50-112-3738

Rat IgG1 kappa Isotype Control (eBRG1), PerCP-Cyanine5.5, eBioscience™, Invitrogen™

Manufacturer: Invitrogen

Select a Size

Pack Size SKU Availability Price
Each of 1 50-112-3738-Each-of-1 In Stock ₹ 8,812.68

50-112-3738 - Each of 1

₹ 8,812.68

In Stock

Quantity

1

Base Price: ₹ 8,812.68

GST (18%): ₹ 1,586.282

Total Price: ₹ 10,398.962

Antigen

Rat IgG1 kappa

Clone

eBRG1

Conjugate

PerCP-Cyanine5.5

Gene Alias

Immunoglobulin G; Immunoglobulin G1; ImmunoglobulinG; ImmunoglobulinG1

Purification Method

Affinity chromatography

Regulatory Status

RUO

Target Species

Not Applicable

Form

Liquid

Applications

Control, Flow Cytometry

Concentration

0.2 mg/mL

Formulation

PBS with 0.09% sodium azide; pH 7.2

Host Species

Rat

Quantity

25 μg

Primary or Secondary

Isotype Control (Primary)

Content And Storage

4° C, store in dark, DO NOT FREEZE!

Isotype

IgG1 κ

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Description

  • Description: The monoclonal rat IgG1, kappa is useful as an isotype control immunoglobulin
  • Applications Reported: PerCP-Cy5.5 Rat IgG1 Iso Cntrl has been reported for use in flow cytometric analysis
  • Applications Tested: This Rat IgG1 Iso Cntrl has been tested by flow cytometric analysis
  • Isotype control should be used at the same concentration as experimental antibody
  • Excitation: 488 nm; Emission: 695 nm; Laser: Blue Laser
  • Filtration: 0.2 μm post-manufacturing filtered
  • Rat IgG1 is a subclass of immunoglobulin G (IgG) antibodies that are commonly used in research and diagnostics
  • These antibodies are produced by rats in response to an antigen and can be purified from serum or hybridoma cell culture supernatants
  • Rat IgG1 is often used as a negative control in experiments, as it does not bind to many mammalian antigens
  • It is also used in immunohistochemistry, flow cytometry, and western blotting to detect specific antigens
  • Gene targeting is a powerful tool used to manipulate the rat genome and generate animal models for studying human diseases
  • With gene targeting, specific genes can be knocked out, inserted, or modified to investigate their role in disease pathogenesis.