1,5-Anhydro-D-Fructose Reductase (AKR1CL2) Antibody

Este producto es parte de AKR1E- Aldo-keto reductase family 1 member E
1,5-Anhydro-D-Fructose Reductase (AKR1CL2) Antibody
357.5€ (100 µg)

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Name
1,5-Anhydro-D-Fructose Reductase (AKR1CL2) Antibody
Category
Primary Antibodies
Provider
Abbexa
Reference
abx145192
Tested Applications
ELISA, WB, IHC

Description

AKR1CL2 Antibody is a Rabbit Polyclonal against AKR1CL2.

Documentos del producto

Instrucciones
Data sheet
Descargar

Especificaciones del producto

Category
Primary Antibodies
Immunogen Target
Target: 1,5-Anhydro-D-Fructose Reductase (AKR1CL2)
Immunogen: Recombinant fragment corresponding to 96-302 AA of human AKR1CL2.
Host
Rabbit
Reactivity
Human
Assay Type
Concentration: Lyophilized form: Not applicable.  After reconstitution: 1 mg/ml.
Recommended Dilution
ELISA: 1/20000 - 1/80000, WB: 1/500 - 1/2000, IHC: 1/100 - 1/200. Optimal dilutions/concentrations should be determined by the end user.
Clonality
Polyclonal
Conjugation
Unconjugated
Isotype
IgG
Observed MW
Observed MW: 36 kDa
Purification
Purified by antigen affinity column chromatography.
Size 1
100 µg
Size 2
1 mg
Form
Lyophilized
Tested Applications
ELISA, WB, IHC
Buffer
Prior to lyophilization: 1% BSA and 0.02% NaN3.
Availability
Shipped within 7-15 working days.
Storage
Store at -20 °C. Avoid repeated freeze/thaw cycles.
Dry Ice
No
NCBI Accession
BC002862
Alias
AKR1E2,AKR1CL2,AKRDC1
Background
Antibody anti-AKR1E2
Status
RUO
Note
THIS PRODUCT IS FOR RESEARCH USE ONLY. NOT FOR USE IN DIAGNOSTIC, THERAPEUTIC OR COSMETIC PROCEDURES. NOT FOR HUMAN OR ANIMAL CONSUMPTION.

Background

AKR1E2 is a less characterized member of the aldo-keto reductase superfamily but is known to catalyze the reduction of various aldehydes and ketones, contributing to cellular detoxification and redox balance. AKR1E2 has a broad substrate specificity, metabolizing reactive aldehydes such as those derived from lipid peroxidation (4-HNE) and environmental toxins. Its enzymatic activity protects cells from oxidative stress and damage caused by reactive carbonyl species (RCS), linking it to cellular defense mechanisms. While its tissue-specific expression and physiological roles are still being elucidated, AKR1E2 likely plays a role in liver and kidney detoxification processes. Emerging evidence suggests its involvement in redox regulation and energy metabolism under stress conditions. Dysregulation of AKR1E2 may contribute to oxidative stress-associated diseases, including neurodegeneration, cardiovascular disease, and cancer, where impaired detoxification exacerbates cellular damage. Further studies are needed to clarify its unique functions and therapeutic potential.

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