Structural and functional study of the nervous system, also known as Neuroscience, is one of the scientific fields that has always crystallized the hopes and fantasy of humankind - not only interms of disease understanding and treatment but also in terms of capacity improvement.
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With the recent rise in the prevalence of celiac disease, monitoring gluten levels in food and beverage has become increasingly important as more people strive to avoid gluten.
This eBook highlights a selection of 3D cell model applications as well as Molecular Devices solutions for acquiring and visualizing quantitative data.
There is an increasing need to expand the variety and complexity of cell-based assays for biological research and drug discovery.
Modern cell biology requires a wide variety of applications to keep up with the numerous exciting directions that research takes us. Detection technologies ranging from fluorescence to cellular imaging have become common in today’s laboratories.
TSKgel FcR-IIIA-NPR is based on a recombinant FcγIIIa receptor ligand immobilized on a non-porous polymer particle. It allows fast assessment of biologic activity of monoclonal antibodies.
The advantages of detection of oxidative stress by high content analysis.
Cell death is a process that occurs as both a part of normal tissue homeostasis and can be aberrantly regulated in some disease states, specifically cancer.
Biomarker detection at ultra-sensitive levels, using your own proprietary antibodies
Prediction of Aggregation Propensity and Monitoring of Aggregation of Antibody-Drug Conjugates (ADC).
Microorganisms like bacteria, fungi, archaea, algae, protozoa, and viruses, known as microbes, play a critical role in many different phenomena. They are involved in climate change, nutrient cycling, biodegradation and diseases.
Cells are used as a working tool everyday in all R&D labs and quality checks must be performed in order not to compromise downstream experiments.
Immunohistochemistry (IHC) and immunocytochemistry (ICC) are techniques employed to localize antigen expression and are dependent on specific epitope-antibody interactions.
The advent of in vitro culturing of neural cells has been central to driving our understanding of the nervous system.
CD4+ T-cells play a central role in directing adaptive immune responses against invading microbial pathogens.