Interesting facts
Interesting Facts about 1-[3-(2-Methylsulfonylphenothiazin-10-yl)propyl]piperidine-4-carboxamide
This unique compound is a fascinating example of the intersection between medicinal chemistry and pharmacology. With its intricate structure, it holds significant promise for various therapeutic applications. Here are some compelling points to note:
- Pharmacological Relevance: This compound is often explored for its potential role in treating psychiatric disorders. Compounds in the phenothiazine class are known for their antipsychotic properties.
- Methylsulfonyl Group: The presence of the methylsulfonyl group enhances the compound's solubility and stability, which is crucial for drug efficacy in biological systems.
- Piperidine Ring: The piperidine moiety adds to the bioactivity profile of the compound, providing a versatile scaffold that can facilitate interactions with various biological targets.
- Structure-Activity Relationship (SAR): Researchers continuously study how modifications to the phenothiazine backbone influence the compound's pharmacological effect, aiming to optimize its therapeutic properties.
- Synthesis Challenges: The synthesis of this compound can involve various complex reaction pathways, making it a subject of interest for synthetic chemists looking to innovate safer and more efficient production methods.
Overall, 1-[3-(2-methylsulfonylphenothiazin-10-yl)propyl]piperidine-4-carboxamide is not just a chemical entity but a key player in the ongoing quest for effective treatments in the fields of psychiatry and neurology. As the saying goes, "In chemistry, as in life, the whole is always more than the sum of its parts."
Synonyms
Metopimazine
14008-44-7
Metopimazina
EXP 999
Metopimazinum
EXP-999
238S75V9AV
1-[3-(2-methylsulfonylphenothiazin-10-yl)propyl]piperidine-4-carboxamide
DTXSID80161224
1-(3-(2-(Methylsulfonyl)phenothiazin-10-yl)propyl)isonipecotamide
1-[3-[2-(Methylsulfonyl)phenothiazin-10-yl]propyl]isonipecotamide
1-(3-(2-methylsulfonylphenothiazin-10-yl)propyl)piperidine-4-carboxamide
DTXCID4083715
A04AD05
1-(3-(2-methylsulfonylphenothiazin-10-yl) propyl)isonipecotinamide
1-(3-(2-methanesulfonyl-10H-phenothiazin-10-yl)propyl)piperidine-4-carboxamide
237-818-4
Vogalene
4-Piperidinecarboxamide, 1-[3-[2-(methylsulfonyl)-10H-phenothiazin-10-yl]propyl]-
1-[3-[2-(Methylsulfonyl)-10H-phenothiazin-10-yl]propyl]-4-piperidinecarboxamide
4-Piperidinecarboxamide, 1-(3-(2-(methylsulfonyl)-10H-phenothiazin-10-yl)propyl)-
RP-9965
Nortrip
1-(3-(2-(Methylsulfonyl)-10H-phenothiazin-10-yl)propyl)-4-piperidinecarboxamide
Metopimazinum [INN-Latin]
Metopimazina [INN-Spanish]
RP 9965
EINECS 237-818-4
BRN 4278585
UNII-238S75V9AV
Metopimazine [USAN:INN:BAN]
2-Methylsulfonyl-10-(3-(4-carbamoylpiperidino)propyl)phenothiazine
METOPIMAZINE [MI]
10-(3-(4-Carbamoylpiperidine)propyl)-2-(methanesulfonyl)phenothiazine
Phenothiazine, 10-(3-(4'-carbamoylpiperidino)propyl)-2-methylsulfonyl-
Metopimazine (USAN/INN)
METOPIMAZINE [INN]
1-(3-(2-(Methylsulfonyl)phenothiazin-10-yl)propyl)-4-piperidinecarboxamide
4-Piperidinecarboxamide, 1-(3-(2-(methanesulfonyl)phenothiazin-10-yl)propyl)-
METOPIMAZINE [USAN]
SCHEMBL49905
METOPIMAZINE [MART.]
METOPIMAZINE [WHO-DD]
CHEMBL398615
orb1703092
SCHEMBL29462317
SCHEMBL30038347
BDBM82383
GTPL11140
CHEBI:135726
BDBM179867
CAS_26388
NG-101
NSC_26388
AKOS005065914
ISONIPECOTAMIDE, 1-(3-(2-(METHYLSULFONYL)PHENOTHIAZIN-10-YL)PROPYL)-
BCP9000921
DB13591
US9132134, Metopimazine (NG101)
DA-55438
HY-116578
CS-0065952
NS00009519
D05010
Q194682
1-(3-[2-(Methylsulfonyl)-10H-phenothiazin-10-yl]propyl)-4-piperidinecarboxamide #
Solubility of 1-[3-(2-methylsulfonylphenothiazin-10-yl)propyl]piperidine-4-carboxamide
The solubility of the compound 1-[3-(2-methylsulfonylphenothiazin-10-yl)propyl]piperidine-4-carboxamide is influenced by its complex molecular structure. Generally, solubility can be affected by several key factors:
In practice, the solubility is typically examined at specific temperatures and concentrations. It’s essential to categorize this compound's solubility into:
To fully understand and predict the solubility behavior of C19H24N2O2S, it is crucial to conduct experimental assessments in various solvents. This approach would yield valuable insights into its practical applications in pharmaceuticals and other industries.