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用于药物传递和控制释放的磁 cubosomes。

Magnetocubosomes for the delivery and controlled release of therapeutics.

机构信息

Department of Chemistry and CSGI, University of Florence, via della Lastruccia 3, Sesto Fiorentino, 50019 Florence, Italy.

出版信息

J Colloid Interface Sci. 2015 Jul 1;449:317-26. doi: 10.1016/j.jcis.2014.11.056. Epub 2014 Dec 5.

DOI:10.1016/j.jcis.2014.11.056
PMID:25533536
Abstract

The design of nanostructured drug delivery systems (DDS) that improve the efficacy of therapeutic principles by enhancing their biocompatibility, bioavailability and targeting, has been the focus of extensive research over the past years. Of particular relevance in this field is the development of multifunctional architectures that can deliver different therapeutics or diagnostic agents and release them in a controlled way. In this study we report on the design, preparation and characterization of a DDS where hydrophobic Fe3O4 magnetic nanoparticles (NPs) are included in the bilayer of bicontinuous cubic lipid nanoparticles of Glyceryl Monooleate (GMO). The "magnetocubosomes" are characterized and investigated in terms of their ability to encapsulate and release both hydrophilic and hydrophobic model drugs. For the first time Fluorescence Correlation Spectroscopy (FCS) is used to study the diffusion of encapsulated molecules inside the bicontinuous cubic phase and to monitor their release from the matrix towards the aqueous phase. In addition, we show with the same technique that magnetocubosomes are responsive to a low frequency alternating magnetic field (LF-AMF), which acts as an external trigger to boost the release of model drugs confined in the cubic phase. Magnetocubosomes, reported for the first time in this paper, represent a novel biocompatible, multifunctional and responsive DDS.

摘要

在过去的几年中,设计能够通过提高生物相容性、生物利用度和靶向性来增强治疗原理疗效的纳米结构药物输送系统 (DDS) 一直是广泛研究的重点。在这个领域中,特别相关的是开发能够输送不同治疗剂或诊断剂并以受控方式释放它们的多功能架构。在这项研究中,我们报告了一种 DDS 的设计、制备和表征,其中疏水性 Fe3O4 磁性纳米颗粒 (NPs) 被包含在 Glyceryl Monooleate (GMO) 的双连续立方脂质纳米粒子的双层中。“磁立方脂质体”的特性及其封装和释放亲水性和疏水性模型药物的能力进行了研究。首次使用荧光相关光谱 (FCS) 研究了包封分子在双连续立方相中扩散,并监测它们从基质向水相的释放。此外,我们还使用相同的技术表明,磁立方脂质体对低频交变磁场 (LF-AMF) 有响应,LF-AMF 可以作为外部触发因素来促进受限在立方相中的模型药物的释放。本文首次报道的磁立方脂质体代表了一种新型的生物相容性、多功能和响应性 DDS。

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