Recombinant Human ALDH1A2 Protein supplied by Elabscience with collaborator-provided technical specifications.
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Recombinant Human ALDH1A2 Protein is a research-use recombinant protein from Elabscience preparation representing ALDH1A2 supplied as Lyophilized. Review the expression, purity, formulation and storage specifications below before selecting it for an assay or functional workflow.
Fully tested in-house by ABMIUM. Highest confidence. Non-conformities fully supported under the ABMIUM Product Promise.
Quality verified. Independent collaborator or expected-performance data available. Product meets ABMIUM quality standards.
Expected to work based on structural and biochemical data. Not yet directly tested by ABMIUM or a collaborator. No non-conformity support for this combination.
Not recommended for this application or species/sample combination. This may indicate either evidence of unsuitability or that the combination has not been tested and therefore cannot currently be recommended.
Evidence status by application and model.
| Species | Bioactivity | Binding | Cell-Based | In Vivo | ELISA Capture |
|---|---|---|---|---|---|
| Human |
This product is manufactured by Elabscience and sold through ABMIUM without relabelling.
ABMIUM supports global orders. Availability, shipping requirements and applicable import arrangements are confirmed before fulfilment where required.
Yes. Send your target, sample, application and experimental conditions through ABMIUM MATCH or technical support.
Unless the listing expressly states otherwise, ABMIUM products are supplied for research use only and are not for diagnostic or therapeutic use.
ALDH1A2 (aldehyde dehydrogenase 1 family member A2), commonly called retinal dehydrogenase 2 or RALDH2, is a retinaldehyde dehydrogenase that generates retinoic acid, a vitamin A-derived signalling molecule. Researchers study ALDH1A2 to examine spatial control of retinoid signalling, developmental patterning and tissue-specific retinoic acid metabolism.
Biological function: ALDH1A2 catalyses NAD-dependent oxidation of retinaldehyde to retinoic acid, providing a key biosynthetic step that controls local retinoic acid availability. Retinal dehydrogenase 2 therefore contributes to retinoid-dependent transcriptional programmes in developing and adult tissues.
