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Catalog Number:
20980
CAS Number:
106488-05-5
4-Methylumbelliferyl α-L-rhamnopyranoside
Synonym(s):
4-Mu-α-L-RHA
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Product Information

4-Methylumbelliferyl a-L-rhamnopyranoside is a valuable glycoside compound widely utilized in biochemical research and enzyme assays. This compound serves as a substrate for various glycosidases, making it an essential tool for studying carbohydrate metabolism and enzyme kinetics. Its unique structure allows for the release of a fluorescent product upon hydrolysis, enabling researchers to easily monitor enzymatic activity in real-time. This property is particularly beneficial in applications such as enzyme inhibition studies and the characterization of glycosidase activity in complex biological samples.

In addition to its role in enzyme assays, 4-Methylumbelliferyl a-L-rhamnopyranoside is also employed in the field of microbiology for the detection of specific bacterial strains that produce rhamnosidases. Its ability to provide a clear and measurable fluorescent signal makes it an excellent choice for high-throughput screening applications. Researchers and industry professionals can leverage this compound to enhance their studies on enzyme functionality and microbial activity, ultimately leading to advancements in biotechnology and pharmaceutical development.

Synonyms
4-Mu-α-L-RHA
CAS Number
106488-05-5
Molecular Formula
C16H18O7
Molecular Weight
322.31
MDL Number
MFCD00171591
PubChem ID
3573836
Conditions
Store at 0-8°C
General Information
Synonyms
4-Mu-α-L-RHA
CAS Number
106488-05-5
Molecular Formula
C16H18O7
Molecular Weight
322.31
MDL Number
MFCD00171591
PubChem ID
3573836
Conditions
Store at 0-8°C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

4-Methylumbelliferyl a-L-rhamnopyranoside is widely utilized in research focused on:

  • Enzyme Activity Assays: This compound serves as a substrate for various glycosidases, allowing researchers to measure enzyme activity effectively. Its fluorescence upon hydrolysis provides a sensitive detection method.
  • Plant Biochemistry Studies: It is used to study the metabolism of rhamnose-containing compounds in plants, helping researchers understand plant responses to environmental stress and pathogen interactions.
  • Food Industry Applications: The compound can be employed to detect and quantify specific glycosidase activities in food products, ensuring quality control and safety in food processing.
  • Clinical Research: It aids in the investigation of glycosidase-related diseases, offering insights into potential therapeutic targets and biomarkers for conditions like lysosomal storage disorders.
  • Biotechnology Innovations: This chemical is leveraged in developing biosensors and biocatalysts, enhancing efficiency in bioprocessing and environmental applications.

Citations