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Beilstein J. Nanotechnol. 2022, 13, 517–527, doi:10.3762/bjnano.13.43
Figure 1: Microneedle fabrication using the two-layer centrifugation method. PVA/PVP or PVA gel with ciproflo...
Figure 2: Schematic presentation of the skin deposition study of CIP_MN1. The full-thickness human skin was e...
Figure 3: In vitro model for the antimicrobial activity of CIP_MN1. Preincubated inoculum of S. aureus is str...
Figure 4: Microneedle visualization for two formulations; (a) CIP_MN1 images under digital light microscope, ...
Figure 5: (a) Parafilm penetration with CIP_MN1 microneedles; (b) artificial skin (agarose-based) penetration...
Figure 6: (a) CIP_MN1 dissolution in excised human skin over time (represented by CIP_MN1 height decease with...
Figure 7: Ciprofloxacin skin deposition from CIP_MN1 after 1 h and 12 h from insertion, and from free gel aft...
Figure 8: Antibacterial activity of CIP_MN1 applied on an in vitro skin model mounted on S. aureus-inoculated...
Beilstein J. Nanotechnol. 2019, 10, 1983–1993, doi:10.3762/bjnano.10.195
Figure 1: Unstained TEM images of Au-CPMV with the corresponding DLS size distribution histograms (inset). (A...
Figure 2: NTA measurement of Au-CPMV at 25 °C recorded from three consecutive runs (60 s) for each sample. (A...
Figure 3: (A) UV–vis spectrum of 50 nm unconjugated Au-CPMV (green) and antibody-labeled Au-CPMV particles (b...
Figure 4: Confocal fluorescence microscopy images of fluorescent labeled VCAM1-PEG5000AuCPMV particles. RAW24...
Figure 5: (A) High-resolution TEM image of Antibody-PEG5000AuCPMV; (B) elemental EDX map of gold; the signal ...
Figure 6: CT images of Au-CPMV particles of different sizes suspended in DD water at, the gold concentration ...