suppressed lipid peroxidation less than
ascorbic acid. However, all synthesized compounds suppressed
Sultanova, R.M.,
Khusnutdinova, N.S.,
Borisova, Yu. G.,
Raskildina, G.Z.,
Meshcheryakova, S.A.,
Samorodov, A.V.,
Zlotsky, S.S. (2023) The synthesis of esters of some carboxylic
acids was carried out by the oxidative esterification
Sultanova, .R.M,
Khusnutdinova, N.S.,
Borisova, Yu. G.,
Raskildina, G.Z.,
Meshcheryakova, S.A.,
Zlotsky, S.S.,
Valiullina, Z.A.,
Karamova, E.V.,
Samorodov, A.V. (2024) activity are being sought. Several amides of abietic and maleopimaric
acids were synthesized
Khaliullin, F.A.,
Shabalina, Y.V.,
Samorodov, A.V.,
Kamilov, F.K.,
Timirkhanova, G.A.,
Murataev, D.Z. (2018) -1-ethylxanthines with thioglycolic
acid produced 2-[3-methyl-1-ethylxanthinyl-8-thio]acetic
acidsSultanova, R.M.,
Khusnutdinova, N.S.,
Borisova, Yu. G.,
Raskildina, G.Z.,
Meshcheryakova, S.A.,
Samorodov, A.V.,
Zlotskii, S.S. (2023) acids with ethylenediamine in the presence of KU-2/8 cation-exchange resin as a catalyst. Subsequent
salt 2-[3-methyl-1-npropyl-7-(1,1-dioxothietanil-3) xantinyl-8-thio]acetic
acid (Compound I) under
Gurevich, K.G.,
Urakov, A.L.,
Khaliullin, F.A.,
Samorodov, A.V.,
Shabalina, Y.V.,
Kamilov, F.K.,
Murataev, D.Z.,
Bashirova, L.I. (2020) )xanth- 8-ylthio]acetic
acids with amines (diethylamine, monoethanolamine, diethanolamine, triethanolamine
GUREVICH, K.G.,
URAKOV, A.L.,
KHALIULLIN, F.A.,
SAMORODOV, A.V.,
SHABALINA, Y.V.,
KAMILOV, F.KH.,
MURATAEV, D.Z.,
BASHIROVA, L.I. (2020) )xanth- 8-ylthio]acetic
acids with amines (diethylamine, monoethanolamine, diethanolamine, triethanolamine
Bogdanov, A.V.,
Andreeva, O.V.,
Belenok, M.G.,
Voloshina, A.D.,
Enikeeva, K.I.,
Samorodov, A.V.,
Mironov, V.F. (2021) such as acetylsalicylic
acid and pentoxifylline. [Figure not available: see fulltext.]. © 2021, Pleiades Publishing, Ltd.