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Specifications
- Assay duration:Multiple steps
- Assay Type (ELISA with LOV):Competitive
- Conjugate ELISA:Biotin
- Format:Pre-coated
- Host:Rabbit
- Primary antibody reactivity:Multiple
- Target protein:ATP
- Size:1 Kit
- Environmentally Preferable:
- Sample Type:Serum, Plasma, Tissue homogenates, Cell lysates, Cell culture supernates and other biological fluids
- Cross Reactivity:No significant cross-reactivity or interference between Adenosine Triphosphate (ATP) and analogues was observed
- Detection Method:Colorimetric
- Time to Results:2 h
- Shelf Life:12 Months
- Detection Range:12.35 - 1000 ng/ml
- Storage Temperature:4 °C for one month (frequent use), −20 °C for one year
- Sample Volume:50 µl
- Sensitivity:4.33 ng/ml
- Regulatory Status:RUO
- Cat. No.:MSPP-CEA349GE
- No. of tests:96 wells
Specifications
About this item
This assay has high sensitivity and excellent specificity for detecting General species ATP (Adenosine Triphosphate). The assay range is from 12.35 to 1,000 ng/ml (Competitive kit) with a sensitivity of 4.33 ng/ml. There is no detectable cross-reactivity with other relevant proteins. Activity loss rate and accelerated stability test ect have been conducted to guarantee the best performance of the products after long storage and delivery.
- High sensitivity and specificity
- Perfect reproducibility and consistency across batches
- Quality control with three-level inspections
- Wide range of targets/species available
- Intra-Assay: CV <10%, Inter-Assay: CV <12%
Adenosine-5'-triphosphate (ATP) is a multifunctional nucleotide that plays an important role in cell biology as a coenzyme, that is, the 'molecular unit of currency' of intracellular energy transfer. ATP transports chemical energy within cells for metabolism. It is an energy source produced during photosynthesis and cellular respiration and consumed by many enzymes and a multitude of cellular processes, including biosynthetic reactions, motility, and cell division. ATP is made from adenosine diphosphate (ADP) or adenosine monophosphate (AMP) and its use in metabolism converts it back into these precursors. ATP is therefore continuously recycled in organisms, with the human body turning over its own weight in ATP each day. ATP was discovered in 1929 by Karl Lohmann, but its correct structure was not determined until some years later. It was proposed to be the main energy-transfer molecule in the cell by Fritz Albert Lipmann in 1941.