Karimova, E.R.,
Baltina, L.A.,
Spirikhin, L.V.,
Kondratenko, R.M.,
Farkhutdinov, R.R.,
Petrova, I.V. (2015) . The structures of the products were confirmed by PMR and 13C NMR spectra. The
antioxidant activity of Q tetra
Nizamova, A.A.,
Galiakhmetova, E.K.,
Mochalov, K.S.,
Bokov, D.O.,
Farnam, G.,
Kudashkina, N.V. (2021) Inflammatory reactions of
active radicals play a primary role in many vital circumstances
with respect to mono- and dicotyledonous plants. The relative
antioxidant activity of the compounds was studied
Bikbov, M.M.,
Nikitin, N.A.,
Surkova, V.K.,
Farkhutdinov, R.R.,
Khalilov, L.M.,
Tulyabaev, A.R.,
Nikitina, A.F.,
Fedoreev, S.A.,
Mishchenko4, N.P. (2018) studies of histochrome and showed
antioxidant activity prolonged to 16 d as compared with 6 d
Faizullina, L. Kh.,
Karamisheva, L. Sh.,
Yakupova, L. R.,
Migranov, A. R.,
Saifullin, R. L.,
Valeev, F. A.,
Valiullina, Z. A.,
Samorodov, A. V. (2024) synthesized in one step. The
antioxidant, anticoagulation, and antiaggregation
activities of the obtained
Mubinov, A.R.,
Avdeeva, E.V.,
Kurkin, V.A.,
Latypova, G.M.,
Farkhutdinov, R.R.,
Kataev, V.A.,
Ryazanova, T.K. (2021) oils. Considering these results, the
antioxidant activities of the fatty-oil samples were compared
synthesized by reaction of III with organic and inorganic bases. Compounds possessing antiaggregant
activity