VALIULLINA, Z.R.,
GALEEVA, A.M.,
GIMALOVA, F.A.,
SELEZNEVA, N.K.,
KHASANOVA, L.S.,
MIFTAKHOV, M.S.,
MAVZYUTOV, A.R (2019) . The
antibacterial activity of the resulting carbapenems and
their preceding pNb-esters has been studied against
Ivanenkov, Y.A.,
Yu. Filyaeva, K.,
Matniyazov, , R.T.,
Baymiev, A.K.,
Baymiev, A.K.,
Vladimirova, A.A.,
Yamidanov, R.S.,
Mavzyutov, A.R.,
Zileeva, Z.R.,
Zainullina, L.F.,
Vakhitova, J.V.,
Marina, V.I.,
Terentiev, V.A.,
Osterman, I.A.,
Kartsev, V.G.,
Bezrukov, D.S.,
Dontsova, O.A. (2021) of noscapine derivatives with promising
antibacterial activity. The platform is based on RPF (SOS
Bogdanov, A,
Tsivileva, O,
Voloshina, A,
Lyubina, A,
Amerhanova, S,
Burtceva, E,
Bukharov, S,
Samorodov, A,
Pavlov, V (2022) -spectroscopies, mass-spectrometry and elemental analysis. It was found that some representatives show
activity against
. The
antibacterial and antifungal
activities of the new compounds were analysed using agar diffusion and tenfold
Meshcheryakova, S.,
Shumadalova, A.,
Beylerli, O.,
Gareev, I.,
Zhao, S.,
Wu, J. (2022) , anhydride of mono- and dicarboxylic acids was studied. Antimicrobial
activity was determined by the agar
Baran, M.F.,
Keskin, C.,
Baran, Ay¸se,
Hatipo, A.,
Yildiztekin, M.,
Küçükaydin, S.,
Kurt, K.,
Ho, H.,
Rahman Sarker, Md. Moklesur,
Sufianov, A.,
Beylerli, O.,
Khalilov, R.,
Eftekhari, A. (2023) ,
and anticholinesterase
activities. For the synthesis of AgNPs, peel aqueous extract (200 mL) was
treated with a 40 mM Ag
Salimova, E.V.,
Mamaev, A.G.,
Tret'yakova, E. V.,
Kukovinets, O. S.,
Mavzyutov, A. R.,
Shvets, K. Yu.,
Parfenova, L. V. (2018) compounds were screened for
antibacterial and antifungal
activities.