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Beilstein J. Nanotechnol. 2024, 15, 1654–1666, doi:10.3762/bjnano.15.130
Figure 1: Chemical formula of the photoactivatable cross-linker 4-azido-N-[3-[3-(2,5-dioxopyrrol-1-yl)propano...
Figure 2: Experimental scheme for isolating bio-NPs from sera. (a) To remove protein aggregates and cellular ...
Figure 3: Representative images of bio-NPs isolated from 10% FBS by single (top row) or double (bottom row) U...
Figure 4: Representative images of bio-NPs isolated by UC from photomodified 10% FBS and NBS (shown in the fr...
Figure 5: (a, b) Representative images of individual sucrose particles, clusters, and shapes in the 30% sucro...
Figure 6: Representative images of bio-NPs isolated on sucrose gradient (30 % fraction) after photomodificati...
Figure 7: Representative images of bio-NPs isolated from native FBS and NBS (two upper rows) and after sera p...
Beilstein J. Nanotechnol. 2019, 10, 2568–2578, doi:10.3762/bjnano.10.248
Figure 1: Physicochemical characteristics of freshly prepared AuNP-siRNA suspensions. TEM images of samples ×...
Figure 2: Optical extinction spectra of AuNP-siRNA in various solutions. The solvents are given in figures. W...
Figure 3: Clumping of AuNP-siRNA during storage for eight days at 4 °C. Upper row, sample ×1; lower row, ×10....
Figure 4: Clusters of AuNP-siRNA in samples ×10 after two (A), three (В), and four (С) weeks. The same sample...
Figure 5: Data from the SPIP analysis. Distribution (%) of AuNP-siRNA clusters by size illustrating the forma...
Figure 6: (А) AuNP-siRNA suspension (sample ×10) after storage at 4 °С for seven months. (В) Electrophoretic ...