Bioresorbable vascular
scaffolds (BVS) have shown their safety and applicability in series
Vafina, G.F.,
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scaffold derivatives was studied
Zivari-Ghader, Tayebeh,
Valioglu, Ferzane,
Eftekhari, Aziz,
Aliyeva, Immi,
Beylerli, Ozal,
Davran, Soodabeh,
Cho, William C.,
Beilerli, Aferin,
Khalilov, Rovshan,
Javadov, Sabzali (2024) , behavioral disorders, and disruptions in daily activities. Polymer
scaffolds for the brain have been grown
Pashirova, T.N.,
Shaihutdinova, Z.M.,
Vandyukov, A.E.,
Lyubina, A.P.,
Amerhanova, S.K.,
Voloshina, A.D.,
Samorodov, A.V.,
Souto, E.B.,
Mironov, V.F.,
Mironov, V.F. (2022) ) on natural isatin
scaffold as a new generation of antimicrobial agents. 1-R-isatin-3-acylhydrazones
Shi, Y.,
Bikkuzin, T.,
Song, Z.,
Jin, X.,
Jin, H.,
Li, X.,
Zhang, H. (2017)
biocompatibility and can provide a
scaffold for cell growth. Genetic analysis using
Solexa sequencing
Bogdanov, A.V.,
Andreeva, O.V.,
Belenok, M.G.,
Voloshina, A.D.,
Enikeeva, K.I.,
Samorodov, A.V.,
Mironov, V.F. (2021) isatin derivatives, in which the carbohydrate residue is linked to the 2,3-dioxindole
scaffold via the 1