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Nonclassical Zwitterions as a Design Principle to Reduce Lipophilicity without Impacting Permeability.


ABSTRACT: The ionization of bioactive molecules impacts many ADME-relevant physicochemical properties, in particular, solubility, lipophilicity, and permeability. Ampholytes contain both acidic and basic groups and are distinguished as ordinary ampholytes and zwitterions. An influential review states that zwitterions only exist if the acidic pKa is significantly lower than the basic pKa. Through concordance of measured and calculated pKa and log P, we show that the zwitterionic behavior of several marketed drugs and natural products occurs despite a low or negative ΔpKa. These nonclassical zwitterions are characterized by a weak acidic and basic pKa and conjugation through an extended aromatic system, often including pseudorings via intramolecular hydrogen bonds. In contrast to most classical zwitterions, nonclassical zwitterions can exhibit excellent permeability. As permeability and lipophilicity are typically correlated, the combination of low lipophilicity and high permeability makes nonclassical zwitterions an attractive design principle in medicinal chemistry.

SUBMITTER: Mobitz H 

PROVIDER: S-EPMC11292855 | biostudies-literature | 2024 Jun

REPOSITORIES: biostudies-literature

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Nonclassical Zwitterions as a Design Principle to Reduce Lipophilicity without Impacting Permeability.

Möbitz Henrik H   Dittrich Birger B   Rodde Stephane S   Strang Ross R  

Journal of medicinal chemistry 20240515 11


The ionization of bioactive molecules impacts many ADME-relevant physicochemical properties, in particular, solubility, lipophilicity, and permeability. Ampholytes contain both acidic and basic groups and are distinguished as ordinary ampholytes and zwitterions. An influential review states that zwitterions only exist if the acidic p<i>K</i><sub>a</sub> is significantly lower than the basic p<i>K</i><sub>a</sub>. Through concordance of measured and calculated p<i>K</i><sub>a</sub> and log <i>P</  ...[more]

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