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tag work life balance developmental biology evolution
Microfluidics: Biology’s Liquid Revolution
Laura Tran, PhD
| Feb 26, 2024
| 8 min read
Microfluidic systems redefined biology by providing platforms that handle small fluid volumes, catalyzing advancements in cellular and molecular studies.
Yeast Made to Harvest Light Hint at Evolution’s Past
Kamal Nahas, PhD
| Feb 21, 2024
| 6 min read
Scientists transferred light-harvesting proteins into yeast for the first time, shining a light on the past lives of eukaryotic cells.
The Ephemeral Life of the Placenta
Danielle Gerhard, PhD
| Dec 4, 2023
| 10+ min read
Recent advances in modeling the human placenta, the least understood organ, may inform placental disorders like preeclampsia.
Turning on the Bat Signal
Hannah Thomasy, PhD
| Mar 15, 2024
| 10+ min read
Scientists around the world investigate how bat immune systems cope with viral attacks and how this information could be used to keep humans safe.
Balancing Life and Science
Jennifer Evans
| Jan 1, 2009
| 7 min read
How four successful scientists find time for their other passions, and why it's good for their science.
Directing Superior Reagents for Better PCR Results
The Scientist
and MilliporeSigma
| Oct 2, 2023
| 3 min read
Directed evolution approaches are creating new reagents to help a tried-and-true technique reach new heights.
One Protein to Rule Them All
Shelby Bradford, PhD
| Feb 28, 2024
| 10+ min read
p53 is possibly the most important protein for maintaining cellular function. Losing it is synonymous with cancer.
The Evolution of Cooperation
R. Ford Denison and Katherine Muller
| Jan 1, 2016
| 10+ min read
When and why individual organisms work together at the game of life, and what keeps cheaters in check
What Was the First Animal to Evolve a Brain?
Ida Emilie Steinmark, PhD
| Sep 1, 2023
| 1 min read
In the absence of a precise definition of brain, pinning down its origins is difficult. But scientists have a theory.
Walking Fish Model Evolution
Bob Grant
| Aug 28, 2014
| 2 min read
Raising a semi-terrestrial species on land highlights the role of developmental plasticity in the evolutionary transition from water to land.
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