AKR7A2 Antibody | CSB-PA001550ESR2HU

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CSB-PA001550ESR2HU
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  • AKR7A2 Antibody
  • Immunohistochemistry of paraffin-embedded human liver tissue using CSB-PA001550ESR2HU at dilution of 1:100
  • Immunohistochemistry of paraffin-embedded human liver cancer using CSB-PA001550ESR2HU at dilution of 1:100
£184.00 - £253.68

Description

AKR7A2 Antibody | CSB-PA001550ESR2HU | Cusabio

AKR7A2 Antibody is Available at Gentaur Genprice with the fastest delivery.

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Product Type: Polyclonal Antibody

Target Names: AKR7A2

Aliases: Aflatoxin B1 aldehyde reductase member 2 (EC 1.1.1.n11) (AFB1 aldehyde reductase 1) (AFB1-AR 1) (Aldoketoreductase 7) (Succinic semialdehyde reductase) (SSA reductase), AKR7A2, AFAR AFAR1 AKR7

Background: Catalyzes the NADPH-dependent reduction of succinic semialdehyde to gamma-hydroxybutyrate. May have an important role in producing the neuromodulator gamma-hydroxybutyrate (GHB) . Has broad substrate specificity. Has NADPH-dependent aldehyde reductase activity towards 2-carboxybenzaldehyde, 2-nitrobenzaldehyde and pyridine-2-aldehyde (in vitro) . Can reduce 1, 2-naphthoquinone and 9, 10-phenanthrenequinone (in vitro) . Can reduce the dialdehyde protein-binding form of aflatoxin B1 (AFB1) to the non-binding AFB1 dialcohol. May be involved in protection of liver against the toxic and carcinogenic effects of AFB1, a potent hepatocarcinogen.

Isotype: IgG

Conjugate: Non-conjugated

Clonality: Polyclonal

Uniport ID: O43488

Host Species: Rabbit

Species Reactivity: Human

Immunogen: Recombinant Human Aflatoxin B1 aldehyde reductase member 2 protein (100-359AA)

Immunogen Species: Human

Applications: ELISA, IHC

Tested Applications: ELISA, IHC; Recommended dilution: IHC:1:20-1:200

Purification Method: Antigen Affinity Purified

Dilution Ratio1: ELISA:1:2000-1:10000

Dilution Ratio2: IHC:1:20-1:200

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Buffer: PBS with 0.02% sodium azide, 50% glycerol, pH7.3.

Form: Liquid

Storage: Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.

Initial Research Areas: Signal Transduction

Research Areas: Neuroscience;Cancer;Metabolism;Signal transduction

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