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Top 10 Innovations 2013
The Scientist | Dec 1, 2013 | 10+ min read
The Scientist’s annual competition uncovered a bonanza of interesting technologies that made their way onto the market and into labs this year.
The Search for Persisters
Amanda B. Keener | Aug 11, 2015 | 4 min read
Lyme disease–causing bacteria can outmaneuver antibiotics in vitro and manipulate the mouse immune system.
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.
New Products
The Scientist Staff | Oct 2, 1994 | 8 min read
PP.22 Date:October 3, 1994 Molecular Bio-Products' Turbo Assay System is a membrane and manifold system for a wide variety of qualitative and quantitative assays. The system provides a format for colorimetric and radiometric assays and is said to reduce total assay time to as little as 15 minutes. The disposable 8-well assay strips ensure no cross-talk between samples. The incorporated membrane has a high protein binding capacity a
New Products
The Scientist Staff | Oct 2, 1994 | 8 min read
PP.22 Date:October 3, 1994 Molecular Bio-Products' Turbo Assay System is a membrane and manifold system for a wide variety of qualitative and quantitative assays. The system provides a format for colorimetric and radiometric assays and is said to reduce total assay time to as little as 15 minutes. The disposable 8-well assay strips ensure no cross-talk between samples. The incorporated membrane has a high protein binding capacity a
2020 Top 10 Innovations
The Scientist | Dec 1, 2020 | 10+ min read
From a rapid molecular test for COVID-19 to tools that can characterize the antibodies produced in the plasma of patients recovering from the disease, this year’s winners reflect the research community’s shared focus in a challenging year.
According to Protocol
Barbara Cunningham | Apr 15, 2001 | 8 min read
Nearly all scientists involved in basic biomedical research are familiar with the "Red Book" (Current Protocols in Molecular Biology)1 and Molecular Cloning: A Laboratory Manual.2 These well-known, time-tested books are still considered "bibles" in research laboratories, containing a wide range of basic techniques used by most life scientists. However, as scientific studies and experimental designs become more intricate and specialized, so do the techniques involved. As a result, detailed, "spec
Profiles of Infection
Douglas Steinberg(dsteinberg@the-scientist.com) | Nov 20, 2005 | 6 min read
Potential perils from bioterrorism to bird flu are increasingly pushing proteomics researchers to identify molecules involved in the infection process.
Research Notes
Ricki Lewis | Jun 11, 2000 | 5 min read
Microcolumns Collapse in Alzheimer's Brain Tangles and plaques are hallmarks of the Alzheimer's brain. Thanks to a technique borrowed from statistical physics, researchers from Boston University, the University of Minnesota, and Bar-Ilan University in Israel have quantified another sign: microcolumns of 11 neurons that are noticeably diminished in the Alzheimer's brain, and less so in the related condition Lewy body dementia. Using brains from a brain bank, the researchers probed a part of the
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

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