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COX2 Polyclonal Antibody

  • Cat.No.:E-AB-17010

  • Host: Rabbit
  • Reactivity: H,M,R
  • Applications: IHC,ELISA

To Purchase E-AB-17010

Size:
  • 20μL
  • 60μL
  • 120μL
  • 200μL
Price: $73
Qty:

Test Application

  • Verified Samples

    Reactivity Application
    Human IHC
    (liver cancer,)

    Immunohistochemistry of paraffin-embedded Human liver cancer tissue using COX2 Polyclonal Antibody at dilution 1:40.

  • Dilution

    IHC 1:30-150
    ELISA 1:2000-10000

Preparation of protein samples

1.Protein extraction

1)For tissue sample
a. Take the samples, wash the tissue thoroughly with pre-cooled PBS (0.01 M, pH=7.4)(Cat# E-BC-R187) to remove the surface blood and internal debris.
b. Weigh and smash the tissue, add an appropriate ratio of RIPA Lysis Buffer (Cat# E-BC-R327)(add 10 μL PMSF and 10 μL Na3VO4 to each 1 mL RIPA Lysis) and homogenizely lyse the tissue.
It is recommended to homogenize according to the ratio of tissue weight: RIPA volume = 3:10. For example, add 1 mL RIPA Lysis Buffer to 0.3 g tissue sample, the specific volume can be adjusted according to experimental requirements.
c. Shake and lyse on the ice for 30 min after homogenization. And then sonicate the sample for 1 min (under ice water bath conditions) with 2 s’ sonication and 2 s’ intervals to make cells fully lysis and reduce the viscosity of sample.
d. Centrifuge at 12,000 rpm for 10 min at 4℃.
e. Take the supernatant and measure the protein concentration mentioned in step2.

2)For cell sample
a. Collect the cells, wash them thoroughly with pre-cooled PBS (0.01 M, pH=7.4) to remove the medium off (it is generally recommended to wash 3 times).
b. Add an appropriate ratio of RIPA Lysate Buffer (10 μL PMSF and 10 μL Na3VO4 in each 1 mL RIPA Lysis) and lyse on the ice for 30 min.
It is recommended to add 0.1 mL of RIPA Lysis Buffer to each well of a 6-well plates (the protein content in different cells may vary, and the volume of the lysate added can be appropriately adjusted).
c. Sonicate the sample for 1 min (under ice water bath conditions) with 2 s’ sonication and 2 s’ intervals to make cells fully lyse and reduce viscosity of sample.
d. Centrifuge at 12,000 rpm for 10 min at 4℃.
e. Take the supernatant and measure the protein concentration mentioned in step2.

2.Measurement of protein concentration
By the BCA method (see the Total Protein Colorimetric Assay Kit (Cat# E-BC-K318) instructions).

3.Boiling the samples
Adjust the protein concentration with PBS Buffer. Add 5 × SDS Loading Buffer (Cat# E-BC-R288) with the ratio of the protein sample: 5 × SDS Loading Buffer = 4:1 and boil the mixture for 10 min. Centrifuge at 12,000 rpm for 2 min and collect the supernatant. The denatured protein can be employed to Western Blot experiments or stored at -20℃ or -80℃.

Note: It is recommended that the total protein loading amount of test sample is about 50 μg in each well. Try to make the loading volume of each sample close to 10 μL.

Electrophoresis

1.According to the molecular weight of the target protein, prepare 0% separation gel. Add the test sample to each well, and add 5 μL of Pre-stained Protein Marker (Cat# E-BC-R273)to a reserved well in order to verify the target molecular weight and the extent of membrane transfer. Add Electrophoresis Buffer ( Cat# E-BC-R331) and start electrophoresis.

2.Electrophoresis at 80v when the samples are in stacking gel, then convert to 120v when the blue flow into the separating gel. Electrophoresis time is about 2-3 h till bromophenol blue reaches the bottom of the gel.

Transfer Membrane

1.Choose the PVDF Membrane (Cat# E-BC-R266) with a pore size of μm according to the molecular weight of the target protein. Soak the PVDF Membrane in methanol for 1 min to activate it, and then soak the PVDF Membrane in the Transmembrane Buffer (Cat# E-BC-R333), the filter paper and fiber mat must be soaked in the Transmembrane Buffer for use too.

2.Follow manufacture instructions of Transfer System for wet, semi-dry, or dry transfer.

Incubation of antibodies

1.Soak the PVDF Membrane with TBST Buffer (Cat# E-BC-R335) containing 5% Skim Milk Powder as blocking buffer and block the membrane at room temperature for .

2.According to the recommended primary antibody dilution ratio, use the TBST Buffer containing 5% Skim Milk Powder to dilute the PTGS2 Antibody at , soak the PVDF Membrane in the primary antibody working solution, incubate overnight at 4 ℃, and gently shake.

3.Wash the PVDF Membrane with TBST Buffer for .

4.According to the recommended secondary antibody dilution ratio, use a TBST Buffer solution containing 2% Skim Milk Powder to dilute Goat Anti-Rabbit IgG (H+L) (peroxidase/HRP conjugated) (Cat# E-AB-1003) at . Incubate at room temperature for 1 h on a shaker.

5.Wash the PVDF Membrane with TBST Buffer for .

Detection

1.Mix A and B in the Excellent Chemiluminescent Substrate Detection kit (Cat# E-BC-R347) at the ratio of 1:1 as working solution.

2.Take out the PVDF Membrane from TBST Buffer and absorb the liquid with the filter paper. Pave the PVDF Membrane on the detection machine, add ECL working solution continuously on the PVDF Membrane, discharge the bubble and detect the result.

3.Adjust the contrast and the exposure time to get the best image.

Appendix

Product Details

Clonality Polyclonal
Isotype IgG
Concentration 0.6 mg/mL
Storage Store at -20℃. Avoid freeze / thaw cycles.
Buffer PBS with 0.05% sodium azide and 50% glycerol, PH7.4
Purification Method Affinity purification
Research Areas Cancer, Cardiovascular, Metabolism, Signal transduction
Conjugation Unconjugated

Immunogen Details

Immunogen Fusion protein of human PTGS2
Abbre PTGS2
Synonyms COX 2,COX-2,COX2,Cyclooxygenase 2,Cyclooxygenase 2b,Cyclooxygenase,Cyclooxygenase-2,Cyclooxygenase2,EC 1.14.99.1,fj02a10,Glucocorticoid-regulated inflammatory cyclooxygenase,Glucocorticoid-regulated inflammatory Prostaglandin G/H synthase,GRIPGHS,hCox 2,Macrophage activation-associated marker protein P71/73,OTTHUMP00000033524,PES-2,PGG/HS,PGH synthase 2,PGH2,PGHS 2,PGHS-2,PGHS2,PHS 2,PHS II,PHS2,Prostaglandin endoperoxide synthase 2 (prostaglandin G/H synthase and cyclooxygenase),Prostaglandin endoperoxide synthase 2,Prostaglandin G/H synthase 2,Prostaglandin G/H synthase 2 precursor,Prostaglandin G/H synthase and cyclooxygenase,Prostaglandin G/H synthase,Prostaglandin H2 synthase 2,prostaglandin-endoperoxide synthase 2 (prostaglandin G/H synthase and cyclooxygenase),Prostaglandin-endoperoxide synthase 2,PTGS2,ptgs2a,TIS10,TIS10 protein,unp1239,wu:fj02a10
Swissprot P35354
Gene Accession BC013734
Cellular Localization Microsome membrane. Endoplasmic reticulum membrane.

Background

Prostaglandin-endoperoxide synthase (PTGS), also known as cyclooxygenase, is the key enzyme in prostaglandin biosynthesis, and acts both as a dioxygenase and as a peroxidase. There are two isozymes of PTGS: a constitutive PTGS1 and an inducible PTGS2, which differ in their regulation of expression and tissue distribution. This gene encodes the inducible isozyme. 

Citations

  1. Cells (2019) IF: 5.656
    Development of a Stromal Microenvironment Experimental Model Containing Proto-Myofibroblast Like Cells and Analysis of Its Crosstalk with Melanoma Cells: A New Tool to Potentiate and Stabilize Tumor Suppressor Phenotype of Dermal Myofibroblasts

    DOI: 10.3390/cells8111435

    PMID: 31739477

    Sample: Cell lysate,Tissue homogenate
  2. Frontiers in Neurology (2021) IF: 4.003
    Neuroprotective Effect of Fisetin Through Suppression of IL-1R/TLR Axis and Apoptosis in Pentylenetetrazole-Induced Kindling in Mice.

    DOI: 10.3389/fneur.2021.689069

    Sample: brain
  3. NEUROTOXICOLOGY (2019) IF: 3.263
    Neuroprotective role of kolaviron in striatal redo-inflammation associated with rotenone model of Parkinson’s disease

    DOI: 10.1016/j.neuro.2019.03.005

    Sample: Tissue homogenate
  4. JOURNAL OF ETHNOPHARMACOLOGY (2019) IF: 3.414
    Ameliorative influence of Cnestis ferruginea vahl ex DC (Connaraceae) root extract on kainic acid-induced temporal lobe epilepsy in mice: Role of oxidative stress and neuroinflammation

    DOI: 10.1016/j.jep.2019.112117

    PMID: 31351192

    Sample: Tissue
  5. Biomedical Materials (2021) IF: 3.715
    Preclinical efficacy study of a porous biopolymeric scaffold based on gelatin-hyaluronic acid-chondroitin sulfate in a porcine burn injury model: role of critical molecular markers (VEGFA, N-cadherin, COX-2), gamma sterilization efficacy and a comparison

    DOI: 10.1088/1748-605X/ac1d3e

    Sample: skin tissue
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