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Carina Storrs | Feb 1, 2014 | 7 min read
A guide to DNA-encoded libraries for drug discovery
Week in Review: June 16–20
Tracy Vence | Jun 20, 2014 | 2 min read
Early Neanderthal evolution; developing antivirals to combat polio; the mouth and skin microbiomes; insect-inspired, flight-stabilizing sensors
An Offensive Playbook
Mary Beth Aberlin | Feb 1, 2014 | 3 min read
Developing nonaddictive drugs to combat pain
The Scientist’s 2019 Gift Guide
Emily Makowski | Dec 13, 2019 | 2 min read
Wishing you a sciency season’s greetings!
Capsule Reviews
Annie Gottlieb | Mar 1, 2013 | 3 min read
The Undead, Frankenstein's Cat, The Universe Within, and Physics in Mind
Behavior Brief
Hayley Dunning | Jun 15, 2012 | 4 min read
A round-up of recent discoveries in behavior research
Automated Colony Pickers Evolve
Helen Dell(hdell@the-scientist.com) | Jul 3, 2005 | 6 min read
Everyone knows that the first genome sequencing projects took years of work and represent the combined product of tens of thousands of individual fragments.
Six Scientists Are Added To Ranks Of Prestigious MacArthur Fellows
Karen Young Kreeger | Sep 1, 1996 | 9 min read
SOLVING REAL-WORLD PROBLEMS: MacArthur fellow Vonnie McLoyd's research combines concepts in socioeconomics, psychology, and anthropology. This year's John D. and Catherine T. MacArthur Foundation fellowships will help six scientists advance their cutting-edge, multidisciplinary projects that extend from the ocean depths to distant stars and planets. With grants of about $250,000 or more, the newly named fellows will be able to finance innovative-even maverick-research ideas that might otherwis
Surpassing the Law of Averages
Jeffrey M. Perkel | Sep 1, 2009 | 7 min read
By Jeffrey M. Perkel Surpassing the Law of Averages How to expose the behaviors of genes, RNA, proteins, and metabolites in single cells. By necessity or convenience, almost everything we know about biochemistry and molecular biology derives from bulk behavior: From gene regulation to Michaelis-Menten kinetics, we understand biology in terms of what the “average” cell in a population does. But, as Jonathan Weissman of the University of Califo
Using Transgenesis to Create Salt-Tolerant Plants
Ricki Lewis | Mar 3, 2002 | 6 min read
Crop agriculture has succeeded because growers have identified and cultivated useful plant variants through selective breeding and environmental alterations. Transgenic technology improves the precision of agriculture, modifying crops in ways that are uniquely useful that probably would not have arisen naturally. Salt tolerance is one such coveted trait. Recent research on promoting salt tolerance through transgenesis focuses on boosting salt-sequestering physiological mechanisms within species,

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