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聚合物包覆的氧化铁纳米颗粒的胶体稳定性和温敏性:普朗尼克 F68-聚乙二醇混合物的优势。

Colloidal stability and thermo-responsive properties of iron oxide nanoparticles coated with polymers: advantages of Pluronic® F68-PEG mixture.

出版信息

Nanotechnology. 2013 Oct 4;24(39):395605. doi: 10.1088/0957-4484/24/39/395605. Epub 2013 Sep 6.

Abstract

Superparamagnetic iron oxide nanoparticles (SPIONs) are recognized to be an attractive platform for developing novel drug delivery approaches and thus several types of functionalized magnetic nanocarriers based on SPIONs have been synthesized and studied. The coating of the metal oxide surface was achieved in a one-pot synthesis with biocompatible polyethylene glycol (PEG) and thermo-responsive modified Pluronic® F68. The resulting thermo-responsive magnetic nanocarriers can incorporate water insoluble drugs into their hydrophobic compartment and later release them in a temperature dependent manner. Here we report novel magnetic nanocarriers with significant improvements regarding the colloidal stability and critical temperature obtained by mixing various molar ratios of hydrophilic PEG with thermo-responsive Pluronic® F68 bearing different end group functionalities. Various methods have been employed to characterize the magnetic nanocarriers, such as photon correlation spectroscopy (DLS), atomic absorption, FT-IR spectroscopy, and surface-enhanced Raman scattering. The transition temperature that determines changes in the conformation of the block copolymer chain was studied by DLS as a function of temperature. Moreover, the drug loading properties of SPION-(F68-OMe)-(F68-FA) and SPION-PEG-F68-FA were analyzed with a hydrophobic fluorescent dye, DID oil. The behavior of the encapsulated DID into the nanocarrier shell was studied as a function of temperature via fluorescence spectroscopy. These results offer original insights into the enhanced colloidal stability and thermo-sensitive properties of the novel synthesized magnetic nanocarriers.

摘要

超顺磁性氧化铁纳米粒子(SPIONs)被认为是开发新型药物输送方法的有吸引力的平台,因此已经合成并研究了几种基于 SPIONs 的功能化磁性纳米载体。金属氧化物表面的涂层是在一锅合成中实现的,使用了生物相容性的聚乙二醇(PEG)和温度响应性改性的 Pluronic® F68。所得的温度响应性磁性纳米载体可以将水不溶性药物纳入其疏水性隔室中,并随后以温度依赖的方式释放它们。在这里,我们报告了具有显著改进的新型磁性纳米载体,其胶体稳定性和临界温度通过混合具有不同端基官能团的亲水性 PEG 与温度响应性 Pluronic® F68 的各种摩尔比来获得。已经采用了各种方法来表征磁性纳米载体,例如光子相关光谱(DLS)、原子吸收、傅里叶变换红外光谱和表面增强拉曼散射。通过 DLS 作为温度的函数研究了决定嵌段共聚物链构象变化的转变温度。此外,通过疏水性荧光染料 DID 油分析了 SPION-(F68-OMe)-(F68-FA)和 SPION-PEG-F68-FA 的药物负载性能。通过荧光光谱研究了封装在纳米载体壳中的 DID 的行为作为温度的函数。这些结果提供了对新型合成磁性纳米载体增强的胶体稳定性和温度敏感性的深入了解。

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