Voir la notice de l'article provenant de la source Math-Net.Ru
@article{JSFU_2024_17_6_a8, author = {Nikita S. Panamarev and Anna V. Tyumentseva and Vasilisa V. Krasitskaya and Ludmila A. Frank}, title = {Magnetic particles as a carrier to select aptamer for survivin {(BIRC5),} a low molecular weight protein tumor marker}, journal = {\v{Z}urnal Sibirskogo federalʹnogo universiteta. Matematika i fizika}, pages = {769--775}, publisher = {mathdoc}, volume = {17}, number = {6}, year = {2024}, language = {en}, url = {http://geodesic.mathdoc.fr/item/JSFU_2024_17_6_a8/} }
TY - JOUR AU - Nikita S. Panamarev AU - Anna V. Tyumentseva AU - Vasilisa V. Krasitskaya AU - Ludmila A. Frank TI - Magnetic particles as a carrier to select aptamer for survivin (BIRC5), a low molecular weight protein tumor marker JO - Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika PY - 2024 SP - 769 EP - 775 VL - 17 IS - 6 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/JSFU_2024_17_6_a8/ LA - en ID - JSFU_2024_17_6_a8 ER -
%0 Journal Article %A Nikita S. Panamarev %A Anna V. Tyumentseva %A Vasilisa V. Krasitskaya %A Ludmila A. Frank %T Magnetic particles as a carrier to select aptamer for survivin (BIRC5), a low molecular weight protein tumor marker %J Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika %D 2024 %P 769-775 %V 17 %N 6 %I mathdoc %U http://geodesic.mathdoc.fr/item/JSFU_2024_17_6_a8/ %G en %F JSFU_2024_17_6_a8
Nikita S. Panamarev; Anna V. Tyumentseva; Vasilisa V. Krasitskaya; Ludmila A. Frank. Magnetic particles as a carrier to select aptamer for survivin (BIRC5), a low molecular weight protein tumor marker. Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 17 (2024) no. 6, pp. 769-775. http://geodesic.mathdoc.fr/item/JSFU_2024_17_6_a8/
[1] M.Dunn, R.Jimenez, J.Chaput, “Analysis of aptamer discovery and technology”, Nat. Rev. Chem., 1 (2017), 0076 | DOI
[2] S.Qi, N.Duan, I.M.Khan, X.Dong, Y.Zhang, S.Wu, Z.Wang, “Strategies to manipulate the performance of aptamers in SELEX, post-SELEX and microenvironment”, Biotechnol. Adv., 55 (2022), 107902 | DOI
[3] I.Manea, M.Casian, O.Hosu-Stancioiu, N.de-Los-Santos-Álvarez, M.J.Lobo-Castañón, C.Cristea, “A review on magnetic beads-based SELEX technologies: Applications from small to large target molecules”, Anal. Chim. Acta, 1297 (2024), 342325 | DOI
[4] E.E.Bashmakova, N.S.Panamarev, A.N.Kudryavtsev, L.A.Frank, “N-extended photoprotein obelin to competitively detect small protein tumor markers”, Biochem. Biophys. Res. Commun., 598 (2022), 69–73 | DOI
[5] V.V.Krasitskaya, M.K.Efremov, L.A.Frank, “Luciferase NLuc site-specific conjugation to generate reporters for in vitro assays”, Bioconjug. Chem., 34:7 (2023), 1282–1289 | DOI
[6] V.V.Krasitskaya, L.P.Burakova, A.A.Komarova, E.E.Bashmakova, L.A.Frank, “Mutants of Ca2+ -regulated photoprotein obelin for site-specific conjugation”, Photochem. Photobiol., 93:2 (2017), 553–557 | DOI
[7] E.E.Bashmakova, A.N.Kudryavtsev, L.A.Frank, “Development of the method to produce functionally active recombinant streptavidin in Escherichia coli cells”, J. Sib. Fed. Univ. Biology, 13 (2020), 218–229 (in Russian) | DOI
[8] I.G.Vazhenina, S.V.Stolyar, A.V.Tyumentseva, M.N.Volochaev, R.S.Iskhakov, et al., “Study of magnetic iron oxide nanoparticles coated with silicon oxide by ferromagnetic method”, Physics of the Solid State, 65:6 (2023), 884–888 (in Russian) | DOI
[9] V.V.Krasitskaya, N.S.Goncharova, et al., “The Ca2+-regulated photoprotein obelin as a tool for SELEX monitoring and DNA aptamer affinity evaluation”, Photochem. Photobiol., 96 (2020), 1041–1046 | DOI
[10] O.I.Voroshilova, A.V.Kiselev, Yu.S.Nikitin, “Synthesis and study of silica carriers with a surface modified by $\gamma$-aminopropyl groups”, Colloid Journal, 42:2 (1980), 223–229 (in Russian)
[11] T.Sen, I.J.Bruce, “Surface engineering of nanoparticles in suspension for particle based bio-sensing”, Sci. Rep., 2 (2012), 564 | DOI | Zbl
[12] S.Thalhauser, M.Breunig, “Considerations for efficient surface functionalization of nanoparticles with a high molecular weight protein as targeting ligand”, Eur. J. Pharm. Sci., 155 (2020), 105520 | DOI
[13] T.Schütze, P.F.Arndt, M.Menger, et al., “A calibrated diversity assay for nucleic acid libraries using DiStRO-a diversity standard of random oligonucleotides”, Nucleic Acids Res., 38:4 (2010), e23 | DOI