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首页> 外文期刊>Nanotechnologies in Russia >Synthesis of anisotropic plasmonic nanoparticles with core-shell structure and prospects of their application in laser treatment of tumors
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Synthesis of anisotropic plasmonic nanoparticles with core-shell structure and prospects of their application in laser treatment of tumors

机译:具有核-壳结构的各向异性等离子体纳米粒子的合成及其在肿瘤激光治疗中的应用前景

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Aggregative stable dispersions of particles with anisotropic cores of iron(III) oxyhydroxide and gold or silver nanoshells are synthesized. They feature maximum plasmonic absorption at about 1000 nm(i. e., in the "optical window" of biological tissues). Such composite particles are of considerable interest for their potential use in cancer therapy. The possibility of finely tuning the position of localized surface plasmon resonance to the required wavelength is demonstrated for the FeOOH core/Au(Ag) shell nanostructures through a controlled variation of the metal shell thickness with a very small step(up to 1 nm). The surface modification of such composite particles by polyethylene glycol(PEG) considerably enhances the aggregative stability of their aqueous dispersions. Quantitative information about the distribution dynamics of the PEG-conjugated composite FeOOH core/Au shell particles in various organs and tissues of tumor-bearing mice has been obtained after an intravenous injection of a colloid solution of these particles. It is shown that composite particles can remain for a rather long time in a bloodstream without aggregation; moreover, their accumulation in a tumor takes place. Preliminary in vivo experiments have shown that PEGylated FeOOH core/Au(Ag) shell particles are effective thermosensibilizers in the pulse laser therapy of tumors.
机译:合成具有羟基氧化铁(III)和金或银纳米壳的各向异性核的颗粒的聚集稳定分散体。它们的特征在于在约1000nm处(即,在生物组织的“光学窗口”中)的最大等离子体吸收。此类复合颗粒因其在癌症治疗中的潜在用途而备受关注。对于FeOOH核/ Au(Ag)壳纳米结构,通过以很小的步长(最大1 nm)控制金属壳厚度的变化,就可以将局部表面等离子体共振的位置微调到所需波长的可能性。聚乙二醇(PEG)对此类复合颗粒的表面改性大大增强了其水分散体的聚集稳定性。在静脉内注射这些颗粒的胶体溶液后,已经获得了有关PEG共轭复合FeOOH核/金壳颗粒在荷瘤小鼠各个器官和组织中分布动力学的定量信息。结果表明,复合颗粒可以在血流中保留相当长的时间,而不会聚集。而且,它们在肿瘤中积累。初步的体内实验表明,聚乙二醇化的FeOOH核心/ Au(Ag)壳颗粒在肿瘤的脉冲激光治疗中是有效的热敏剂。

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