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Beilstein J. Nanotechnol. 2025, 16, 652–663, doi:10.3762/bjnano.16.50
Figure 1: Solubility analysis of APT and APT-loaded SLNs in 0.1 N HCl (pH 1.2) and phosphate-buffered saline ...
Figure 2: (a) Zeta Potential and (b) particle size of APT-CD-NP4.
Figure 3: SEM photomicrographs of (a, b) APT-CD-NP4 and (c, d) APT-PX-NP8.
Figure 4: (a) FTIR spectra and (b) X-ray diffractograms of APT, poloxamer 407, β-CD, APT-CD-NP4, and APT-PX-N...
Figure 5: (a) TGA and (b) DSC thermograms of APT, poloxamer 407, β- CD, APT-CD-NP4 and APT-PX-NP8.
Figure 6: In vitro release of APT from SLN formulations in (a) 0.1 M HCl (pH 1.2) and (b) phosphate-buffered ...
Figure 7: X-ray diffractograms of the optimal formulation APT-CD-NP4 after the accelerated stability studies....
Beilstein J. Nanotechnol. 2025, 16, 591–612, doi:10.3762/bjnano.16.46
Figure 1: Stages of wound healing. (A) Hemostasis: Blood vessels constrict and clots stop the bleeding. (B) I...
Figure 2: Electrospinning process and the benefits of electrospun nanofibers in wound healing. (A) In electro...
Figure 3: Schematic diagram outlining the extraction process of SF. Created in BioRender. Batool, S. (2025) h...
Figure 4: Biomedical applications of electrospun SF, highlighting the key parameters that influence its perfo...
Figure 5: YhFF#8 cells cultured on a scaffold for three or seven days. The EPU/SF 30/70 scaffolds in both EPU...
Figure 6: Implanted patches in a canine aorta. (a–c) SF/TPU and (d–f) ePTFE patches, where (a) and (d) show t...