PARFENOV, E.V.,
MUKAEVA, V.R.,
FARRAKHOV, R.G.,
PARFENOVA, L.V.,
LUKINA, E.S.,
DYAKONOV, G.S.,
VALIEV, R.Z.,
DANILKO, K.V. (2019) (PEO) with organic pore filler of integrin-active
RGD containing
peptide (Arg-Gly-Asp-Cys). It was shown
PARFENOV, E.V.,
PARFENOVA, L.V.,
MUKAEVA, V.R.,
FARRAKHOV, R.G.,
STOTSKIY, A.G.,
RAAB, A.G.,
DANILKO, K.V.,
RAMESHBABU, N.,
VALIEV, R.Z. (2020) into the coating (primarily hydroxyapatite), or with integrin-active organic components (primarily
RGD peptidesParfenov, E,
Parfenova, L,
Mukaeva, V,
Farrakhov, R,
Stotskiy, A,
Raab, A,
Danilko, K,
Rameshbabu, N,
Valiev, R (2020) into the coating (primarily hydroxyapatite), or with integrin-active organic components (primarily
RGD peptidesPARFENOVA, 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) crosslinking of amino acid bisphosphonates with a linear tripeptide
RGD, in combination with inorganic porous
Parfenova, Lyudmila V.,
Galimshina, Zulfiya R.,
Gil’fanova, Guzel U.,
Alibaeva, Eliza I.,
Danilko, Ksenia V.,
Aubakirova, Veta R.,
Farrakhov, Ruzil G.,
Parfenov, Evgeny V.,
Valiev, Ruslan Z. (2022) of amino acid bisphosphonates with a cyclic
RGD peptide for the modification of PEO-coated titanium opens
between
peptides, RNA, and DNA that provide the stability of the development and functioning of tissues
of the genome, where they are transcribed into functional RNAs that are translated into
peptides. It is assumed