NIST8671
NISTmAb, Humanized IgG1k Monoclonal Antibody
NIST® SRM® 8671
About This Item
Recommended Products
antibody product type
primary antibodies
grade
certified reference material
form
liquid
manufacturer/tradename
NIST®
technique(s)
UV/Vis spectroscopy: suitable
liquid chromatography (LC): suitable
mass spectrometry (MS): suitable
format
matrix material
General description
A unit of RM 8671 consists of one internal-threaded polypropylene cryovial containing 800 µL of 10 mg/mL NIST IgG1κ monoclonal antibody (NISTmAb) in 12.5 mmol/L L-histidine, 12.5 mmol/L L-histidine HCl (pH 6.0).
SRM 8671_Cert
SRM 8671_SDS
Application
- system suitability tests
- establishing method or instrument performance and variability
- comparing changing analytical test methods
- assisting in method qualification
Analysis Note
Other Notes
- RM 8671 is intended for research use.
- Details on expiration, storage, safety, usage, and source are provided in the NIST certificate.
- Information on biomaterials, disposal, and transport is available in the SDS.
Legal Information
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Storage Class Code
12 - Non Combustible Liquids
WGK
WGK 2
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
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An optimized peptide mapping protocol using NISTmAb as a model monoclonal antibody, shorter incubation times, and improved digestion buffer to demonstrate minimal artificial asparagine deamidation and methionine oxidation.
An optimized peptide mapping protocol using NISTmAb as a model monoclonal antibody, shorter incubation times, and improved digestion buffer to demonstrate minimal artificial asparagine deamidation and methionine oxidation.
An optimized peptide mapping protocol using NISTmAb as a model monoclonal antibody, shorter incubation times, and improved digestion buffer to demonstrate minimal artificial asparagine deamidation and methionine oxidation.
An optimized peptide mapping protocol using NISTmAb as a model monoclonal antibody, shorter incubation times, and improved digestion buffer to demonstrate minimal artificial asparagine deamidation and methionine oxidation.
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