with various factors, including age, heredity, and race. Recent research in prostate cancer
genetics has
Timasheva, Y.,
Balkhiyarova, Z.,
Avzaletdinova, D.,
Rassoleeva, I.,
Morugova, T.V.,
Korytina, G.,
Prokopenko, I.,
Kochetova, O. (2023) We
tested associations between 13 established
genetic variants and type 2 diabetes (T2D) in 1371
Khidiyatova, Irina,
Khidiyatova, Indira,
Zinchenko, Rena,
Marakhonov, Andrey,
Karunas, Alexandra,
Avkhadeeva, Svetlana,
Aznzbaev, Marat,
Khusnutdinova, Elza (2023) diagnosis and
genetic testing for hereditary congenital cataracts to guide appropriate management
Nurgalieva, A.Kh.,
Bashkatov, S.A.,
Volkova, E.V.,
Petrova, S.G.,
Takhirova, Z.R.,
Mustafin, R.N.,
Fedorova, Y.Y.,
Prokofyeva, D.S.,
Khusnutdinova, E.K. (2023) ), served as the material for molecular
genetic testing; the students of the Municipal Autonomous
for susceptibility to schizophrenia; their findings are important not only for our understanding of the
geneticFUNDAMENTALS OF MOLECULAR
GENETICS IN STUDYING THE COURSE OF BIOLOGY TO FOREIGN STUDENTS
Kazantseva, A.V.,
Davydova, Yu. D.,
Enikeeva, R.F.,
Yakovleva, D.V.,
Mustafin, R.N.,
Lobaskova, M.M.,
Malykh, S.B.,
Khusnutdinova, E.K. (2023) regression was carried out in the
testing sample (N = 500) from VUR with PGS calculated on a basis of effect
of the
genetic architecture of schizophrenia. The aim of this study was to study
genetic risk factors
Gilyazova, I.,
Timasheva, Ya.,
Karunas, A.,
Kazantseva, A.,
Sufianov, A.,
Mashkin, A.,
Korytina, G.,
Wang, Ya.,
Gareev, I.,
Khusnutdinova, E. (2023) knowledge of mechanisms, risk factors,
genetics and neurologic impairments in COVID-19. In addition, we