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tag translocation evolution culture immunology

Top 10 Innovations 2021
2021 Top 10 Innovations
The Scientist | Dec 1, 2021 | 10+ min read
The COVID-19 pandemic is still with us. Biomedical innovation has rallied to address that pressing concern while continuing to tackle broader research challenges.
microbiome drugs
How the Microbiome Influences Drug Action
Shawna Williams | Jul 15, 2019 | 10+ min read
Through their effects on metabolism and immunity, bacteria in the gut affect whether medications will be effective for a given patient.
A Push and a Pull for PARP-1 in Aging
Jack Lucentini(jlucentini@the-scientist.com) | Aug 1, 2005 | 6 min read
Understanding the mechanisms that underlie aging remains a bedeviling problem, but not because of a lack of answers.
Mitochondria at the Crossroads of Life and Death
Amy Adams | Oct 10, 2004 | 8 min read
Professors P. Motta & T. Naguro/Photo ResearchersEach of our cells hangs in a delicate balance between life and death. Which path the cell takes depends on a dense web of signaling pathways that all converge on a single cellular switch, the mitochondrion. Most of the time, pro-life signals keep the mitochondrial membrane intact and encourage the organelle to churn out ATP. But when signals from the outside or accumulated toxins within the cell tip the scales, mitochondria push the cell down
Recourse to Death
Michael Brush | Aug 20, 2000 | 10 min read
Manufactureres of Flow Cytometry Products for Apoptosis Detection To examine the causes of life, we must first have recourse to death," uttered Victor Frankenstein upon beginning his search for the source from "whence the principle of life proceeds" and ultimately creating his nameless monster. Frankenstein's real creator, 19-year-old Mary Shelley, probably had no idea when Frankenstein was first published in 1816 that her main character's motivation would eventually have real-life implication
Illuminating Behaviors
Douglas Steinberg | Jun 1, 2003 | 6 min read
Courtesy of Genevieve Anderson If not for Nobel laureates Thomas Hunt Morgan, Eric R. Kandel, and Sydney Brenner, the notion of a general behavioral model might seem odd. Behaviors, after all, are determined by an animal's evolutionary history and ecological niche. They are often idiosyncratic, shared in detail only by closely related species. But, thanks to Morgan's research in the early 20th century, and Kandel's and Brenner's work over the past 35 years, the fly Drosophila melanogaster, t
All's Well that Ends Well: A Profile of Specialty Microwell Plates
Brent Johnson | Sep 26, 1999 | 10+ min read
Date: September 27, 1999Table of Specialty Microplates The story of the microplate is one of those tales of history that either has been forgotten or was never clearly understood. According to Barry Lazar of Dynex Technologies, formerly Dynatech Laboratories, the origin of what is now commonly referred to by Dynex's registered trademark of Microtiter plates began with Gyola Takatsy, a Hungarian-born scientist who was trying to scale down serology tests. His first prototype became available in 1
Articles Alert
Simon Silver | Jul 8, 1990 | 7 min read
The Scientist has asked a group of experts to comment periodically upon recent articles that they have found noteworthy. Their selections, presented herein every issue, are neither endorsements of content nor the result of systematic searching. Rather, the list represents personal choices of articles the columnists believe the scientific community as a whole may also find interesting. Reprints of any articles cited here may be ordered through The Genuine Article, 3501 Market St., Philadelphia,
Biochemical, Reagents Kits Offer Scientists Good Return On Investment
Holly Ahern | Jul 23, 1995 | 8 min read
Investment Author:Holly Ahern If you were to ask several life scientists to name a particular biochemical product that they simply could not do without, you'd probably get a myriad of answers that would mirror the research interests of the group you questioned. A molecular evolutionist trying to differentiate two closely related species of monkeys by restriction fragment-length polymorphism (RFLP) analysis might cite restriction enzymes, which can cut DNA into pieces of varying length. A cell b

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