Skip to main content

Forskolin

ADVERTISEMENT
Identification
Molecular formula
C22H34O7
CAS number
66575-29-9
IUPAC name
[1,3-diacetoxy-10-hydroxy-7,8-dimethyl-7-(3-methylenepent-4-enyl)-1,3,5,6,6a,8,9,10-octahydrobenzo[d]isobenzofuran-5-yl] deca-2,4-dienoate
State
State

At room temperature, forskolin is typically in a solid state. It is commonly used in research settings where it can be dissolved in various solvents for experimental purposes.

Melting point (Celsius)
205.00
Melting point (Kelvin)
478.15
Boiling point (Celsius)
286.00
Boiling point (Kelvin)
559.15
General information
Molecular weight
410.49g/mol
Molar mass
410.4910g/mol
Density
1.2100g/cm3
Appearence

Forskolin is a labdane diterpene that appears as a colorless solid. It is typically found as a crystalline substance, though it can also be amorphous. Its appearance is often described in scientific literature as a white or off-white powder.

Comment on solubility

Solubility of [1,3-diacetoxy-10-hydroxy-7,8-dimethyl-7-(3-methylenepent-4-enyl)-1,3,5,6,6a,8,9,10-octahydrobenzo[d]isobenzofuran-5-yl] deca-2,4-dienoate (C22H34O7)

The solubility of this complex organic compound exhibits intriguing characteristics that may affect its applications in various fields. The factors influencing its solubility can be summarized as follows:

  • Polarity: The presence of multiple functional groups, particularly the hydroxyl (–OH) and acetoxy (–OCOCH3) groups, suggests that the compound may have some polar characteristics, potentially enhancing its solubility in polar solvents like water.
  • Hydrophobic Regions: However, the bulk of the compound comprises hydrophobic hydrocarbon segments, which could limit solubility in polar solvents, advocating for its solubility in non-polar solvents such as hexane or chloroform.
  • Solvent Interaction: An effective solubility assessment should consider how the specific solvent interactions affect the dissolution process, with the potential for hydrogen bonding with solvents containing electronegative atoms.

In summary, while this compound may exhibit some solubility in polar solvents due to its functional groups, its large hydrophobic sections may limit that solubility. Comprehensive solubility testing in various solvents is recommended to delineate its full potential, as "solubility is not merely a binary outcome but a spectrum of interactions." Understanding these solubility parameters is crucial for effective utilization in research and industrial applications.

Interesting facts

Interesting Facts about [1,3-diacetoxy-10-hydroxy-7,8-dimethyl-7-(3-methylenepent-4-enyl)-1,3,5,6,6a,8,9,10-octahydrobenzo[d]isobenzofuran-5-yl] deca-2,4-dienoate

This compound is a fascinating example of a complex organic molecule that incorporates various functional groups and structural features, making it particularly interesting for chemists and organic synthesis enthusiasts. Below are some intriguing aspects of this compound:

  • Molecular Complexity: The name itself reflects a rich molecular architecture, including multiple rings and functional groups that could lead to unique reactivity and properties.
  • Bioactivity: Compounds with similar structures are often explored for their biological activity. Researchers have investigated derivatives of such complex organic molecules for potential medicinal benefits, including anti-cancer and anti-inflammatory properties.
  • Synthetic Challenges: The synthesis of this compound would require advanced techniques in organic chemistry, likely involving several steps including functional group transformations and possibly the use of chiral catalysts, which underscores the creativity and ingenuity often necessary in modern chemistry.
  • Applications in Material Science: The presence of functional groups suggests potential uses in material science, particularly in creating novel polymers or materials with specific properties such as increased flexibility or thermal stability.
  • Aesthetic Considerations: Organic molecules like this may also catch the eye of those in the art and design worlds, as their intricate structures can inspire visual motifs and contribute to the aesthetic dimension of chemical education.

In summary, [1,3-diacetoxy-10-hydroxy-7,8-dimethyl-7-(3-methylenepent-4-enyl)-1,3,5,6,6a,8,9,10-octahydrobenzo[d]isobenzofuran-5-yl] deca-2,4-dienoate exemplifies not just the beauty of organic chemistry, but also the intricate relationship between molecular structure and function. As we delve deeper into the study of such compounds, we continuously unlock new possibilities for innovation and discovery.