Paclitaxel-Loaded Magnetic Nanoparticles: Synthesis, Characterization, and Application in Targeting  Jilai Tian, Caiyun Yan, Kunliang Liu, Juan Tao, Zhenchao.

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Paclitaxel-Loaded Magnetic Nanoparticles: Synthesis, Characterization, and Application in Targeting  Jilai Tian, Caiyun Yan, Kunliang Liu, Juan Tao, Zhenchao Guo, Jianping Liu, Yu Zhang, Fei Xiong, Ning Gu  Journal of Pharmaceutical Sciences  Volume 106, Issue 8, Pages 2115-2122 (August 2017) DOI: 10.1016/j.xphs.2017.04.023 Copyright © 2017 American Pharmacists Association® Terms and Conditions

Figure 1 Schematic of PTX-loaded Fe3O4@OA modified by PLO and its kidney targeting application. Journal of Pharmaceutical Sciences 2017 106, 2115-2122DOI: (10.1016/j.xphs.2017.04.023) Copyright © 2017 American Pharmacists Association® Terms and Conditions

Figure 2 Effect of different molecular weight of PLO on PTX-MNPs, among which, ①, ②, and ③ represented the PTX-MNPs-PLO1000, PTX-MNPs-PLO2000, PTX-MNPs-PLO4000, respectively. (a) EE% of PTX, (b) loaded content rate of Fe, (c) the particle size (column) and PDI (line). (Particle size: PTX-MNPs-PLO1000 vs. PTX-MNPs-PLO4000, p < 0.05, PTX-MNPs-PLO2000 vs. PTX-MNPs-PLO4000, p < 0.05). Journal of Pharmaceutical Sciences 2017 106, 2115-2122DOI: (10.1016/j.xphs.2017.04.023) Copyright © 2017 American Pharmacists Association® Terms and Conditions

Figure 3 (a) Hysteresis loops for PTX-MNPs-PLO1000, PTX-MNPs-PLO2000, and PTX-MNPs-PLO4000; MRI properties of PTX-MNPs-PLO2000. (b) Signal intensity–weighted images (TR = 2500 ms; TE = 10 ms) of MNPs in 1% agarose solution at various iron concentrations at room temperature. Blank agarose solution was taken as a control. (c) Changes of T2 relaxation rate (R2) of MNPs as iron concentration increased. Journal of Pharmaceutical Sciences 2017 106, 2115-2122DOI: (10.1016/j.xphs.2017.04.023) Copyright © 2017 American Pharmacists Association® Terms and Conditions

Figure 4 (a and b) Transmission electron microscopy images of Fe3O4@OA and PTX-MNPs-PLO2000, respectively, whereas (c and d) represented SEM images of PTX-MNPs-PLO2000 and Fe3O4@OA in sequence. (e) The TGA of Fe3O4@OA and PTX-MNPs-PLO2000. (f) The VSM of Fe3O4@OA and PTX-MNPs-PLO2000. Journal of Pharmaceutical Sciences 2017 106, 2115-2122DOI: (10.1016/j.xphs.2017.04.023) Copyright © 2017 American Pharmacists Association® Terms and Conditions

Figure 5 Results of (a) XRD and (b) FT-IR. Journal of Pharmaceutical Sciences 2017 106, 2115-2122DOI: (10.1016/j.xphs.2017.04.023) Copyright © 2017 American Pharmacists Association® Terms and Conditions

Figure 6 Plasma concentration-time profiles in rats after intravenous administration (n = 3). Journal of Pharmaceutical Sciences 2017 106, 2115-2122DOI: (10.1016/j.xphs.2017.04.023) Copyright © 2017 American Pharmacists Association® Terms and Conditions

Figure 7 (a) The concentration-time curves of PTX in tissues of mice given PTX-MNPs-PLO2000 after intravenous administration in different magnetic fields. (b) Comparison of AUC of PTX tissues of mice given PTX-MNPs-PLO2000 after intravenous administration in different magnetic fields. All the magnetic intensities were assigned at 0, 0.6, and 1.2 T. No significant difference between left and right kidneys under both 0.6 and 1.2 T (p > 0.05). Journal of Pharmaceutical Sciences 2017 106, 2115-2122DOI: (10.1016/j.xphs.2017.04.023) Copyright © 2017 American Pharmacists Association® Terms and Conditions