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ADH8 Antibody (F-9): sc-390387

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Datasheets
  • ADH8 Antibody (F-9) is a mouse monoclonal IgG1 κ ADH8 antibody provided at 200 µg/ml
  • raised against amino acids 20-259 mapping near the N-terminus of ADH8 of human origin
  • ADH8 Antibody (F-9) is recommended for detection of ADH8 of human origin by WB, IP, IF, IHC(P) and ELISA
  • Anti-ADH8 Antibody (F-9) is available conjugated to agarose for IP; HRP for WB, IHC(P) and ELISA; and to either phycoerythrin or FITC for IF, IHC(P) and FCM
  • also available conjugated to Alexa Fluor® 488, Alexa Fluor® 546, Alexa Fluor® 594 or Alexa Fluor® 647 for WB (RGB), IF, IHC(P) and FCM, and for use with RGB fluorescent imaging systems, such as iBright™ FL1000, FluorChem™, Typhoon, Azure and other comparable systems
  • also available conjugated to Alexa Fluor® 680 or Alexa Fluor® 790 for WB (NIR), IF and FCM; for use with Near-Infrared (NIR) detection systems, such as LI-COR®Odyssey®, iBright™ FL1000, FluorChem™, Typhoon, Azure and other comparable systems
  • m-IgG Fc BP-HRP and m-IgG1 BP-HRP are the preferred secondary detection reagents for ADH8 Antibody (F-9) for WB and IHC(P) applications. These reagents are now offered in bundles with ADH8 Antibody (F-9) (see ordering information below).

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    ADH8 Antibody (F-9) is a mouse monoclonal IgG1 kappa light chain antibody that detects ADH8 protein of human origin by western blotting (WB), immunoprecipitation (IP), immunofluorescence (IF), immunohistochemistry with paraffin-embedded sections (IHCP), and enzyme-linked immunosorbent assay (ELISA). ADH8 (F-9) antibody is available in both non-conjugated and various conjugated forms, including agarose, horseradish peroxidase (HRP), phycoerythrin (PE), fluorescein isothiocyanate (FITC), and multiple Alexa Fluor® conjugates. ADH8, also known as ADHFE1 (alcohol dehydrogenase, iron containing, 1) or HOT, is a 467 amino acid enzyme that plays a crucial role in the metabolism of gamma-hydroxybutyrate, converting gamma-hydroxybutyrate to succinic semialdehyde, which is subsequently transformed into succinic acid for energy production in the Krebs cycle. ADH8 operates optimally at a pH of 7.5 and is involved in the reduction of 2-ketoglutarate to D-2-hydroxyglutarate, highlighting ADH8′s importance in various metabolic pathways. Four isoforms of ADH8 exist due to alternative splicing, which may contribute to functional diversity and regulatory mechanisms within the cell.

    For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.

    Alexa Fluor® is a trademark of Molecular Probes Inc., OR., USA

    LI-COR® and Odyssey® are registered trademarks of LI-COR Biosciences

    ADH8 Antibody (F-9) References:

    1. Cloning and characterization of a novel human alcohol dehydrogenase gene (ADHFe1).  |  Deng, Y., et al. 2002. DNA Seq. 13: 301-6. PMID: 12592711
    2. Crystal structure of the vertebrate NADP(H)-dependent alcohol dehydrogenase (ADH8).  |  Rosell, A., et al. 2003. J Mol Biol. 330: 75-85. PMID: 12818203
    3. Two zebrafish alcohol dehydrogenases share common ancestry with mammalian class I, II, IV, and V alcohol dehydrogenase genes but have distinct functional characteristics.  |  Reimers, MJ., et al. 2004. J Biol Chem. 279: 38303-12. PMID: 15231826
    4. Kinetic characterization of human hydroxyacid-oxoacid transhydrogenase: relevance to D-2-hydroxyglutaric and gamma-hydroxybutyric acidurias.  |  Struys, EA., et al. 2005. J Inherit Metab Dis. 28: 921-30. PMID: 16435184
    5. Identification of the gene encoding hydroxyacid-oxoacid transhydrogenase, an enzyme that metabolizes 4-hydroxybutyrate.  |  Kardon, T., et al. 2006. FEBS Lett. 580: 2347-50. PMID: 16616524
    6. Differentiation-dependent expression of Adhfe1 in adipogenesis.  |  Kim, JY., et al. 2007. Arch Biochem Biophys. 464: 100-11. PMID: 17559793

    Ordering Information

    Product NameCatalog #UNITPriceQtyFAVORITES

    ADH8 Antibody (F-9)

    sc-390387
    200 µg/ml
    $316.00

    ADH8 Antibody (F-9): m-IgG Fc BP-HRP Bundle

    sc-527627
    200 µg Ab; 10 µg BP
    $354.00

    ADH8 Antibody (F-9): m-IgG1 BP-HRP Bundle

    sc-533000
    200 µg Ab; 20 µg BP
    $354.00

    ADH8 Antibody (F-9) AC

    sc-390387 AC
    500 µg/ml, 25% agarose
    $416.00

    ADH8 Antibody (F-9) HRP

    sc-390387 HRP
    200 µg/ml
    $316.00

    ADH8 Antibody (F-9) FITC

    sc-390387 FITC
    200 µg/ml
    $330.00

    ADH8 Antibody (F-9) PE

    sc-390387 PE
    200 µg/ml
    $343.00

    ADH8 Antibody (F-9) Alexa Fluor® 488

    sc-390387 AF488
    200 µg/ml
    $357.00

    ADH8 Antibody (F-9) Alexa Fluor® 546

    sc-390387 AF546
    200 µg/ml
    $357.00

    ADH8 Antibody (F-9) Alexa Fluor® 594

    sc-390387 AF594
    200 µg/ml
    $357.00

    ADH8 Antibody (F-9) Alexa Fluor® 647

    sc-390387 AF647
    200 µg/ml
    $357.00

    ADH8 Antibody (F-9) Alexa Fluor® 680

    sc-390387 AF680
    200 µg/ml
    $357.00

    ADH8 Antibody (F-9) Alexa Fluor® 790

    sc-390387 AF790
    200 µg/ml
    $357.00

    Can ADH8 (F-9): sc-390387 monoclonal antibody be used to stain formalin-fixed, paraffin-embedded (FFPE) tissue sections?

    Asked by: jerojero
    Thank you for your question. Yes, ADH8 (F-9): sc-390387 has been validated for use in IHC with paraffin-embedded sections. We recommend performing antigen retrieval with sodium citrate buffer (pH 6) and heat. The full protocol can be found here: https://www.scbt.com/scbt/resources/protocols/immunoperoxidase-staining
    Answered by: Technical Support
    Date published: 2017-02-27
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    Rated 5 out of 5 by from It's excellent.I got a free sample last month. It work nicely at 1:200.
    Date published: 2017-09-11
    Rated 5 out of 5 by from Beautiful immunoperoxidase cytoplasmic stainingBeautiful immunoperoxidase cytoplasmic staining in formalin fixed, paraffin-embedded human liver tissue. -SCBT QC
    Date published: 2015-03-23
    Rated 5 out of 5 by from Satisfactory Western Blot data of ADH8 expressionSatisfactory Western Blot data of ADH8 expression in human liver tissue extract. -SCBT QC
    Date published: 2014-01-29
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    ADH8 Antibody (F-9) is rated 5.0 out of 5 by 3.
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