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MAB342A4

Sigma-Aldrich

Anti-Galactocerebroside Antibody, clone mGalC, Alexa Fluor488 Conjugate

clone mGalC, from mouse, ALEXA FLUOR 488

Synonym(s):

Galactoceramide, Galactocerebroside, Galactosylceramide, GalC

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About This Item

UNSPSC Code:
12352203
eCl@ss:
32160702
NACRES:
NA.41

biological source

mouse

Quality Level

conjugate

ALEXA FLUOR 488

antibody form

purified immunoglobulin

antibody product type

primary antibodies

clone

mGalC, monoclonal

species reactivity

rabbit, rat

species reactivity (predicted by homology)

human, bovine (immunogen homology), chicken, mouse

technique(s)

immunocytochemistry: suitable

isotype

IgG3

shipped in

wet ice

target post-translational modification

unmodified

Gene Information

human ... GALC(2581)

General description

Galactocerebroside (GalC) is a major galactosphingolipid of myelin which plays a role in myelination. GalC is a very useful, specific marker for oligodendroglial lineage.

Specificity

This antibody recognizes Galactocerebroside (GalC), sulfatide, psychosine and other galactolipids. Cross-reacts with the sulfatide ester of GalC, but to a 16-fold to a lesser extent. No cross-reactivity with sphingosine, ceramide, mixed ganglioside or glucocerebroside. Binds specifically with oligodendrocytes and Schwann cells.

Application

Detect Galactocerebroside using this Anti-Galactocerebroside Antibody, clone mGalC, Alexa Fluor488 Conjugate validated for use in ICC.

Quality

Evaluated by Immunocytochemistry in rat oligodendrocyte cells.

Immunocytochemistry Analysis: A 1:100 dilution of this antibody detected Galactocerebroside in rat oligodendrocyte cells. Performed without Triton.

Physical form

Purified mouse monoclonal IgG3 conjugated to Alexa Fluor 488 in PBS with 0.1% sodium azide and 15 mg/mL BSA.

Analysis Note

Control
Rat oligodendrocyte cells

Legal Information

ALEXA FLUOR is a trademark of Life Technologies

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wgk_germany

WGK 2

flash_point_f

Not applicable

flash_point_c

Not applicable


Certificates of Analysis (COA)

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Hal X Nguyen et al.
The Journal of comparative neurology, 522(12), 2767-2783 (2014-04-10)
Human embryonic stem cells (hESC) and induced pluripotent stem cells (hiPSC) can differentiate into many cell types and are important for regenerative medicine; however, further work is needed to reliably differentiate hESC and hiPSC into neural-restricted multipotent derivatives or specialized

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