Institute of Molecular Functional Materials and Department of Chemistry, The Chinese University of Hong Kong, Shatin, NT, Hong Kong SAR.
ACS Appl Mater Interfaces. 2012 Apr;4(4):2033-40. doi: 10.1021/am300008x. Epub 2012 Mar 21.
Novel high magnetization microspheres with porous γ-Fe(2)O(3) core and porous SiO(2) shell were synthesized using a templating method, whereas the size of the magnetic core and the thickness of the porous shell can be controlled by tuning the experimental parameters. By way of an example, as-prepared γ-Fe(2)O(3)@meso-SiO(2) microspheres (170 nm) display excellent water-dispersity and show photonic characteristics under externally applied a magnetic field. The magnetic property of the γ-Fe(2)O(3) porous core enables the microspheres to be used as a contrast agent in magnetic resonance imaging with a high r(2) (76.5 s(-1) mM(-1) Fe) relaxivity. The biocompatible composites possess a large BET surface area (222.3 m(2)/g), demonstrating that they can be used as a bifunctional agent for both MRI and drug carrier. Because of the high substrate loading of the magnetic, dual-porous materials, only a low dosage of the substrate will be acquired for potential practical applications. Hydrophobic zinc(II) phthalocyanine (ZnPC) photosensitizing molecules have been encapsulated into the dual-porous microspheres to form γ-Fe(2)O(3)@meso-SiO(2)-ZnPC microspheres. Biosafety, cellular uptake in HT29 cells, and in vitro MRI of these nanoparticles have been demonstrated. Photocytotoxicity (λ > 610 nm) of the HT29 cells uptaken with γ-Fe(2)O(3)@meso-SiO(2)-ZnPC microspheres has been demonstrated for 20 min illumination.
采用模板法合成了具有多孔 γ-Fe(2)O(3)核和多孔 SiO(2)壳的新型高磁化率微球,通过调节实验参数可以控制磁性核的尺寸和多孔壳的厚度。例如,所制备的 γ-Fe(2)O(3)@meso-SiO(2)微球(170nm)具有优异的水分散性,并在外加磁场下表现出光子特性。γ-Fe(2)O(3)多孔核的磁性使微球能够用作磁共振成像中的造影剂,弛豫率 r(2)(76.5s(-1)mM(-1)Fe)高。生物相容性复合材料具有大的 BET 比表面积(222.3m(2)/g),表明其可用作磁共振成像和药物载体的双功能试剂。由于磁性、双孔材料的高底物负载量,对于潜在的实际应用,只需少量的底物即可获得。疏水性锌(Ⅱ)酞菁(ZnPC)光敏分子已被包封到双孔微球中,形成 γ-Fe(2)O(3)@meso-SiO(2)-ZnPC 微球。已经证明了这些纳米粒子的生物安全性、HT29 细胞摄取以及体外磁共振成像。HT29 细胞摄取的 γ-Fe(2)O(3)@meso-SiO(2)-ZnPC 微球在 20 分钟光照下表现出光细胞毒性(λ>610nm)。