Technical Articles
Homogeneous Assay
UA-Glo® Glucose Uptake Luminescence Assay Kit: A glucose uptake detection solution based on 2DG6P quantification and bioluminescence technology
Glucose uptake is the initial step in cellular energy metabolism and one of the core indicators for assessing cellular metabolic activity and insulin sensitivity. In fields such as metabolic biology, diabetes research, tumor metabolism, and drug discovery, accurately measuring a cell's ability to uptake glucose serves as a critical experimental basis for understanding cellular functional states and the effects of compound interventions.
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- Metabolism
- UA-Glo
- glucose uptake assay
- 2-deoxyglucose
- 2DG6P
- luminescence
- NADH
- luciferase
- homogeneous assay
- metabolic research
UA-Glo® Glycogen Assay Kit: A Glycogen Quantification Solution Based on Enzyme-Coupled Luminescence Technology
Glycogen is the primary storage form of glucose in living organisms, widely present in the liver, skeletal muscles, and various cell types. As a key molecule in cellular energy metabolism, the synthesis, storage, and breakdown of glycogen directly reflect the energy status and metabolic activity of cells. In fields such as metabolic biology, cell physiology, and drug discovery, the accurate quantification of glycogen content is one of the core indicators for assessing cellular metabolic states and the effects of compound interventions.
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- Signaling Pathway
- UA-Glo
- Glycogen detection
- Luminescence assay
- Glucoamylase
- Glucose dehydrogenase
- NADPH
- Luciferase
- Homogeneous assay
Love the new! CyQuantiFluor™ Cell Viability Assay Kit
The CyQuantiFluor™ Cell Viability Assay Kit is a homogeneous detection kit based on DNA-specific fluorescent dyes. Its core principle is: DNA-binding dyes can penetrate the membranes of live cells and bind to nuclear DNA to produce strong fluorescence, with fluorescence intensity proportional to the number of viable cells; background-shielding dyes cannot enter live cells but can block fluorescence signals from DNA released by dead cells and extracellular DNA, ensuring detection specificity. This method does not rely on cellular metabolic state and directly quantifies the DNA content of live cells, offering advantages such as simple operation (one-step addition), high signal-to-noise ratio, and excellent stability. It is suitable for tumor cell proliferation assays and high-throughput compound screening.
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- Drug Research
- CyQuantiFluor
- Cell Viability Assay
- Cell Proliferation
- Cytotoxicity
- DNA-binding Dye
- High-throughput Screening
- Homogeneous Assay
CyQuantiFluor™ Live Cell Quantitative Kit: A New Choice for Homogeneous and Accurate Cell Viability Detection
In cell-based pharmacological screening, tumor proliferation research, and in vitro cytotoxicity evaluation, accurate live cell counting is the core prerequisite for reliable data. Traditional metabolism-dependent detection reagents such as MTT and CCK-8 are prone to interference from metabolic fluctuations and drug effects, leading to frequent numerical deviations. Conventional nucleic acid staining kits often suffer from interference by extracellular free DNA, with non-specific fluorescence elevating background values, hindering the implementation of high-throughput screening. U-爱Bio's self-developed CyQuantiFluor™ Cell Viability Assay Kit leverages dual-dye cooperative shielding technology, breaking free from metabolism-dependent limitations. With its homogeneous operation advantages, it has become the preferred tool for cell proliferation, cytotoxicity, and high-throughput small-molecule drug screening.
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- Cancer
- CyQuantiFluor
- Cell Viability Assay
- Cell Proliferation
- Cytotoxicity
- DNA-binding Dye
- High-throughput Screening
- Homogeneous Assay
CyQuantiFluor™ Cell Viability Assay Kit: A Precise Live Cell Quantification Solution Based on DNA-Specific Dyes
Cell viability and proliferation assays are among the most fundamental and essential experimental techniques in cell biology, drug screening, and toxicology research. Traditional methods such as MTT and CCK-8 rely on the activity of intracellular metabolic enzymes to convert substrates into colored or fluorescent products, thereby indirectly reflecting the number of viable cells.
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- Drug Research
- CyQuantiFluor
- Cell Viability Assay
- Cell Proliferation
- Cytotoxicity
- DNA-binding Dye
- High-throughput Screening
- Homogeneous Assay
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