Chlorpromazine Hydrochloride

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Identification

Molecular formula
C17H20ClN3S · HCl
CAS Number
69-09-0
IUPAC Name
3-(2-chlorophenothiazin-10-yl)-N,N-dimethyl-propan-1-amine;hydrochloride
Molecular Weight
355.33g/mol
Melting Point
(Celsius)
Boiling Point
(Celsius)
Density
1.3000g/cm3
Synonyms
Chlorpromazine hydrochloride
Interesting facts

Interesting Facts about 3-(2-chlorophenothiazin-10-yl)-N,N-dimethyl-propan-1-amine; hydrochloride

This intriguing compound, often discussed in the context of pharmacology and medicinal chemistry, has garnered attention due to its unique structure and properties. Here are some fascinating points about this compound:

  • Dual Functionality: As a derivative of phenothiazine, this compound combines the properties of both phenothiazine and amine, providing possibilities for various biological activities. Its design allows for interactions with a range of biological targets.
  • Pharmacological Applications: Compounds like this one, due to their phenothiazine structure, are often explored for their potential as antipsychotics and antidepressants, targeting neurotransmitter pathways in the brain.
  • Synthesis Insights: The synthesis of this compound typically involves multi-step reactions that require careful control of reaction conditions, highlighting the complexity and creativity involved in modern synthetic organic chemistry.
  • Chlorine's Role: The presence of the chlorine atom enhances the compound's pharmacological activity by improving its binding affinity to various receptors, which is a common strategy in drug design called "bioisosteric replacement."
  • Dynamic Interactions: Upon administration, the hydrochloride salt form allows for better solubility and bioavailability, showcasing the importance of salt forms in drug formulation.

In the words of a prominent chemist, "Molecules tell stories, and the narratives of their interactions can change the lives of many." This compound serves as a fantastic example of how understanding chemical structure can lead to breakthroughs in therapeutic applications.

Exploring compounds like 3-(2-chlorophenothiazin-10-yl)-N,N-dimethyl-propan-1-amine; hydrochloride not only deepens our comprehension of chemistry but also opens doors for novel treatment options in medicine.

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