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CCL2 antibody (Biotin)
This anti-CCL2 antibody is a Mouse Monoclonal antibody detecting CCL2 in ELISA and IP. Suitable for Rat.
Quick Overview for CCL2 antibody (Biotin) (ABIN2689840)
Target
See all CCL2 Antibodies
CCL2
(Chemokine (C-C Motif) Ligand 2 (CCL2))
Reactivity
All reactivities for CCL2 antibodies
Rat
Host
All hosts for CCL2 antibodies
Mouse
Clonality
All clonalities for CCL2 antibodies
Monoclonal
Conjugate
All conjugates for CCL2 antibodies
This CCL2 antibody is conjugated to Biotin
Application
All applications for CCL2 antibodies
ELISA, Immunoprecipitation (IP)
Clone
B4
Product Details anti-CCL2 Antibody (Biotin)
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Brand
BD Pharmingen™
Characteristics
The B4 antibody reacts with rat Monocyte Chemoattractant Protein 1 (MCP-1). The immunogen used to generate this hybridoma was recombinant rat MCP-1 protein. Rat MCP-1 ELISA -Standard Curve BD Pharmingen™ Biotin Mouse Anti-Rat MCP-1 - Biotin - Clone B4 - Isotype Mouse IgG1 - Reactivity Rat - 0.5 mg
Purification
The monoclonal antibody was purified from tissue culture supernatant or ascites by affinity chromatography.
Immunogen
Recombinant Rat MCP-1 Protein
Isotype
IgG1
Alternatives
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Application Details
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Application Notes
Optimal working dilution should be determined by the investigator.
Restrictions
For Research Use only
Handling
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Concentration
0.5 mg/mL
Buffer
Aqueous buffered solution containing ≤0.09 % sodium azide.
Preservative
Sodium azide
Precaution of Use
This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
Handling Advice
The antibody was conjugated with biotin under optimum conditions, and unreacted biotin was removed.
Storage
4 °C
Storage Comment
Store undiluted at 4°C and protected from prolonged exposure to light. Do not freeze.
Target Details for CCL2
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Target
CCL2
(Chemokine (C-C Motif) Ligand 2 (CCL2))
Alternative Name
MCP-1
Pathways
Cellular Response to Molecule of Bacterial Origin , Positive Regulation of Immune Effector Process , ER-Nucleus Signaling , Unfolded Protein Response , The Global Phosphorylation Landscape of SARS-CoV-2 Infection
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