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ATP Colorimetric Assay Kit

  • Cat.No.:E-BC-K157-S

  • Detection instrument: Spectrophotometer(636 nm)

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Detection principle

Creatine Kinase catalyzes adenosine triphosphate and creatine to produce creatine phosphate, then detected by phosphomolybdic acid colorimetry.

Performance characteristics

Synonyms ATP
Sample type Tissue
Sensitivity 0.01 mmol/L
Detection range 0.01-1.5 mmol/L
Detection method Colorimetric method
Assay type Quantitative
Assay time 70 min
Precision Average inter-assay CV: 9.300%Average intra-assay CV: 3.600%
Other instruments required Micropipettor, Incubator, Water bath, Vortex mixer, Centrifuge
Other reagents required Deionized water, Normal saline (0.9% NaCl)
Storage Reagent 4:-20℃;Others:2-8℃
Valid period 12 months

Images

ATP level was reduced significantly upon cells with C18 ceramide and restored with FB1. (***P<0.001, ****P<0.0001)

S Arora et al found that miR-495-3p regulates the mitophagy and apoptosis in NSCLC through Sphk1. ATP level in NSCLC was determined using ATP colorimetric assay kit (E-BC-K157-S).

Dilution of sample

It is recommended to take 2~3 samples with expected large difference to do pre-experiment before formal experiment and dilute the sample according to the result of the pre-experiment and the detection range (0.01-1.5 mmol/L).

The recommended dilution factor for different samples is as follows (for reference only):

Sample type

Dilution factor

10% Rat muscle tissue homogenate

2-3

10% Rat liver tissue homogenate

2-3

10% Rat brain tissue homogenate

2-3

10% Rat kidney tissue homogenate

2-3

10% Rat lung tissue homogenate

2-3

Note: The diluent is deionized water.

Citations

  1. BIOMATERIALS (2022) IF: 15.304
    Crafting ɣ-L-Glutamyl-l-Cysteine layered Human Serum Albumin-nanoconstructs for brain targeted delivery of ropinirole to attenuate cerebral ischemia/reperfusion injury via “3A approach”

    DOI: 10.1016/j.biomaterials.2022.121805

    Sample: brain
  2. FREE RADICAL BIOLOGY AND MEDICINE (2022) IF: 8.1010
    miR-495–3p regulates sphingolipid metabolic reprogramming to induce Sphk1/ceramide mediated mitophagy and apoptosis in NSCLC

    DOI: 10.1016/j.freeradbiomed.2022.07.001

    Sample: A549 cell,H1299 cell
  3. Materials Today Bio (2021) IF: 7.348
    Cascade targeting codelivery of ingenol-3-angelate and doxorubicin for enhancing cancer chemoimmunotherapy through synergistic effects in prostate cancer

    DOI: 10.1016/j.mtbio.2021.100189

  4. Frontiers in Molecular Biosciences (2022) IF: 6.113
    Glucose Deprivation Induced by Acarbose and Oncolytic Newcastle Disease Virus Promote Metabolic Oxidative Stress and Cell Death in a Breast Cancer Model

    DOI: 10.3389/fmolb.2022.816510

    PMID: 35936786

    Sample: mammary adenocarcinoma tissue
  5. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2023) IF: 6.208
    Moderating Gut Microbiome/Mitochondrial Axis in Oxazolone Induced Ulcerative Colitis: The Evolving Role of β-Glucan and/or, Aldose Reductase Inhibitor, Fidarestat

    DOI: 10.3390/ijms24032711

    Sample: intestinal tissue
  6. LIFE SCIENCES (2022) IF: 5.037
    miR-16-5p regulates aerobic glycolysis and tumorigenesis of NSCLC cells via LDH-A/lactate/NF-κB signaling

    DOI: 10.1016/j.lfs.2022.120722

    PMID: 35714705

    Sample: A549 cell,H1299 cell
  7. MOLECULAR NEUROBIOLOGY (2021) IF: 5.59
    SETD3 Downregulation Mediates PTEN Upregulation-Induced Ischemic Neuronal Death Through Suppression of Actin Polymerization and Mitochondrial Function

    DOI: 10.1007/s12035-021-02459-x

    PMID: 34218417

    Sample: brain
  8. BIOCHIMIE (2022) IF: 4.079
    Glucose deprivation using 2-deoxyglucose and acarbose induce metabolic oxidative stress and apoptosis in female mice bearing breast cancer

    DOI: 10.1016/j.biochi.2022.01.007

    PMID: 35066100

    Sample: breast tumor tissue
  9. NEUROTOXICOLOGY (2022) IF: 4.398
    Effects of pramipexole on beta-amyloid1–42 memory deficits and evaluation of oxidative stress and mitochondrial function markers in the hippocampus of Wistar rat

    DOI: 10.1016/j.neuro.2022.07.006

    Sample: hippocampus tissue
  10. REDOX REPORT (2022) IF: 4.412
    Modulating gut dysbiosis and mitochondrial dysfunction in oxazolone-induced ulcerative colitis: the restorative effects of β-glucan and/or celastrol

    DOI: 10.1080/13510002.2022.2046425

    PMID: 35246012

    Sample: intestinal epithelial cell
  11. Frontiers in Oncology (2020) IF: 4.848
    The Pan-Sirtuin Inhibitor MC2494 Regulates Mitochondrial Function in a Leukemia Cell Line

    DOI: 10.3389/fonc.2020.00820

    PMID: 32528892

    Sample: Cell lysate
  12. PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY (2022) IF: 4.966
    Antibacterial activity and action mechanism of flavonoids against phytopathogenic bacteria

    DOI: 10.1016/j.pestbp.2022.105221

  13. Scientific Reports (2022) IF: 4.996
    Calotropis gigantea stem bark extracts inhibit liver cancer induced by diethylnitrosamine

    DOI: 10.1038/s41598-022-16321-0

    PMID: 35840761

    Sample: liver,HepG2 cell
  14. APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY (2023) IF: 3.094
    Metabolic Phenotype Intricacies on Altered Glucose Metabolism of Breast Cancer Cells upon Glut-1 Inhibition and Mimic Hypoxia In Vitro

    DOI: 10.1007/s12010-023-04373-5

    Sample: SKBR-3 breast cancer cell
  15. Experimental and Therapeutic Medicine (2022) IF: 2.447
    Salvianolic acid A promotes mitochondrial biogenesis and function via regulating the AMPK/PGC‑1α signaling pathway in HUVECs

    DOI: 10.3892/etm.2022.11412

    Sample: Primary HUVECs
  16. Evidence-based Complementary and Alternative Medicine (2022) IF: 2.65
    San-Huang-Chai-Zhu Formula Ameliorates Liver Injury in Intrahepatic Cholestasis through Suppressing SIRT1/PGC-1α-Regulated Mitochondrial Oxidative Stress

    DOI: 10.1155/2022/7832540

    Sample: hepatic tissue
  17. JOURNAL OF MOLECULAR NEUROSCIENCE (2022) IF: 2.866
    Honokiol Reduces Mitochondrial Dysfunction and Inhibits Apoptosis of Nerve Cells in Rats with Traumatic Brain Injury by Activating the Mitochondrial Unfolded Protein Response

    DOI: 10.1007/s12031-022-02089-5

    Sample: brain tissues
  18. Biochemistry and Biophysics Reports (2022)
    Simple neutralization test report: Do probiotics contribute to COVID-19 therapy?

    DOI: 10.1016/j.bbrep.2022.101348

    PMID: 36120494

    Sample: PBMCs
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Reviews/Q&A

  • Show all
  • Reviews
  • Q&A
Q

A********LSubmitted [ Jun 13 2023 ]

Asked: Could you please explain the reaction principle of ATP Colorimetric and L-Lactate colorimetric assay principle

Reply

A

adminSubmitted [ Jun 13 2023 ]

Answered: Hello Ajeesh B L.Thanks for your support.We will reply you by E-mail.

Q

M*****iSubmitted [ Oct 21 2022 ]

Asked: Does the rat brain tissue need to be diluted? What is the reference dilution?

Reply

A

adminSubmitted [ Oct 21 2022 ]

Answered: The reference dilution of rat brain tissue is 2-3 times.

Q

M*****iSubmitted [ Sep 20 2022 ]

Asked: Is this kit suitable for cell sample?

Reply

A

adminSubmitted [ Sep 20 2022 ]

Answered: Unfortunately, this kit is not suitable for cell sample.You can choose E-BC-F002 to detect cell sample.

Q

A********LSubmitted [ Jun 17 2021 ]

Asked: Please provide a Example analysis for Cell samples.

Reply

A

adminSubmitted [ Jun 17 2021 ]

Answered: Take cell for example and carry the assay according to the operation table. The results are as follows: The average OD value of the blank is 0.048, the average OD value of the standard is 0.376, the average OD value of the sample is 0.343, the average OD value of the control is 0.303, and the calculation result is: ATP(mmol/10^9)=0.04/0.327*1/(1/0.3)=0.04mmol/10^9

Q

A********LSubmitted [ Jun 17 2021 ]

Asked: For this ATP colorimetric assay the protein concentration of Samples required or not?

Reply

A

adminSubmitted [ Jun 17 2021 ]

Answered: If you are going to test the Cell line samples, the protein is not needed to be tested, but it needs to account the cell number.

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