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ASMS 2016: Targeting Mass Spectrometry Tools for the Masses
The expanding application range of MS in life sciences, food, energy, and health sciences research was highlighted at this year's ASMS meeting in San Antonio, Texas.
What Makes a Good Scientist?
It’s the journey, not just the destination that counts as a scientist when conducting research.
A New Tool Brings Personalized Medicine Closer
Scientists from EPFL and ETHZ have developed a powerful tool for exploring and determining the inherent biological differences between individuals, which overcomes a major hurdle for personalized medicine.
Rapid Retrieval of Live, Infectious Pathogens from Clinical Samples
An engineered pathogen-binding protein enables rapid isolation of infectious bacteria from joint fluids and accelerates their identification.
Getting a Better Look at How HIV Infects and Takes Over its Host Cells
A new approach, developed by a team of researchers led by The Rockefeller University and The Aaron Diamond AIDS Research Center (ADARC), offers an unprecedented view of how a virus infects and appropriates a host cell, step by step.
Detecting Fake Parmesan Cheeses
Scientists report on a way to catch adulteration of the regional artisanal products.
The Need for Speed
Evaluating MALDI-TOF as a high-throughput screening technology for the pharmaceutical industry.
Process Analysis in Real Time
With a real-time mass spectrometer developed by Fraunhofer researchers, it has become possible for the first time to analyze up to 30 components simultaneously from the gas phase and a liquid, including in-situ analysis.
Triple-Negative Breast Cancer Target Is Found
Researchers at UC Berkeley discover a target that drives cancer metabolism in triple-negative breast cancer.
Plasma Biomarkers for Breast Cancer Diagnosis
Plasma lipidomics profiling identified lipid biomarkers in distinguishing early-stage breast cancer from benign lesions.
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Novel ProteoPrep® 20 Immunoaffinity Depletion Resin for Human Plasma
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Sigma Aldrich

The study of the human plasma proteome is an area of hugeimportance, especially for the pharmaceutical potential ofidentifying disease biomarkers. Many proteins of interestappear at low concentrations in the plasma and are, therefore,difficult to detect.

Identification of potential biomarkers is especially difficult dueto the presence of higher abundance proteins. To addressthese issues, an affinity resin has been developed for removalof 20 high abundance proteins from 8 µl of plasma. Depletionof these abundant proteins allows for visualization of proteinsthat co-migrate with, and are masked by, the high abundanceproteins during 1-D or 2-D gel electrophoresis andHPLC separations. Plasma proteins can then be loaded ontogels, IPG strips, or HPLC columns at higher levels for improvedvisualization/detection of low copy number proteins.

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