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CyFlow™ CD19 PE

CyFlow™ CD19 PE
Application: Flow cytometry
Emission Maximum: 576 nm
Alternative Name: B4
Antigen: CD19
Source Species: Rat
Field of Interest: Immunophenotyping, MHC
Target Species: Mouse
Isotype: IgG2a
Excitation Maximum: 496 nm, 565 nm
Clonality: monoclonal
Laser: Blue, Green, Yellow
Format/Fluorochrome: PE
Regulatory Status: RUO
Clone: 1D3
Order number: CF747469
Concentration Unit mg/mL Concentration 0,5 Quantity 0.1 mg Volume 0.2 mL... more
Product information "CyFlow™ CD19 PE"
Concentration Unitmg/mL
Concentration0,5
Quantity0.1 mg
Volume0.2 mL
ImmunogenMouse CD19-transfected cell line
Background InformationCD19 is a transmembrane glycoprotein of Ig superfamily expressed by B cells from the time of heavy chain rearrangement until plasma cell differentiation. It forms a tetrameric complex with CD21 (complement receptor type 2), CD81 (TAPA-1) and Leu13. Together with BCR (B cell antigen receptor), this complex signals to decrease B cell treshold for activation by the antigen. Besides being signal-amplifying coreceptor for BCR, CD19 can also signal independently of BCR coligation and it turns out to be a central regulatory component upon which multiple signaling pathways converge. Mutation of the CD19 gene results in hypogammaglobulinemia, whereas CD19 overexpression causes B cell hyperactivity.
UsageThe reagent is designed for Flow Cytometry analysis. Suggested working usage is 1·µg/ml. Indicated dilution is recommended starting point for use of this product, but working concentrations should be validated by the investigator.
Storage BufferThe reagent is provided in phosphate buffered saline (PBS) solution, pH ≈7.4, containing 0.09% (w/v) sodium azide.
StorageAvoid prolonged exposure to light. Store in the dark at 2-8°C. Do not freeze.
StabilityDo not use after expiration date stamped on vial label.

Technical Data Sheet

Instruction for Use

ECDoC

Certificate Of Analysis

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* All prices are quoted net of the statutory value-added tax and shipping costs and possibly delivery charges, if not otherwise described

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