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Название: Terpenoid Hydrazones as Biomembrane Penetration Enhancers: FT-IR Spectroscopy and Fluorescence Probe Studies
Авторы: Nesterkina, Mariia
Нестеркіна, Марія Володимірівна
Нестеркина, Мария Владимировна
Smola, Serhii
Смола, Сергій
Смола, Сергей
Rusakova, Nataliya
Русакова, Наталія
Русакова, Наталья
Kravchenko, Irina
Кравченко, Ірина Анатоліївна
Кравченко, Ирина Анатольевна
Ключевые слова: terpenes
FT-IR spectroscopy
hydrazones
pyrene
penetration enhancers
fluorescence probe
liposomes
laser diffraction
lipids
stratum corneum
Дата публикации: 2022
Библиографическое описание: Nesterkina, M., Smola, S., Rusakova, N., Kravchenko, I. (2022). Terpenoid Hydrazones as Biomembrane Penetration Enhancers: FT-IR Spectroscopy and Fluorescence Probe Studies. Molecules, 27, 1, 206.
Terpenoid Hydrazones as Biomembrane Penetration Enhancers: FT-IR Spectroscopy and Fluorescence Probe Studies / M. Nesterkina, S. Smola, N. Rusakova, I. Kravchenko // Molecules. - 2022. - [Vol.] 27, [Iss.] 1. - P. 206.
Краткий осмотр (реферат): Hydrazones based on mono- and bicyclic terpenoids (verbenone, menthone and carvone) have been investigated in vitro as potential biomembrane penetration enhancers. In this regard, liposomes composed of lecithin or cardiolipin as phospholipid phase components with incorporated fluorescence probes have been prepared using the thin-film ultrasonic dispersion method. The mean particle size of the obtained liposomes, established using laser diffraction, was found to be 583 ± 0.95 nm, allowing us to categorize them as multilamellar vesicles (MLVs) according to their morphology. Pursuant to fluorescence analysis, we may assume a reduction in microviscosity and, consequently, a decrease in the packing density of lecithin and cardiolipin lipids to be the major mechanism of action for terpenoid hydrazones 1–15. In order to determine the molecular organization of the lipid matrix, lipids were isolated from rat strata cornea (SCs) and their interaction with tested compounds was studied by means of Fourier transform infrared spectroscopy. FT-IR examination suggested that these hydrazones fluidized the SC lipids via the disruption of the hydrogen-bonded network formed by polar groups of SC constituents. The relationship between the structure of terpenoid hydrazones and their ability to enhance biomembrane penetration is discussed.
URI (Унифицированный идентификатор ресурса): https://doi.org/10.3390/ molecules27010206
http://dspace.opu.ua/jspui/handle/123456789/12080
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