ATP Colorimetric/Fluorometric Assay Kit (TBS2010)

$350.00

Tribio™ ATP Colorimetric and Fluorometric Assay kit is designed to be a robust, simple method which utilizes the phosphorylation of glycerol to generate a product that is easily quantified by colorimetric (OD = 570 nm) or fluorometric (Ex/Em = 535/590 nm) methods.

SKU: TBS2010 Categories: ,
SKUStock SIZE (test) PriceQuantity
TBS2010 Yes 100 Tests $350.00
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Description

Adenosine-5′-triphosphate (ATP) is a multifunctional nucleotide used in cells as a coenzyme. ATP is the main energy source for the majority of cellular functions. ATP also is critically involved in maintaining cell structure by facilitating the assembly and disassembly of elements of the cytoskeleton. Tribioscience’s ATP Colorimetric and Fluorometric Assay kit is designed to be a robust, simple method that utilizes the phosphorylation of glycerol to generate a product that is easily quantified by colorimetric (OD = 570 nm) or fluorometric (Ex/Em = 535/590 nm) methods. The assay can detect down to 0.5 µM of ATP in various samples.

 

Applications

Direct Assays: as low as 0.5 µM of ATP in cells and other biological samples. Assay of enzymes that produce or degrade ATP.

 

Key Features

  • Sensitive and accurate: Use 10 µL samples. Detection range 0.5-1000µM in 96-well plate assay.
  • Simple and high-throughput: Simple procedure; takes less than 30 minutes. The kit is designed to be a robust method.

 

Storage and Handling

Store kit at -20°C. Shelf life of three months. Except Enzyme warm all of the components to room temperature before use. Briefly centrifuge all small vials prior to opening.

 

Standard Curve

 

Research use only.

Additional information

SIZE (test)

100 Tests

Datasheet:

TBS2010 ATP assay-V03-2022

MSDS:

TBS2010-ATP assay_MSDS_2024

Research use only.

1. Adetuyi, O. A., & Wimalasena, K. (2025). Exposure to Mitochondrial Toxins: An In Vitro Study of Energy Depletion and Oxidative Stress in Driving Dopaminergic Neuronal Death in MN9D Cells. Toxics, 13(8), 637. https://doi.org/10.3390/toxics13080637

2. Adetuyi, O. A., & Wimalasena, K. (2026). Sodium Propionate Protects Dopaminergic Neurons Against Mitochondrial Toxin–Induced Oxidative Stress In Vitro. International Journal of Molecular Sciences, 27(4), 1758. https://doi.org/10.3390/ijms27041758

Research use only.

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