Jun, Yang,
Wang, Minxiu,
Xu, Yulan,
Liao, Jing,
Li, Xiang,
Zhou, Ying,
Dai, Jintian,
Li, Xiaobo,
Chen, Pan,
Chen, Gaozhi,
Cho, Won-Jea,
Chattipakorn, Nipon,
Samorodov, A.V,
Pavlov, V.N,
Wang, Yi,
Liang, Guang,
Tang, Qidong (2023) and their anti-inflammatory
activities in J774A.1 were evaluated. Among them, derivative 13a was found
Shnayder, N.A.,
Grechkina, V.V.,
Khasanova, A.K.,
Bochanova, E.N.,
Dontceva, E.A.,
Petrova, M.M.,
Asadullin, A.R.,
Shipulin, G.A.,
Altynbekov, K.S.,
Al-Zamil, M.,
Nasyrova, R.F. (2023) -oxidation); and glucuronidation. The complex metabolism of VPA explains the diversity of its
active and inactive metabolites
Nasyrova, Regina F.,
Shnayder, Natalia A.,
Osipova, Sofia M.,
Khasanova, Aiperi K.,
Efremov, Ilya S.,
Al-Zamil, Mustafa,
Petrova, Marina M.,
Narodova, Ekaterina A.,
Garganeeva, Natalia P.,
Shipulin, German A. (2023) not been solved and continues to be
actively studied. One of the important
mechanisms for the development
in the inflammatory response, chemokine
activity, and immune response. The KEGG analysis identified several pathways
regulation and weakening of
activity in conditions of individual-differentiated classes. The content
Raskildinaa, G.Z.,
Valieva, V.F.,
Ozdena, I.V.,
Meshcheryakova, S.A.,
Spirikhin, L.V.,
Zlotskiia, S.S. (2017)
and their relative antioxidant
activity was evaluated by luminol-dependent chemiluminescence measurements.
Valeeva, L.A.,
Davlyatova, G.G.,
Shabalina, Yu.V.,
Isakova, A.V.,
Khaliullin, F.A.,
Nikitina, I.L. (2016) -thio]acetic acid hydrazide exhibited antidepressant
activity that was most pronounced at a dose of 12
Because of the problem to evaluate biological
activity in water‑soluble substances in
all phases
Dzhemilev, Usein M.,
D’yakonov, Vladimir A.,
Tuktarova, Regina A.,
Dzhemileva, Lilya U.,
Ishmukhametova, Svetlana R.,
Yunusbaeva, Milyausha M.,
Armin de Meijere (2016) activity against topoisomerases I and IIα, key cell cycle enzymes. Using flow cytometry, muricadienin