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Technical Note Icon   Technical Note
AlphaLISA Acetyl‑Histone H3 lysine 9 (H3K9ac) cellular assay
This technical note provides information on how the AlphaLISA immunodetection assay detects variations in acetylated histone H3 lysine 9 (H3K9ac) levels within cellular extracts
Technical Note Icon   Technical Note
AlphaLISA DOT1L histone H3 lysine-N-methyltransferase assay
This Technical Note will provide you with guidelines on the optimization of a DOT1L enzymatic assay using oligonucleosomes as the substrate
Technical Note Icon   Technical Note
Assessing AST released in a cell culture model of liver toxicity using AlphaLISA
In this technical note, we showcase the utility and advantages of using AlphaLISA assays to identify and quantify AST protein levels in cellular lysate and supernatant from a human hepatoma cell line
Technical Note Icon   Technical Note
AlphaLISA for biomarkers in urine: Measuring the renal tubular injury indicator, β2-microglobulin
In this study, AlphaLISA™ technology is demonstrated for the first time in the complex matrix of urine, and is shown to detect the renal tubular injury marker Beta2-microglobulin (β2-microglobulin), in urine at a sensitivity
Application Note Icon   Application Note
Alpha technology: a fast and sensitive orthogonal approach to cell-based potency assays
Learn why Alpha technology is an ideal cell-free orthogonal system for potency assays.
Application Note Icon   Application Note
Performing AlphaLISA assays with RPMI-1640
This application note provides alternatives for working with samples in RPMI medium, which contains high levels of biotin
Technical Note Icon   Technical Note
AlphaLISA Di/Mono-Methyl-Histone H3 Lysine 27 (H3K27me2-1) cellular detection kit
The AlphaLISA™ immunodetection assay tracks variations in cellular extract levels of di-methylated histone H3 lysine 27 (H3K27me2-1)
Technical Note Icon   Technical Note
AlphaLISA KAT5 (TIP60) assay
This AlphaLISA™ immunodetection assay measures the acetylation of a Histone H4 (1-25) peptide at the N-terminal lysine residues.
Protocol/SOP   Protocol/SOP
SOP: IVISbrite tumor cell culture guidelines
Cell culture guidelines for IVISbrite tumor cell lines
Flyer Icon   Flyer
The 5 most common mistakes to avoid when culturing IVISbrite tumor cells
Flyer outlining the 5 most common mistakes to avoid when culturing IVISbrite tumor cells.
Application Note Icon   Application Note
Improved deep-tissue imaging with red-shifted luciferase tumor cell lines
The application note demonstrates how our IVISbrite tumor cell lines labeled with red-shifted luciferase (Red F-luc) yields a 100-fold higher signal intensity compared to competitor luciferase labeled cells. The increased brightness of our Red F-luc bioluminescent cells lines enable deeper tissue imaging of tumors.
Infographic Icon   Infographic
GPCRs and their prevalence in drug therapies
Discover a detailed GPCR infographic with biology background and approved drug therapies.
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