Interesting facts
Interesting Facts about 10-[2-(dimethylamino)propyl]-N,N-dimethyl-phenothiazine-2-sulfonamide
This compound, often classified as a phenothiazine derivative, stands out due to its unique structure and potential applications in medicinal chemistry. Here are some fascinating aspects to consider:
- Phenothiazine Backbone: The core structure of phenothiazine is notable for its role in the development of antipsychotic medications, highlighting the therapeutic potential of this compound.
- Dimethylamino Groups: The presence of dimethylamino groups enhances the compound's ability to interact with biological targets, illustrating the significance of functional group manipulation in drug design.
- Antimicrobial Activity: Compounds related to phenothiazine have been studied for their antimicrobial properties, indicating that this compound may exhibit similar characteristics, which could be valuable in treating infections.
- Research Applications: Due to its complex structure, this compound is of interest in scientific research, particularly in the fields of pharmacology and toxicology, allowing chemists to explore its environmental and biological impacts.
- Sulfonamide Feature: The inclusion of a sulfonamide moiety might contribute to the compound's pharmacological profile, as sulfonamides are known for their antibacterial effects.
As noted by researchers, "The strategic alteration of functional groups can lead to profound changes in the biological activity of a compound." This emphasizes the importance of compounds like 10-[2-(dimethylamino)propyl]-N,N-dimethyl-phenothiazine-2-sulfonamide in the ongoing quest for effective therapeutic agents.
Future research may unravel even more about this compound's mechanisms of action and provide insights into its potential as a multifaceted tool in treating various health conditions.
Synonyms
Dimetotiazine
FONAZINE
Dimethothiazine
7456-24-8
Dimethodin
Dimetiotazine
Dimetotiazina
Banistyl
Dimetotiazinum
Migristene
Bayer 1483
Dimetotiazinum [INN-Latin]
Dimetotiazina [INN-Spanish]
10-(2-(Dimethylamino)propyl)-N,N-dimethylphenothiazine-2-sulfonamide
Migristene (TN)
EINECS 231-229-6
10-[2-(dimethylamino)propyl]-N,N-dimethylphenothiazine-2-sulfonamide
1FTA475ZDB
BRN 0941549
Dimetotiazine (INN)
DTXSID6023076
8599 R.P.
Phenothiazine-2-sulfonamide, 10-(2-(dimethylamino)propyl)-N,N-dimethyl-
FONAZINE [MI]
3-Dimethylsulfonamido 10-(2-dimethylaminopropyl)phenothiazine
Dimethylsulfamido-3-(dimethylamino-2-propyl)-10-phenothiazine
DIMETOTIAZINE [INN]
IL-6302
DIMETOTIAZINE [WHO-DD]
DTXCID803076
N,N-Dimethyl-10-(2-dimethylaminopropyl)-2-phenothiazinylsulfonamid
Dimethiotazine; Dimethothiazine; Fonazine
10-[2-(Dimethylamino)propyl]-N,N-dimethyl-10H-phenothiazine-2-sulfonamide
10H-Phenothiazine-2-sulfonamide, 10-[2-(dimethylamino)propyl]-N,N-dimethyl-
Dimetotiazinum (INN-Latin)
10-(2-(dimethylamino)propyl)-N,N-dimethylphenothiazine-2-sulfonamide monomethane sulfonate
Dimetotiazina (INN-Spanish)
Dimethiotazine
Dimetotiazine [INN:BAN]
UNII-1FTA475ZDB
IL 6302
Dimetotiazin
R.P. 8599
fonazine monomesylate
Promaquid (Salt/Mix)
Migristene (Salt/Mix)
SCHEMBL79333
CHEMBL346977
N02CX05
CHEBI:135616
HY-A0157
Tox21_113201
AKOS040751843
DB08967
RP-8599
NCGC00249414-01
DA-72788
CAS-7456-24-8
CS-0017485
NS00002766
D07854
EN300-19767844
Q27097974
10-[2-(Dimethylamino)propyl]-N,N-dimethyl-10H-phenothiazine-2-sulfonamide #
231-229-6
Solubility of 10-[2-(dimethylamino)propyl]-N,N-dimethyl-phenothiazine-2-sulfonamide
The compound 10-[2-(dimethylamino)propyl]-N,N-dimethyl-phenothiazine-2-sulfonamide, represented by the chemical formula C16H18N3ClS, exhibits intriguing solubility characteristics that are influenced by its structural components.
Factors Influencing Solubility:
In general, *this compound may be expected to be soluble in polar organic solvents* such as methanol and ethanol, while its solubility in water could be limited due to the hydrophobic characteristics imparted by the phenothiazine moiety. However, quantifying the solubility would require empirical testing to ascertain its behavior in various solvent systems.
As a notable point, *the balance between polar and non-polar functional groups* allows for a fascinating exploration of the compound's solubility profile in pharmaceuticals and related applications.