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  2. Enantiomer - Wikipedia

    en.wikipedia.org/wiki/Enantiomer

    There are three common naming conventions for specifying one of the two enantiomers (the absolute configuration) of a given chiral molecule: the R/S system is based on the geometry of the molecule; the (+)- and (−)- system (also written using the obsolete equivalents d- and l-) is based on its optical rotation properties; and the D/L system is based on the molecule's relationship to ...

  3. Chirality - Wikipedia

    en.wikipedia.org/wiki/Chirality

    Macroscopic examples of chirality are found in the plant kingdom, the animal kingdom and all other groups of organisms. A simple example is the coiling direction of any climber plant, which can grow to form either a left- or right-handed helix. In anatomy, chirality is found in the imperfect mirror image symmetry of many kinds of animal bodies.

  4. Enantiopure drug - Wikipedia

    en.wikipedia.org/wiki/Enantiopure_drug

    The desired enantiomer is known as an eutomer while the undesired enantiomer is known as the distomer. [2] When equal amounts of both enantiomers are found in a mixture, the mixture is known as a racemic mixture. If a mixture for a drug does not have a 1:1 ratio of its enantiomers it is a candidate for an enantiopure drug.

  5. Chirality (chemistry) - Wikipedia

    en.wikipedia.org/wiki/Chirality_(chemistry)

    Two enantiomers of a generic amino acid that are chiral (S)-Alanine (left) and (R)-alanine (right) in zwitterionic form at neutral pH. In chemistry, a molecule or ion is called chiral (/ ˈ k aɪ r əl /) if it cannot be superposed on its mirror image by any combination of rotations, translations, and some conformational changes.

  6. Chiral inversion - Wikipedia

    en.wikipedia.org/wiki/Chiral_inversion

    Chiral inversion is the process of conversion of one enantiomer of a chiral molecule to its mirror-image version with no other change in the molecule. [1] [2] [3] [4]Chiral inversion happens depending on various factors (viz. biological-, solvent-, light-, temperature- induced, etc.) and the energy barrier energy barrier associated with the stereogenic element present in the chiral molecule. 2 ...

  7. D-Amino acid - Wikipedia

    en.wikipedia.org/wiki/D-Amino_acid

    L- and D-amino acids are usually enantiomers.The exceptions are two amino acids with two stereogenic centers, threonine and isoleucine.Aside from those two special cases, L- and D-amino acids have identical properties (color, solubility, melting point) under many conditions.

  8. Coniine - Wikipedia

    en.wikipedia.org/wiki/Coniine

    Coniine is also found in Sarracenia flava, the yellow pitcher plant. [3] [4] The yellow pitcher plant is a carnivorous plant endemic to the southeastern United States. The plant uses a mixture of sugar and coniine to simultaneously attract and poison insects, which then fall into a digestive tube. [5] Coniine is also found in Aethusa cynapium ...

  9. Selenomethionine - Wikipedia

    en.wikipedia.org/wiki/Selenomethionine

    Selenomethionine (SeMet) is a naturally occurring amino acid.The L-selenomethionine enantiomer is the main form of selenium found in Brazil nuts, cereal grains, soybeans, and grassland legumes, while Se-methylselenocysteine, or its γ-glutamyl derivative, is the major form of selenium found in Astragalus, Allium, and Brassica species. [1]