Translations:Metformin/47/en: Difference between revisions

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Latest revision as of 19:35, 11 March 2024

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Message definition (Metformin)
Metformin has acid dissociation constant values (pK<sub>a</sub>) of 2.8 and 11.5, so it exists very largely as the hydrophilic cationic species at physiological pH values. The metformin pK<sub>a</sub> values make it a stronger base than most other basic medications with less than 0.01% nonionized in blood. Furthermore, the [[Lipophilicity|lipid solubility]] of the nonionized species is slight as shown by its low logP value (log(10) of the distribution coefficient of the nonionized form between octanol and water) of −1.43. These chemical parameters indicate low lipophilicity and, consequently, rapid passive diffusion of metformin through cell membranes is unlikely. As a result of its low lipid solubility it requires the [[Membrane transport protein|transporter]] [[SLC22A1]] in order for it to enter cells. The logP of metformin is less than that of [[phenformin]] (−0.84) because two methyl substituents on metformin impart lesser lipophilicity than the larger phenylethyl side chain in [[phenformin]]. More lipophilic derivatives of metformin are presently under investigation with the aim of producing prodrugs with superior oral absorption than metformin.

Metformin has acid dissociation constant values (pKa) of 2.8 and 11.5, so it exists very largely as the hydrophilic cationic species at physiological pH values. The metformin pKa values make it a stronger base than most other basic medications with less than 0.01% nonionized in blood. Furthermore, the lipid solubility of the nonionized species is slight as shown by its low logP value (log(10) of the distribution coefficient of the nonionized form between octanol and water) of −1.43. These chemical parameters indicate low lipophilicity and, consequently, rapid passive diffusion of metformin through cell membranes is unlikely. As a result of its low lipid solubility it requires the transporter SLC22A1 in order for it to enter cells. The logP of metformin is less than that of phenformin (−0.84) because two methyl substituents on metformin impart lesser lipophilicity than the larger phenylethyl side chain in phenformin. More lipophilic derivatives of metformin are presently under investigation with the aim of producing prodrugs with superior oral absorption than metformin.