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Catalog Number:
20934
CAS Number:
10387-49-2
7-Acetoxicumarina
Synonym(s):
Acetilumbeliferona, Acetato de hidroxicumarina
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Product Information

7-Acetoxycoumarin is a versatile chemical compound widely recognized for its applications in various fields, particularly in biochemistry and pharmaceuticals. This compound, a derivative of coumarin, exhibits unique fluorescent properties that make it an excellent choice for use in molecular probes and assays. Researchers often utilize 7-Acetoxycoumarin in studies involving enzyme activity, particularly in the detection of esterase and lipase activities, due to its ability to release a fluorescent product upon hydrolysis. Its stability and solubility in organic solvents further enhance its utility in laboratory settings.

In addition to its research applications, 7-Acetoxycoumarin has potential uses in the development of therapeutic agents, particularly in the field of cancer research, where it may serve as a lead compound for the synthesis of novel anticancer drugs. Its ability to interact with biological systems and its favorable pharmacological properties position it as a valuable tool for scientists and industry professionals alike. By incorporating 7-Acetoxycoumarin into their research, professionals can unlock new avenues for innovation and discovery.

Synonyms
Acetilumbeliferona, Acetato de hidroxicumarina
CAS Number
10387-49-2
Molecular Formula
C11H8O4
Molecular Weight
204.18
MDL Number
MFCD00449864
PubChem ID
928228
Conditions
Conservar entre 0 y 8 °C.
General Information
Synonyms
Acetilumbeliferona, Acetato de hidroxicumarina
CAS Number
10387-49-2
Molecular Formula
C11H8O4
Molecular Weight
204.18
MDL Number
MFCD00449864
PubChem ID
928228
Conditions
Conservar entre 0 y 8 °C.
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

7-Acetoxycoumarin is widely utilized in research focused on:

  • Fluorescent Probes: This compound serves as an effective fluorescent probe in biochemical assays, allowing researchers to visualize and track biological processes in real-time.
  • Antioxidant Studies: It is commonly used in studies investigating antioxidant properties, helping scientists understand its potential in combating oxidative stress in cells.
  • Drug Development: The compound is explored in pharmaceutical research for its potential as a lead compound in developing new therapeutic agents, particularly in cancer treatment.
  • Enzyme Inhibition: Researchers utilize it to study enzyme inhibition mechanisms, which can lead to the development of new drugs targeting specific enzymes involved in disease pathways.
  • Photodynamic Therapy: Its properties make it a candidate for photodynamic therapy applications, where it can be activated by light to produce reactive species that kill cancer cells.

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