Bo, C.,
Zhang, H.,
Cao, Y.,
Lu, X.,
Zhang, C.,
Li, S.,
Kong, X.,
Zhang, X.,
Bai, M.,
Tian, K.,
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Lyaysan, G.,
Wang, J.,
Ning, S.,
Wang, L. (2021) RNA–miRNA). Then, 3/
4/5-node regulatory motifs were detected in the TMGN. Then, the motifs with the highest Z
NIKITIN, A.G.,
CHUDAKOVA, D.A.,
ENIKEEV, R.F.,
GORDIEV, M.G.,
SAKAEVA, D.,
DRUZHKOV, M.,
SHIGAPOVA, L.H.,
BROVKINA, O.I.,
SHAGIMARDANOVA, E.I.,
GUSEV, O.A. (2020) mutation in the MMR pathway genes, of them 32 patients (
4.5%) harbored mutations in MMR pathway genes which
Akhmadeeva, G.N.,
Khidiyatova, I.M.,
Nasibullin, T.R.,
Baitimerov, A.R.,
Magzhanov, R.V.,
Khusnutdinova, F.K. (2017) of the DRD
4 gene (dopamine receptors), (TCAT)n-repeats of the TH gene (tyrosine hydroxylase), rs4680
pollution with salts of heavy metals, phenol and CO2 are 2-
4 times higher than national air quality
CONNORS, J.M.,
SAVAGE, K.J,
JURCZAK, W,
LECH-MARANDA, E.,
SMOLEWSKI, P,
WALEWSKI, J,
STRAUS, D.J.,
YOUNES, A.,
ANSELL, S.M.,
KIM, W.S.,
GALLAMINI, A.,
ALEKSEEV, S.,
ILLÉS, A.,
ROSTA, A.,
PICARDI, M.,
ZINZANI, P.L.,
OKI, Y.,
FELDMAN, T.,
BARTLETT, N.L.,
CHEN, R.,
RAMCHANDREN, R.,
CUNNINGHAM, D.,
RADFORD, J.,
JOSEPHSON, N.C.,
SONG, E.,
SACHS, J.,
JOLIN, H.A.,
HUEBNER, D.,
LIU, R.,
LIPATOV, O.N. (2018) [CI], 78.8 to 85.0)
and 77.2% (95% CI, 73.7 to 80.
4), respectively, a difference of
4.9 percentage
=0.008) and dominant (OR 0.41, PFDR
4.38×10−4
) genetic model. The analysis of gene–gene
interactions
Smirnova, L.A.,
Suchkov, E.A.,
Kuznetsov, K.A.,
Ryabukha, A.F.,
Perfilova, V.N.,
Popova, T.A.,
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Latypova, G.M.,
Kataev, V.A. (2021) quantitative HPLC method. The optimum conditions for quantitative determination of rutin were KH2PO
4 buffer (50
KALINICHEV, A.A.,
KUROCHKIN, M.A.,
KOLOMYTSEV, A.Y.,
KOLESNIKOV, I.E.,
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LÄHDERANTA, E. (2019) was designed based on the temperature dependent fluorescence intensity ratios of thermally (2H11/2 and
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