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Flowering Regulation Mechanism Discovered
Monash researchers have discovered a new mechanism that enables plants to regulate their flowering in response to raised temperatures.
Turning Skin Cells into Heart, Brain Cells
In a major breakthrough, scientists at the Gladstone Institutes transformed skin cells into heart cells and brain cells using a combination of chemicals.
Nanoparticles Present Sustainable Way to Grow Food Crops
Nanoparticle technology can help reduce the need for fertilizer, creating a more sustainable way to grow crops such as mung beans.
How Scientists Use DNA to Track Disease Outbreaks
They’re the top questions on everyone’s mind when a new disease outbreak happens: where did the virus come from? When did this happen? How long has it been spreading in a particular country or group of people?
Genetic Risk Factors of Disparate Diseases Share Similar Biological Underpinnings
Penn Institute for Biomedical Informatics and colleagues identify "roadmap" of disease mechanisms to identify candidate drug targets.
Drugs that May Combat Deadly Antibiotic-Resistant Bacteria Uncovered
Study identifies 79 compounds that inhibit carbapenem-resistant Enterobacteriaceae (CRE).
Stem Cells Know How to Unwind
Research led by the Babraham Institute with collaborators in the UK, Canada and Japan has revealed a new understanding of how an open genome structure supports the long-term and unrestricted developmental potential in embryonic stem cells.
HIV Particles Used to Trap Intact Mammalian Protein Complexes
Belgian scientists from VIB and UGent developed Virotrap, a viral particle sorting approach for purifying protein complexes under native conditions.
Childhood Asthma Research Receives $2M
Research into the impact of a child’s upbringing and social and physical environments on the development of asthma will receive $2 million to tackle the condition that affects as many as one in three Canadians.
Growing Stem Cells More Safely
Nurturing stem cells atop a bed of mouse cells works well, but is a non-starter for transplants to patients – Brown University scientists are developing a synthetic bed instead.
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Expanding Possibilities for Compound Library Generation in Flow with Immobilized and Exchangeable Reagents
Noah Tu, Senior Scientist, Abbvie Inc, Speaking at Flow Chemistry Congress.

Disease Modelling and Drug Discovery in Neurological Disorders
Zameel Cader, Director and Principal Scientist, IMI StemBANCC, University of Oxford, speaking at Stem Cells in Drug Discovery.

Cardiac iPSCs for Drug Discovery
Joseph Wu, Director, Stanford Cardiovascular Institute, speaking at Stem Cells in Drug Discovery.

Rapid and Sensitive Identification of Host Cell Proteins with SWATH® LC-MS Acquisition
Learn how Stemcentrx has employed SWATH Acquisition and the TripleTOF® 6600 LC-MS system to dramatically increase the speed of acquisition of HCP data, with exceptional sensitivity.

Solutions Beyond Water - Successfully pipetting problematic liquids
Join us to learn how to best handle problematic liquids.

How to optimize sample preparation step prior to extraction
In this free to attend On Demand webcast presented by Stephane Karoubi, Product Manager, and Sophie Dubacq, Application Engineer, from Bertin Technologies.

Innovative Benign-by-design Flow Chemistry Protocols: From Nanomaterials Synthesis to Biomass/Waste Valorization
On demand webinar from Professor Rafael Luque, Universidad de Cordoba.

Lab-on-Chip Platform Technologies for Point-of-Care Testing and Cell Culturing
This presentation focuses on recent advances in platform technologies developed at Micronit for applications within point-of-care diagnostics and cell culturing. A few examples developed within research projects are presented to illustrate the applicability of the developed technologies.

The Bru-seq Technology Platform for Nascent RNA analysis
Mats Ljungman, Professor, University of Michigan will present a set of novel techniques to analyze many aspects of gene expression based on the capturing of nascent RNA.

A New Proteomics Workflow for the Identification of PTMs (Post Translational Modifications)
Quantitative proteomics is an essential tool in molecular biology and biomedical sciences. SILAC is a commonly used workflow in which proteins are labelled with stable isotopes, digested into peptides and separated by chromatography for detection in a mass spectrometer.

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