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Hamster CHO Beta 2 Microglobulin ELISA Kit is a Sandwich (quantitative) ELISA kit for the measurement of Hamster CHO Beta 2 Microglobulin in Chinese hamster in Tissue Culture Media samples.

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Key facts

Detection method
Colorimetric
Sample types
Tissue Culture Media
Assay type
Sandwich (quantitative)
Reactive species
Chinese hamster
Range
0.3125 - 20 ng/mL
Assay time
2h 50m

Reactivity data

Application
sELISA
Reactivity
Reacts
Dilution info
-
Notes

-

Target data

Function

Component of the class I major histocompatibility complex (MHC). Involved in the presentation of peptide antigens to the immune system (By similarity).

Alternative names

What's included?

1 x 96 Tests
Components
100X HRP-Streptavidin Concentrate
1 x 150 µL
20X Wash Buffer Concentrate
1 x 50 mL
5X Diluent Concentrate
1 x 50 mL
Beta 2- Microglobulin (B2M) Antibody-coated ELISA Micro Plate
1 x 1 Unit
Biotinylated beta 2- Microglobulin (B2M) Detection Antibody 100X
1 x 1 Vial
Chromogen Substrate Solution
1 x 12 mL
Lyophilized beta 2 -Microglobulin Calibrator
1 x 1 Vial
Stop Solution
1 x 12 mL

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Hamster CHO Beta 2 Microglobulin ELISA Kit is a Sandwich (quantitative) ELISA kit for the measurement of Hamster CHO Beta 2 Microglobulin in Chinese hamster in Tissue Culture Media samples.

Key facts

Detection method
Colorimetric
Sample types
Tissue Culture Media
Assay type
Sandwich (quantitative)
Reactive species
Chinese hamster
Range
0.3125 - 20 ng/mL
Assay time
2h 50m
Assay Platform
Pre-coated microplate (12 x 8 well strips)

Storage

Shipped at conditions
Blue Ice
Appropriate short-term storage conditions
+4°C
Appropriate long-term storage conditions
+4°C
Storage information
+4°C

Notes

The Hamster CHO Beta 2 Microglobulin ELISA Kit is a highly sensitive two-site enzyme linked immunoassay (ELISA) for measuring B2M in Hamster (CHO) biological samples. 

Supplementary info

This supplementary information is collated from multiple sources and compiled automatically.
Activity summary

Beta-2-Microglobulin (B2M) is a component of the class I major histocompatibility complex (MHC I) and plays an important role in presenting peptides to the immune system. B2M weighs approximately 11.8 kDa and is found abundantly in all nucleated cells. It has alternate names such as B2 microglobulin or beta-2-microglobulin. This protein is present in the cell membrane as a part of the MHC I which is important for immune surveillance. Additionally B2M is detectable in various biological fluids including serum and its levels can reflect physiological and pathological states.

Biological function summary

Beta-2-microglobulin is important for the stability and transport of MHC class I molecules to the cell surface. As part of the MHC class I complex B2M assists in binding peptides allowing immune cells to identify and target pathogen-infected cells. Without B2M the MHC class I molecules are not properly expressed on the cell surface disrupting immune recognition. In laboratory settings researchers often use anti-beta-2-microglobulin antibodies to investigate its role in MHC class I function.

Pathways

Beta-2-microglobulin interacts significantly with the immune system most notably in the antigen processing and presentation pathway. It works alongside proteins such as the heavy chain of MHC class I. B2M is important in the pathway that involves the transport of antigens to the endoplasmic reticulum where they are loaded onto MHC class I molecules for inspection by cytotoxic T cells. Another related pathway is the tapasin-mediated processing of antigen peptides highlighting the indispensable role of B2M in immune response regulation.

Associated diseases and disorders

Beta-2-microglobulin is associated with conditions such as beta-2-microglobulin amyloidosis and certain lymphoproliferative disorders. Elevated levels of B2M in serum serve as a marker for diseases like multiple myeloma where the protein level correlates with disease severity. B2M-related amyloidosis frequently occurs in patients undergoing long-term dialysis where amyloid deposits accumulate in tissues. Linking B2M to immune system dysfunction studies have shown interactions with other proteins including components of the immune system like HLA-A and HLA-B highlighting B2M's relevance in diagnosing and understanding these conditions.

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