Kinase Inhibitors: essential tools for your research
Kinase inhibitors have become essential players in the field of biomedical research. Kinases, as enzymes regulating numerous cellular processes, are key targets for studying biological
Kinase inhibitors have become essential players in the field of biomedical research. Kinases, as enzymes regulating numerous cellular processes, are key targets for studying biological
Biophysical characterization methods such as surface plasmon resonance (SPR) are powerful tools for characterizing molecular interactions and binding mechanisms, including antibody-antigen, protein-drug and protein-protein interactions.
Liver-expressed antimicrobial peptide 2 (LEAP-2) plays a crucial role in the innate immune system. Liver-expressed antimicrobial peptide 2 () plays a crucial role in the innate
This monthly focus highlights the use of Cayman’s products for the detection of Alzheimer’s disease. Alzheimer’s disease is a neurodegenerative disorder that primarily affects memory,
In 2021, Cayman Chemicals introduced 242 new products in its forensic range. This addition enlarged the current offer of analytical standards for forensic and toxicology
Protein extraction is an important process in the field of biochemistry and drug discovery. Protein extraction is an important process in the field of biochemistry and
Discover the Cayman catalog of steroid hormone test kits For years, the scientific community has been relying on Cayman steroid hormone assay kits for studying
Host cell proteins (HCPs) refer to proteins that are either produced or encoded by the host organisms utilized in the manufacturing of recombinant therapeutic proteins.
Tryptamines constitute a comprehensive class of indole-based compounds, many of which are biologically active. Cayman has over 50 experts chemists in internal standards synthesis for tryptamines
Evaluate Ghrelin levels in human plasma samples with Bertin Bioreagent Ghrelin is an octanoylated hormone produced by the gastrointestinal tract that regulates appetite and blood
Synthetic cannabinoids are functionally similar to Δ9-tetrahydrocannabinol (THC), the active principle of cannabis. Like THC, they bind to the same cannabinoid receptors in the brain
A major challenge of peptide quantification is to avoid matrix interference that can lead to biased results. Here we present a new sample preparation guide
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