Review: October 17–21

Week in Review: October 17–21

By | October 21, 2016

Report finds that pathologist involved in anonymous defamation case committed multiple acts of misconduct; growing eggs from stem cells; neutrophils’ role in metastasis; convergent evolution in birds

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image: Misconduct Finding Could Impact PubPeer Litigation

Misconduct Finding Could Impact PubPeer Litigation

By | October 19, 2016

Wayne State University’s conclusion that pathologist Fazlul Sarkar committed research misconduct could affect the ongoing legal proceedings related to anonymous critics of his work.

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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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