Dihydrohaloperidol, (S)-

A summary of the most common chemical descriptors (InChI Key and SMILES codes) for Dihydrohaloperidol, (S)- are summarized together with 3D and 2D structures and relevant physico-chemical properties.

What is the Dihydrohaloperidol, (S)-?

The molecule Dihydrohaloperidol, (S)- presents a molecular formula of C21H25ClFNO2 and its IUPAC name is 4-(4-chlorophenyl)-1-[(4S)-4-(4-fluorophenyl)-4-hydroxybutyl]piperidin-4-ol.

Dihydrohaloperidol, (S)- is a molecule of the haloperidol class. It is a white powder that is insoluble in water. It has a molecular weight of 380.8 g/mol and a melting point of 155-156 °C..

Dihydrohaloperidol, (S)- is a dopamine antagonist that is used to treat schizophrenia and other mental disorders. It works by blocking dopamine receptors in the brain. This decreases the amount of dopamine in the brain and helps to reduce symptoms of schizophrenia..

Dihydrohaloperidol, (S)- exists as a tablet, an injection, and a solution for oral use. It is typically taken two to four times daily. Common side effects include dry mouth, constipation, and drowsiness..

Dihydrohaloperidol, (S)- is a prescription medication. It is important to follow the instructions of your doctor or pharmacist when taking this medication..

3D structure

Cartesian coordinates

Geometry of Dihydrohaloperidol, (S)- in x, y and z coordinates (Å units) to copy/paste elsewhere. Generated with Open Babel software.

2D drawing

 

Dihydrohaloperidol, (S)- WNZBBTJFOIOEMP-FQEVSTJZSA-N chemical compound 2D structure molecule svg
Dihydrohaloperidol, (S)-

 

Molecule descriptors

 
IUPAC name4-(4-chlorophenyl)-1-[(4S)-4-(4-fluorophenyl)-4-hydroxybutyl]piperidin-4-ol
InChI codeInChI=1S/C21H25ClFNO2/c22-18-7-5-17(6-8-18)21(26)11-14-24(15-12-21)13-1-2-20(25)16-3-9-19(23)10-4-16/h3-10,20,25-26H,1-2,11-15H2/t20-/m0/s1
InChI KeyWNZBBTJFOIOEMP-FQEVSTJZSA-N
SMILESO[C@@H](CCCN1CCC(O)(c2ccc(Cl)cc2)CC1)c1ccc(F)cc1

Other names (synonyms)

IUPAC nomenclature provides a standardized method for naming chemical compounds. Although this system is widely used in chemistry, many chemical compounds have also other names commonly used in different contexts. These synonyms can come from a variety of sources and are used for a variety of purposes.

One common source of synonyms for chemical compounds is the common or trivial names, assigned on the basis of appearance, properties, or origin of the molecule.

Another source of synonyms are historical or obsolete names employed in the past, however replaced nowadays by more modern or standardized names.

In addition to common and historical names, chemical compounds may also have synonyms that are specific to a particular field or industry.

  • (S)-4-(4-Chloro-phenyl)-1-[4-(4-fluoro-phenyl)-4-hydroxy-butyl]-piperidin-4-ol
  • 136271-61-9
  • 4-(4-CHLOROPHENYL)-.ALPHA.-(4-FLUOROPHENYL)-4-HYDROXY-1-PIPERIDINEBUTANOL, S(-)-
  • 4-(4-Chlorophenyl)-alpha-(4-fluorophenyl)-4-hydroxy-1-piperidinebutanol, S(-)-
  • BDBM50036734
  • Dihydrohaloperidol, (S)-
  • IME4LIZ1ZO
  • R-2572, (S)-
  • Reduced haloperidol, (S)-
  • S(?)-Reduced haloperiodol

Reference codes for other databases

There exist several different chemical codes commonly used in orded to identify molecules:
  • ZINC2516030
  • UNII-IME4LIZ1ZO
  • CHEMBL129237

Physico-Chemical properties

IUPAC name4-(4-chlorophenyl)-1-[(4S)-4-(4-fluorophenyl)-4-hydroxybutyl]piperidin-4-ol
Molecular formulaC21H25ClFNO2
Molecular weight377.88
Melting point (ºC)
Boiling point (ºC)
Density (g/cm3)
Molar refractivity106.22
LogP4.2
Topological polar surface area43.7

LogP and topological polar surface area (TPSA) values were estimated using Open Babel software.

The n-octanol/water partition coeficient (Kow) data is applied in toxicology and drug research. Kow values are used, to guess the environmental fate of persistent organic pollutants. High partition coefficients values, tend to accumulate in the fatty tissue of organisms. Molecules with a log(Kow) (or LogP) greater than 5 are considered to bioaccumulate.

TPSA values are the sum of the surface area over all polar atoms or molecules, mainly oxygen and nitrogen, also including hydrogen atoms.

In medicinal chemistry, TPSA is used to assess the ability of a drug to permeabilise cells.

For molecules to penetrate the blood-brain barrier (and act on receptors in the central nervous system), TPSA values below 90 Å2 are required. Thus, molecules with a polar surface area greater than 140 Å2 tend to be poorly permeable to cell membranes.