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Beilstein J. Nanotechnol. 2024, 15, 569–579, doi:10.3762/bjnano.15.49
Figure 1: Synthesis of the Fe3O4 NCs, CUR-Fe NPs, and CUR-Fe@MnO2 NFs. Figure 1 was drawn using Figdraw (https://www....
Figure 2: Characterization of the nanomaterials. a–c) TEM images of the Fe3O4 NCs, CUR-Fe NPs, and CUR-Fe@MnO2...
Figure 3: a) T1/T2-mapping MR imaging of CUR-Fe@MnO2 NFs at pH 5.0+GSH+H2O2. b) Longitudinal relaxation rate, ...
Figure 4: a) Curves depicting the degradation of MnO2 from CUR-Fe@MnO2 NFs in different environments. b) Curv...
Figure 5: a) Prussian blue staining of Huh-7 cells in the NFs group. b) Prussian blue staining of Huh-7 cells...
Figure 6: a) Toxicity of different concentrations of NFs to Huh-7 cells after heating for 15/20 min. b) Toxic...
Beilstein J. Nanotechnol. 2023, 14, 262–279, doi:10.3762/bjnano.14.24
Figure 1: Application of biomimetic cancer cell membrane-coated nanoparticles in different types of diseases:...
Figure 2: Different roles of the cancer cell membrane. Figure 2 was drawn by Figdraw (https://www.figdraw.com), expor...
Figure 3: Schematic representation of the distribution of cancer cell membrane-encapsulated NPs in a tumor-be...
Figure 4: Characterization of membrane-encapsulated NPs. (A) Gel electrophoresis analysis showed that liver c...
Figure 5: Antitumor efficacy of cancer cell membrane-coated NPs in a hepatocarcinoma mouse model. Hepatoma He...
Figure 6: In vivo MRI assay in transient middle cerebral artery occlusion rats. The infarct area of rats trea...
Figure 7: Distribution of K7M2 cell membrane-coated hollow manganese dioxide nanoparticles loaded with alendr...