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Fe3O4/SiO2核壳材料的合成与应用

SYNTHESIS AND APPLICATIONS OF Fe3O4/SiO2 CORE-SHELL MATERIALS.

作者信息

Sonmez Maria, Georgescu Mihai, Alexandrescu Laurentia, Gurau Dana, Ficai Anton, Ficai Denisa, Andronescu Ecaterina

机构信息

POLITEHNICA University of Bucharest, Faculty of Applied Chemistry and Material Science; 1-7 Polizu St., Bucharest, Romania.

出版信息

Curr Pharm Des. 2015;21(37):5324-35. doi: 10.2174/1381612821666150917094031.

Abstract

Multifunctional nanoparticles based on magnetite/silica core-shell, consisting of iron oxides coated with silica matrix doped with fluorescent components such as organic dyes (fluorescein isothiocyanate - FITC, Rhodamine 6G) or quantum dots, have drawn remarkable attention in the last years. Due to the bi-functionality of these types of nanoparticles (simultaneously having magnetic and fluorescent properties), they are successfully used in highly efficient human stem cell labeling, magnetic carrier for photodynamic therapy, drug delivery, hyperthermia and other biomedical applications. Another application of core-shell-based nanoparticles, in which the silica is functionalized with aminosilanes, is for immobilization and separation of various biological entities such as proteins, antibodies, enzymes etc. as well as in environmental applications, as adsorbents for heavy metal ions. In vitro tests on human cancerous cells, such as A549 (human lung carcinoma), breast, human cervical cancer, THP-1 (human acute monocytic leukaemia) etc. , were conducted to assess the potential cytotoxic effects that may occur upon contact of nanoparticles with cancerous tissue. Results show that core-shell nanoparticles doped with cytostatics (cisplatin, doxorubicin, etc.), are easily adsorbed by affected tissue and in some cases lead to an inhibition of cell proliferation and induce cell death by apoptosis. The goal of this review is to summarize the advances in the field of core-shell materials, particularly those based on magnetite/silica with applicability in medicine and environmental protection. This paper briefly describes synthesis methods of silica-coated magnetite nanoparticles (Stöber method and microemulsion), the method of encapsulating functional groups based on aminosilanes in silica shell, as well as applications in medicine of these types of simple or modified nanoparticles for cancer therapy, MRI, biomarker immobilization, drug delivery, biocatalysis etc., and in environmental applications (removal of heavy metal ions and catalysis).

摘要

基于磁铁矿/二氧化硅核壳结构的多功能纳米颗粒,由包覆有二氧化硅基质的氧化铁组成,该基质中掺杂了荧光成分,如有机染料(异硫氰酸荧光素 - FITC、罗丹明6G)或量子点,在过去几年中引起了极大关注。由于这类纳米颗粒具有双功能性(同时具备磁性和荧光特性),它们成功应用于高效的人类干细胞标记、光动力疗法的磁性载体、药物递送、热疗及其他生物医学应用。基于核壳结构的纳米颗粒的另一个应用是,其中二氧化硅用氨基硅烷进行功能化,用于固定和分离各种生物实体,如蛋白质、抗体、酶等,以及在环境应用中作为重金属离子的吸附剂。对人类癌细胞进行了体外测试,如A549(人肺癌)、乳腺癌、人宫颈癌、THP - 1(人急性单核细胞白血病)等,以评估纳米颗粒与癌组织接触时可能产生的潜在细胞毒性作用。结果表明,掺杂有细胞抑制剂(顺铂、阿霉素等)的核壳纳米颗粒很容易被受影响组织吸附,在某些情况下会导致细胞增殖抑制并通过凋亡诱导细胞死亡。本综述的目的是总结核壳材料领域中的进展,特别是基于磁铁矿/二氧化硅且在医学和环境保护中有应用价值的材料。本文简要描述了二氧化硅包覆磁铁矿纳米颗粒的合成方法(斯托伯法和微乳液法)、在二氧化硅壳中基于氨基硅烷封装官能团的方法,以及这些简单或改性纳米颗粒在医学上用于癌症治疗、磁共振成像、生物标志物固定、药物递送、生物催化等方面的应用,以及在环境应用(去除重金属离子和催化)中的应用。

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