Erdman, V.V.,
Karimov, D.D.,
Tuktarova, I.A.,
Petintseva, A.A.,
Timasheva, Y.R.,
Nasibullin, T.R. (2025) ). The survival amid the persons with various clinical phenotypes was associated with the Alu
polymorphismErdman, V.V.,
Nasibullin, T.R.,
Tuktarova, I.A.,
Timasheva, Y.R.,
Danilko, K.V.,
Viktorova, T.V.,
Mustafina, O.E. (2020) the
polymorphic markers in the genes of the antioxidant defense enzymes—SOD1 (rs2070424), SOD2 (rs4880), and SOD3
of
polymorphic markers in six chemokine
genes (CXCL13, CCL8, CCL16, CCL17, CCL18, and CCL23) was performed
TIMASHEVA, Y.R.,
NASIBULLIN, T.R.,
MUSTAFINA, O.E.,
BALKHIYAROVA, Z.R.,
PROKOPENKO, I.,
AVZALETDINOVA, D.S.,
MORUGOVA, T.V. (2019) 909253 and TNF rs1800629
polymorphisms were associated with T1D in the group of Tatars. Meta
Gareeva, A.E.,
Sharafiev, R.R.,
Akhmetova, E.A.,
Nasibullin, T.R.,
Fakhurtdinova, Z.R.,
Yuldashev, V.L.,
Asadullin, A.R. (2020) of these dependencies with ADHD. DNA was collected and six
polymorphic loci of genes of the dopaminergic
Zaplakhova, O. V.,
Nasibullin, T. R.,
Tuktarova, I. A.,
Timasheva, Y. R.,
Erdman, V. V.,
Bakhtiyarova, K. Z.,
Mustafina, O. E. (2018) nervous system. The aim of the study was to analyze associations between MS and
polymorphic markers rs
Korytina, G.F.,
Akhmadishina, L.Z.,
Markelov, V.A.,
Nasibullin, T.R.,
Aznabaeva, Y.G.,
Kochetova, O.V.,
Khusnutdinova, N.N.,
Larkina, A.P.,
Zagidullin, N. Sh.,
Victorova, T.V. (2024) is to identify the association between
polymorphic variants of H19 (rs3741219), MEG3 (rs7158663), MALAT1 (rs