Date published: 2026-4-25

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Rutinose (CAS 90-74-4)

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CAS Number:
90-74-4
Molecular Weight:
326.3
Molecular Formula:
C12H22O10
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Rutinose is a disaccharide composed of the sugars rhamnose and glucose, and it is often employed in research studies investigating carbohydrate metabolism and enzyme-substrate specificity. In enzymology, rutinose is used to assay the activity of glycosidases, particularly α-L-rhamnosidases, which are enzymes that cleave the rhamnose component from various natural products. The study of these enzymes is important for understanding the degradation of plant materials and the bioconversion of glycosylated compounds. In the field of plant biochemistry, rutinose is studied for its role in the synthesis and breakdown of flavonoids and glycosides, which are vital for plant defense mechanisms and pigmentation. Additionally, rutinose serves as a model compound in glycoscience research to investigate the mechanisms of carbohydrate-protein interactions, which are essential for numerous biological processes.


Rutinose (CAS 90-74-4) References

  1. Syntheses of R-beta-rutinosides by rutin-degrading reaction.  |  Zhou, L., et al. 2009. J Asian Nat Prod Res. 11: 18-23. PMID: 19177231
  2. Immobilization of flavonol 3-O-beta-heterodisaccharidase on porous glass and production of rutinose from rutin.  |  Coniglio, M. and Kreis, W. 2009. Planta Med. 75: 1459-61. PMID: 19452439
  3. Degradation of rutin by Thermoactinomyces vulgaris and other thermophilic compost isolates.  |  Yang, CH., et al. 2009. J Agric Food Chem. 57: 5095-9. PMID: 19489631
  4. Two novel disaccharides, rutinose and methylrutinose, are involved in carbon metabolism in Datisca glomerata.  |  Schubert, M., et al. 2010. Planta. 231: 507-21. PMID: 19915863
  5. α-Rhamnosyl-β-glucosidase-catalyzed reactions for analysis and biotransformations of plant-based foods.  |  Minig, M., et al. 2011. J Agric Food Chem. 59: 11238-43. PMID: 21834586
  6. Direct detection of rutin-degrading isozymes with polyacrylamide gel electrophoresis.  |  Li, Y., et al. 2013. Anal Biochem. 443: 240-2. PMID: 24050968
  7. [Health--promoting effect of quercetin in human diet].  |  Kobylińska, A. and Janas, KM. 2015. Postepy Hig Med Dosw (Online). 69: 51-62. PMID: 25589713
  8. Hydrolysis of the rutinose-conjugates flavonoids rutin and hesperidin by the gut microbiota and bifidobacteria.  |  Amaretti, A., et al. 2015. Nutrients. 7: 2788-800. PMID: 25875120
  9. Bacteria as source of diglycosidase activity: Actinoplanes missouriensis produces 6-O-α-L-rhamnosyl-β-D-glucosidase active on flavonoids.  |  Neher, BD., et al. 2016. Appl Microbiol Biotechnol. 100: 3061-70. PMID: 26549237
  10. Hormetic efficacy of rutin to promote longevity in Drosophila melanogaster.  |  Chattopadhyay, D., et al. 2017. Biogerontology. 18: 397-411. PMID: 28389882
  11. A novel Aspergillus oryzae diglycosidase that hydrolyzes 6-O-α-L-rhamnosyl-β-D-glucoside from flavonoids.  |  Ishikawa, M., et al. 2018. Appl Microbiol Biotechnol. 102: 3193-3201. PMID: 29476400
  12. Functional Characterization of a Flavonoid Glycosyltransferase in Sweet Orange (Citrus sinensis).  |  Liu, X., et al. 2018. Front Plant Sci. 9: 166. PMID: 29497429
  13. One-Pot Multienzyme Cofactors Recycling (OPME-CR) System for Lactose and Non-natural Saccharide Conjugated Polyphenol Production.  |  Darsandhari, S., et al. 2018. J Agric Food Chem. 66: 7965-7974. PMID: 29968471
  14. Neutral loss scan in complement with high-resolution MS/MS: Combination of detection methods for flavonoid and limonoid glycosides analysis.  |  Goh, RMV., et al. 2022. J Mass Spectrom. 57: e4810. PMID: 35088488
  15. An Overview of Biosynthetic Pathway and Therapeutic Potential of Rutin.  |  Goyal, J. and Verma, PK. 2023. Mini Rev Med Chem.. PMID: 36698235

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Rutinose, 25 mg

sc-286734
25 mg
$327.00

Rutinose, 50 mg

sc-286734A
50 mg
$599.00