О МЕХАНИЗМЕ ВЗАИМОДЕЙСТВИЯ НЕКОТОРЫХ ФЛАВОНОИДОВ С ФОСФАТИДИЛХОЛИНОМ КЛЕТОЧНЫХ МЕМБРАНАфанасьева, Ю.Г.,
Фахретдинова, Е.Р.,
Спирихин, Л.В.,
Насибуллин, Р.С.,
Afanas'eva, Y.G.,
Fakhretdinova, E.R.,
Spirikhin, L.V.,
Nasibullin, R.S. (2007) by methods of quantum chemistry and
NMR 13C
spectroscopy. Evidence for the formation of these
complexes
Раскильдина, Г.З.,
Валиев, В.Ф.,
Озден, И.В.,
Мещерякова, С.А.,
Спирихин, Л.В.,
Злоцкий, С.С.,
Raskildinaa, G.Z.,
Valieva, V.F.,
Ozdena, I.V.,
Meshcheryakova, S.A.,
Spirikhinc, L.V.,
Zlotskii, S.S. (2017)
and 13С
NMR spectroscopy
and their relative antioxidant activity was evaluated by luminol
by recrystallization. The new compounds were characterized by H-1, C-13
NMR, IR
spectroscopy and elemental analysis
KHAZHIEV, S.Y.,
KHUSAINOV, M.A.,
KUZNETSOV, V.V.,
KHALIKOV, R.A.,
TYUMKINA, T.V.,
MESHCHERYAKOVA, E.S.,
KHALILOV, L.M. (2019) of 1H and 13C
NMR spectroscopy as well as X-ray diffraction analysis. The molecules of compound 1 exist
Khaliullin, F.A.,
Klen, E.E.,
Nikitina, I.L.,
Pavlov, V.N.,
Rozit, G.A.,
Gaisina, G.G.,
Samorodov, A.V. (2023) . The structures of the synthesized compounds were confirmed by IR, PMR, and 13C and 15N
NMR spectroscopyKlen, E.E.,
Nikitina, I.L.,
Khaliullin, F.A.,
Shepilova, S.O.,
Nikitina, E.A.,
Gaisina, G.G.,
Samorodov, A.V.,
Pavlov, V.N. (2024) . The structures of the synthesized compounds were confirmed by IR, PMR, and 13C
NMR spectroscopy and GC-MS data
KHALIULLIN, F.A.,
KLEN, E.E.,
PAVLOV, V.N.,
SAMORODOV, A.V.,
SHEPILOVA, S.O.,
MAKAROVA, N.N.,
NURLANOVA, S.N.,
ABZALILOV, T.N. (2022) . The
structures of the synthesized compounds were established by IR, PMR, and 13C
NMR spectroscopy. In vitro
Khaliullin, F. A.,
Klen, E. E.,
Nikitina, I. L.,
Pavlov, V. N.,
Rozit, G. A.,
Gaisina, G. G.,
Samorodov, A. V. (2023) . The structures
of the synthesized compounds were confirmed by IR, PMR, and 13C and 15N
NMR spectroscopy