Eudysmic ratio

The eudysmic ratio (also spelled eudismic ratio) is a common term in pharmacology, chemistry, and molecular biology. The eudysmic ratio describes the difference in pharmacologic activity between the two enantiomers of a drug.

When enantiomers are formed non-selectively and the resulting product contains an equal quantity of each enantiomer it is called a racemic mixture.

In pharmacology it is frequently, though not always, the case that one enantiomer of a chiral drug has greater pharmacological activity than the other. The eudysmic ratio is a mathematical equation that quantitatively measures the difference in this activity. A eudysmic ratio significantly differing from 1 means that there is a large difference in activity between the two enantiomers.

Terminology

The eutomer is the chiral enantiomer having the desired pharmacological activity,[1] e.g., as an active ingredient in a drug.

The distomer, on the other hand, is the enantiomer of the eutomer which may have undesired bioactivity or may be bio-inert.[2]

It is often the case that only a single one of the enantiomers contains all of the wanted bioactivity, the distomer is often less active, has no desired activity or may even be toxic.[3] In some cases the eudysmic ratio is so high that it is desired to separate out the two enantiomers instead of leaving it as a racemic product. It is also possible that the distomer is not simply completely inactive but actually antagonizes the effects of the eutomer. Alternatively, it is possible that the distomer converts in the body into the eutomer, at least partly.

Calculation

The sum of the difference between the more active substance, the eutomer, and the less active substance, the distomer, is called the eudysmic ratio. One way the eudysmic ratio is computed is by dividing the EC50 or the IC50 of the distomer by the same measurement of the eutomer. Whether one chooses to use the EC50 or IC50 depends on the drug in question.

Examples

See also

References

  1. Wermuth CG, Ganellin CR, Lindber P, Mitscher LA (1998). Glossary of Terms used in Medicinal Chemistry (IUPAC Recommendations 1998). In: Pure & Appl. Chem. 70:1129-1143.
  2. Hermann J. Roth, Christa E. Müller, Gerd Folkers: Stereochemie und Arzneistoffe, Wissenschaftliche Verlagsgesellschaft Stuttgart, 1998, S. 80−82, ISBN 3-8047-1485-4.
  3. E. J. Ariëns (1984). "Stereochemistry, a basis for sophisticated nonsense in pharmacokinetics and clinical pharmacology". Eur. J. Clin. Pharmacol. 26 (6): 663–668. doi:10.1007/bf00541922. PMID 6092093.