Evaluation of pharmacokinetic properties of isobornylphenols in silico

Автор: Ostrikova O.I., Vaizova O.E., Aliev O.I., Buravlev E.V., Chukicheva I. Yu., Kutchin A.V.

Журнал: Сибирский журнал клинической и экспериментальной медицины @cardiotomsk

Рубрика: Экспериментальные исследования

Статья в выпуске: 4 т.35, 2020 года.

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Introduction. The potential of a new compound in the ongoing drugs discovery process is initially explored using virtual instruments, where its activity is predicted based on its molecular structure.Aim. This study aimed to evaluate the pharmacokinetic parameters and possible toxicity of isobornyl compounds based on virtual tools.Material and Methods. Several free Internet resources were used to assess the absorption, distribution, metabolism, excretion (ADME), and toxicity (T) of 2,6-diisobornyl-4-methylphenol (1, Dibornol), 2-hydroxy-3-isobornyl-5-methylbenzaldehyde (2), and 2-((di-n-butylamino) methyl)-6-isobornyl-4-methylphenol (3). Pharmacokinetic properties were calculated on ADMETlab platform. Toxicity and physical properties were evaluated using TEST software based on the structure-property quantification models of organic substances according to structure-property principle. Web server ProTox_II was used for acute toxicity assessment.Results. Plasma protein binding degrees were 76,9% for (1), 85,9% for (2), and 91,8% for (3). All three compounds were capable of penetrating the blood-brain barrier. Dibornol was identified neither as a substrate nor as an inhibitor of P-glycoprotein unlike (2) and (3). The half-life of all compounds was short (about 2 hours); the clearance was slow (about 2 mL/min*kg). The study showed that (2) and (3) potentially exert the toxic effects during the developmental stage of the organism, while ADMETlab showed potential cardio- and hepatotoxicity for (2) and (3), respectively. All compounds had extremely low solubility in water, which affected the assessments of other indicators by TEST software. The ProTox_II server showed the extremely low toxicity LD50 for all compounds (toxicity class 5).

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Фармакокинетика (adme), isobornylphenols, 6-diisobornyl-4-methylphenol (dibornol), aminomethyl derivative, benzaldehyde, predictive analysis, pharmacokinetics (adme), toxicity

Короткий адрес: https://sciup.org/149126214

IDR: 149126214   |   DOI: 10.29001/2073-8552-2020-35-4-79-86

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