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Zanamivir

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Identification
Molecular formula
C12H20N4O7
CAS number
139110-80-8
IUPAC name
4-[[1-(4-guanidinobutylcarbamoyl)-3-methyl-butyl]amino]-3-hydroxy-4-oxo-butanoic acid
State
State

Zanamivir is generally in a solid state at room temperature. It is an antiviral medication used to treat influenza infections and is often administered via inhalation devices.

Melting point (Celsius)
199.30
Melting point (Kelvin)
472.45
Boiling point (Celsius)
290.00
Boiling point (Kelvin)
563.15
General information
Molecular weight
332.39g/mol
Molar mass
332.3880g/mol
Density
1.5745g/cm3
Appearence

It typically appears as a white crystalline powder. It is often supplied in a dry powder form intended for inhalation.

Comment on solubility

Solubility of 4-[[1-(4-guanidinobutylcarbamoyl)-3-methyl-butyl]amino]-3-hydroxy-4-oxo-butanoic acid

The solubility of 4-[[1-(4-guanidinobutylcarbamoyl)-3-methyl-butyl]amino]-3-hydroxy-4-oxo-butanoic acid (C12H20N4O7) is influenced by several factors, notably the presence of functional groups and its overall molecular structure. Here are key points to consider:

  • Polarity: The compound features multiple polar functional groups due to the presence of guanidine and hydroxyl moieties, suggesting a potential for significant solubility in polar solvents, particularly water.
  • Hydrogen Bonding: The hydroxyl groups not only enhance solubility but also facilitate interactions with water molecules through hydrogen bonding, which can further increase solubility.
  • Ionization: Under certain pH conditions, the guanidine group can ionize, enhancing solubility in aqueous environments.
  • Temperature Dependence: As with many organic compounds, solubility may increase with temperature, allowing for higher solubility in warmer conditions.
  • Concentration Effects: At higher concentrations, precipitation may occur if the solubility limit is breached, leading to decreased availability in solution.

Overall, while the intricate nature of 4-[[1-(4-guanidinobutylcarbamoyl)-3-methyl-butyl]amino]-3-hydroxy-4-oxo-butanoic acid suggests a favorable solubility profile in aqueous solutions, practical assessments and experimental data are essential for definitive conclusions regarding its solubility in various solvents.

Interesting facts

Interesting Facts About 4-[[1-(4-guanidinobutylcarbamoyl)-3-methyl-butyl]amino]-3-hydroxy-4-oxo-butanoic acid

This compound, often referred to as a complex amino acid derivative, has a unique structure that offers various intriguing properties and potential applications. Here are some key facts about this fascinating compound:

  • Biological Significance: The incorporation of guanidinobutyl and carbamoyl groups in its structure suggests potential interactions with biological systems, making it an interesting subject for research in areas such as pharmacology and biochemistry.
  • Enzymatic Activities: Research indicates that compounds with similar structures can exhibit inhibitory effects on certain enzymes, which could lead to promising therapeutic applications in disease management.
  • Structural Complexity: The multifunctionality of this compound arises from its diverse functional groups, which allows for potential modification and optimization in drug design. This complexity is often a point of interest among synthetic chemists and pharmacologists.
  • Potential Synonyms: While it has a systematic IUPAC name, this compound may also be known by other names or acronyms within the scientific literature, reflecting its various uses and the different contexts in which it is studied.
  • Research Opportunities: The unique elements of this compound open avenues for research in synthetic organic chemistry. Understanding its reactivity can lead to the development of new synthetic pathways or materials.

As we delve deeper into the world of synthetic compounds like 4-[[1-(4-guanidinobutylcarbamoyl)-3-methyl-butyl]amino]-3-hydroxy-4-oxo-butanoic acid, the possibilities for innovation and discovery become endless. As one noted chemist stated, “The pursuit of understanding these complex molecules holds the key to unlocking future scientific advancements.”

Adventurous chemists may find that examining such compounds can inspire new methodologies in research and pave the way towards groundbreaking solutions in health and material science.

Synonyms
SCHEMBL10066979
PD039775