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tag cytochrome p450 developmental biology

New Technologies Shed Light on Caveolae
Ben Nichols | Jun 1, 2018 | 10+ min read
The functions of the cellular invaginations identified more than half a century ago are now beginning to be understood in detail.
How Orphan Drugs Became a Highly Profitable Industry
Diana Kwon | May 1, 2018 | 10+ min read
Government incentives, advances in technology, and an army of patient advocates have spun a successful market—but abuses of the system and exorbitant prices could cause a backlash.
What it Takes to Develop Better Drugs for Kids
J. Steven Leeder | Mar 1, 2012 | 4 min read
Over the past 15 years, new laws and regulations in the United States and the European Union have expanded to require the inclusion of pediatric patients in clinical drug trials.  
Flow Cytometry for the Masses
Richard P. Grant | Dec 1, 2011 | 2 min read
Tagging antibodies with rare earth metals instead of fluorescent molecules turns a veteran technique into a high-throughput powerhouse.
Top 7 in biochemistry
Cristina Luiggi | Jan 3, 2011 | 3 min read
A snapshot of the most highly ranked articles in biochemistry, from Faculty of 1000
Soybeans Hit Main Street
Barry Palevitz | Mar 19, 2000 | 8 min read
Once a favorite of Chinese emperors, tofu is now big time. From supermarkets to health food boutiques, diet-conscious Americans are buying soybeans, not just as tofu but in infant formula, soy milk, and soy burgers. Soy even has the Food and Drug Administration's seal of approval. Last October the FDA responded to a petition by Protein Technologies International, a St. Louis-based DuPont company specializing in soy products, by authorizing claims that soy protein is good for the heart. Acc
Death Watch II: Caspases and Apoptosis
Jorge Cortese | Jun 24, 2001 | 10 min read
Caspase Related Reagents Courtesy of Bingren Hu, Queen's Medical Center, Hawaii. Provided by Cell Signaling TechnologyConfocal micrograph of double immunostaining for cleaved caspase-3 (green) and propidium iodide (red) in newborn rat brain tissue. This section shows control and transient cerebral ischemia. Editor's Note: This is the second article in our two-part series on cell death. The first part: J. Cortese, "Death watch I: Cytotoxicity detection," The Scientist, 15[5]:26, March 5, 2001.
Accelerating X-ray Crystallography
Kelli Miller | Jan 12, 2003 | 8 min read
Courtesy of Astex Technology For years, the process of X-ray crystallography has moved at a tortoise's pace. "When I started in the field, it would typically take 20 person-years to produce a complete atomic model of one single protein. It was like a traffic jam in New York City. Every single part of the process was slow," says Stephen Burley, chief scientific officer and senior vice president of research at San Diego-based Structural GenomiX. The biggest holdup: obtaining a suitable crystal.
Reducing Malaria to its Constituent Parts
Eugene Russo | May 23, 2004 | 5 min read
FIRST BITE:Courtesy of CDC/Jim GathanyFemale Anopheles gambiae mosquito feeding.A decade ago, scientists around the world recognized that despite malaria's tremendous disease burden, research on the topic had stagnated. With funding at low levels, robust molecular biology tools numbered few. Today, genome sequences for Plasmodium falciparum, the parasite causing malaria, and for Anopheles gambiae, the mosquito that spreads it, have already fundamentally changed the research landscape. Plasmodium
Top 10 Innovations 2014
The Scientist | Dec 1, 2014 | 10+ min read
The list of the year’s best new products contains both perennial winners and innovative newcomers.

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