| Literature DB >> 28938592 |
Huijuan Zhang1,2,3, Hongling Zhang1,2,3, Xing Zhu1, Xiaoge Zhang1, Qianqian Chen1, Jianjiao Chen1, Lin Hou1,2,3, Zhenzhong Zhang1,2,3.
Abstract
Artemisinin is a kind ofEntities:
Keywords: Fe2+-dependent drug; tumor-responsive Fe2+ liberating; visible-light-sensitive ROS production
Year: 2017 PMID: 28938592 PMCID: PMC5601688 DOI: 10.18632/oncotarget.17639
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Figure 1(A) Schematic illustration of the formation for this HA-TiO2-IONPs/ART delivery system; (B) The special multi-mechanism of HA-TiO2-IONPs/ART with visible light irradiation for tumor treatment.
Figure 2(A) TEM image of TiO2-IONPs; (B) High resolution TEM image of TiO2-IONPs; (C) SEM image of TiO2-IONPs; (D) SEM image of HA-TiO2-IONPs; (E) TEM image of HA-TiO2-IONPs; (F) Energy spectrum analysis of HA-TiO2-IONPs and (G) XPS test result of TiO2-IONPs.
Figure 3(A) Hysteresis curves of different nanoparticles; (B) Full spectrum scan; (C) Infrared spectrogram of a): TiO2-IONPs, b): PEI-TiO2-IONPs and c): HA-TiO2-IONPs; (D) The migration phenomenon under the magnetic field; (E) Apparent zeta potential of a): TiO2-IONPs and b): HA-TiO2-IONPs; (F) Water dispersibility of a): HA-TiO2-IONPs and b): TiO2-IONPs.
Figure 4(A) Particle size distribution (A1) and apparent zeta potential (A2) of HA-TiO2-IONPs/ART; (B) UV-Vis spectrum of a): HA-TiO2-IONPs, b) HA-TiO2-IONPs/ART, c): HA-TiO2-IONPs after hydrolysis and d): HA-TiO2-IONPs/ART after hydrolysis; (C) Release curve of ART and HA-TiO2-IONPs/ART and (D) The amount of Fe2+ generated in different environments.
Figure 5Cellular uptake of nanoparticles detected by flow cytometry
Figure 6(A) Cell inhibition of HA-TiO2-IONPs in vitro with or without visible light irradiation; (B) Cell inhibition of ART and HA-TiO2-IONPs/ART with or without visible light irradiation; (C) Photocatalytic degradation of MB in the presence of TiO2-IONPs under visible light irradiation; (D) Intracellular ROS detection of a) control group, b) ART, c) HA-TiO2-IONPs/ART and d) HA-TiO2-IONPs/ART with visible light.
Figure 7(A) Cell apoptosis detected by Hoechst 33342 staining of a) Blank cells, b) Blank cells/laser, c) HA-TiO2-IONPs, d) HA-TiO2-IONPs/laser, e) ART, f) HA-TiO2-IONPs/ART and g) HA-TiO2-IONPs/ART/laser; (B) Cell apoptosis detected by Flow cytometry of a) Blank cells, b) Blank cells/laser, c) HA-TiO2-IONPs, d) HA-TiO2-IONPs/laser, e) ART, f) HA-TiO2-IONPs/ART and g) HA-TiO2-IONPs/ART/laser.
Figure 8(A) The weight change (A1) and tumor inhibition rate (A2) of a) Control, b) Control/laser, c) ART, d) HA-TiO2-IONPs/ART, e) HA-TiO2-IONPs/ART/laser, f) HA-TiO2-IONPs and g) HA-TiO2-IONPs/laser; (B) H&E staining of tumor tissues of a) Control, b) Control/laser, c) HA-TiO2-IONPs, d) HA-TiO2-IONPs/laser, e) ART, f) HA-TiO2-IONPs/ART and g) HA-TiO2-IONPs/ART/laser.
Figure 9(A) In vivo NIR imaging of tumor-bearing mice intravenous injected with (a) free IR783 solution and (b) IR783-loaded HA-TiO2-IONPs at 0.5, 2, 4, 8 and 12h post injection; (B) Tissue distribution of ART, TiO2-IONPs/ART and HA-TiO2-IONPs/ART at 0.5h and 8h post injection; (C) The prussian blue staining images of (a) tumor tissue and (b) liver tissue for HA-TiO2-IONPs/ART group at 4h.
Figure 10Plasma Concentration-time curve in mice of ART and HA-TiO2-IONPs/ART
The main pharmacokinetic parameters of ART and HA-TiO2-IONPs/ART
| Groups | AUC(μg/ml·h) | MRT(h) | T1/2(h) |
|---|---|---|---|
| ART | 35.36 | 1.14 | 1.20 |
| HA-TiO2-IONPs/ART | 139.51 | 4.19 | 3.42 |