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A New and Facile Method To Prepare Uniform Hollow MnO/Functionalized mSiO(2) Core/Shell Nanocomposites

机译:一种制备均匀的空心MnO /功能化mSiO(2)核/壳纳米复合材料的新方法

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摘要

Trifunctional uniform nanoparticles comprising a manganese nanocrystal core and a functionalized mesoporous silica shell (MnO@mSiO(2)(Ir)@PEG, where Iris an emissive iridium complex and PEG is polyethylene glycol) have been strategically designed and synthesized. The T(1) signal can be optimized by timing hollow core (H-MnO@mSiO(2)(Ir)@PEG) via a novel and facile etching process, for which the mechanism has been discussed in detail. Systematic investigation on correlation for longitudinal relaxation (T(1)) versus core shapes and shell silica porosity of the nanocomposites (MnO, H-MnO, MnO@SiO(2), MnO@mSiO(2), H-MnO@mSiO(2)) has been carried out. The results show that the worm-like nanochannels in the mesoporous silica shell not only increase water permeability to the Interior hollow manganese oxide core for T(1) signal but also enhance photodynamic therapy (PDT) efficacy by enabling the free diffusion of oxygen. Notably, the H-MnO@mSiO(2)(Ir)@PEG nanocomposite with promising r(1) relaxivity demonstrates Its versatility, in which the magnetic core provides the capability for magnetic resonance imaging, while the simultaneous red phosphorescence and singlet oxygen generation from the Ir complex are capable of providing optical imaging and inducing apoptosis, respectively.
机译:已经战略性地设计和合成了包含锰纳米晶核和功能化介孔二氧化硅壳(MnO @ mSiO(2)(Ir)@PEG,其中铱为发光铱配合物且PEG为聚乙二醇)的三功能均匀纳米颗粒。 T(1)信号可以通过一种新颖而又容易的蚀刻工艺通过对空心核(H-MnO @ mSiO(2)(Ir)@PEG)进行定时优化,对此机理进行了详细的讨论。系统研究纳米复合材料(MnO,H-MnO,MnO @ SiO(2),MnO @ mSiO(2),H-MnO @ mSiO()的纵向弛豫(T(1))与核芯形状和壳二氧化硅孔隙率的相关性2))已执行。结果表明,介孔二氧化硅壳中的蠕虫状纳米通道不仅增加了对内部中空锰氧化物核的T(1)信号的透水性,而且还通过允许氧的自由扩散增强了光动力疗法(PDT)的功效。值得注意的是,具有理想的r(1)弛豫性的H-MnO @ mSiO(2)(Ir)@PEG纳米复合材料证明了其多功能性,其中磁芯提供了磁共振成像的能力,同时产生红色磷光和单线态氧来自Ir复合物的蛋白能够分别提供光学成像并诱导细胞凋亡。

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