BAYMIEV, A.K.,
KULUEV, B.R.,
SHVETS, K.Y.,
YAMIDANOV, R.S.,
MATNIYAZOV, R.T.,
CHEMERIS, D.A.,
IVANENKOV, Y.A.,
CHEMERIS, A.V.,
ZUBOV, V.V.,
ALEKSEEV, Y.I.,
MAVZYUTOV, A.R. (2020) Specific
amplification of
nucleic acids is a convenient and quick alternative to the culture-
basedDNA polymerases with strand-displacement activity allow to amplify
nucleic acids under isothermal
Sufianov, Albert,
Beilerli, Aferin,
Kudriashov, Valentin,
Ilyasova, Tatiana,
Wenjie, Bu,
Beylerli, Ozal (2023) and to defend the genome from invasive
nucleic acids. The use of siRNAs has been studied as a treatment option
for the interactions between proteins and
nucleic acids. Life has evolved due to insertional mutagenesis
Gilyazova, Irina,
Enikeeva, Kadriia,
Rafikova, Guzel,
Kagirova, Evelina,
Sharifyanova, Yuliya,
Asadullina, Dilara,
Pavlov, Valentin (2023) amounts of tumorigenic
nucleic acids, circulating immune cells and proinflammatory mediators that can
mathematical methods
based on fractal and Long-Range Dependence (LRD) stochastic processes. However
PARFENOVA, L.V.,
LUKINA, E.S.,
GALIMSHINA, Z.R.,
GIL'FANOVA, G.U.,
MUKAEVA, V.R.,
FARRAKHOV, R.G.,
PARFENOV, E.V.,
DANILKO, K.V.,
DYAKONOV, G.S. (2020) , we developed a composite biologically active coatings
based on hybrid molecules obtained by chemical