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Goat anti-Rabbit IgG (H&L), F(ab)'2 Fragment, DyLightŪ 488 conjugated

AS16 3527 | Clonality: Polyclonal | Host: Goat | Reactivity: Rabbit IgG (H&L), F(ab)'2 Fragment
Goat anti-Rabbit IgG (H&L), F(ab)'2 Fragment, DyLightŪ 488 conjugated in the group Human/Animal Antibodies / Secondary Antibodies/Blocking / Anti-rabbit  / Fluorescent / DyLightŪ / DyLightŪ 488 at Agrisera AB (Antibodies for research) (AS16 3527)

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product information
Background

Goat anti-Rabbit IgG (H&L), F(ab)'2 Fragment, DyLight® 488 conjugated is a secondary antibody conjugated to  DyLight® 488, which binds to rabbit IgG in immunological assays. 
DyLight® 488 has Amax = 493 nm, Emax = 518 nm.

DyLight® is a registered trade mark of Thermofisher Inc., and its subsidaries.

Immunogen Purified Rabbit IgG, whole molecule
Host Goat
Clonality Polyclonal
Clone
Purity Affinity purified
Format Lyophilized
Quantity 0.5 mg
Reconstitution For reconstitution add 0.55 ml of sterile water.Let it stand 30 minutes at room temperature to dissolve. Prepare fresh working dilutions daily.
Storage Store freeze-dried powder at 2-8 °C.
Tested applications Flow cytometry (Flow cyt), Immunolocalization (IL)
Related products Other anti-rabbit secondary antibodies
Additional information

Antibody purity is > 90% based on SDS-PAGE Small amounts of intact IgG may be present.
Affinity purified using solid phase Rabbit IgG .
Antibody is supplied in 10 mM Sodium Phosphate, 0.15 M Sodium Chloride, pH 7.2, 1 % (w/v) BSA, Protease/IgG free. 0.05% (w/v) Sodium Azide is added as a preservative.

Based on IEP, this antibody reacts with: • heavy (γ) chains on rabbit IgG • light chains on all rabbit immunoglobulins .
Based on IEP, no reactivity is observed to: • non-immunoglobulin rabbit serum proteins .

application information
Recommended dilution 1 : 20-1 : 2000 (Flow cyt), (IL)
Expected | apparent MW
Confirmed reactivity Rabbit IgG (H&L), F(ab)'2 Fragment
Predicted reactivity
Not reactive in
Additional information
Selected references To be added when available, antibody released in April 2016.


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