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用于pH触发药物释放和磁共振成像的铁负载磁性纳米胶囊

Iron-Loaded Magnetic Nanocapsules for pH-Triggered Drug Release and MRI Imaging.

作者信息

Chen Hongyu, Sulejmanovic Dino, Moore Thomas, Colvin Daniel C, Qi Bin, Mefford O Thompson, Gore John C, Alexis Frank, Hwu Shiou-Jyh, Anker Jeffrey N

机构信息

Department of Chemistry, Center for Optical Materials Science and Engineering (COMSET), and Environmental Toxicology Program, Clemson University , Clemson, South Carolina 29634, United States.

Department of Bioengineering, Clemson University , Clemson, South Carolina 29634, United States.

出版信息

Chem Mater. 2014 Mar 25;26(6):2105-2112. doi: 10.1021/cm404168a. Epub 2014 Feb 26.

Abstract

Magnetic nanocapsules were synthesized for controlled drug release, magnetically assisted delivery, and MRI imaging. These magnetic nanocapsules, consisting of a stable iron nanocore and a mesoporous silica shell, were synthesized by controlled encapsulation of ellipsoidal hematite in silica, partial etching of the hematite core in acid, and reduction of the core by hydrogen. The iron core provided a high saturation magnetization and was stable against oxidation for at least 6 months in air and 1 month in aqueous solution. The hollow space between the iron core and mesoporous silica shell was used to load anticancer drug and a T-weighted MRI contrast agent (Gd-DTPA). These multifunctional monodispersed magnetic "nanoeyes" were coated by multiple polyelectrolyte layers of biocompatible poly-l-lysine and sodium alginate to control the drug release as a function of pH. We studied pH-controlled release, magnetic hysteresis curves, and T/T MRI contrast of the magnetic nanoeyes. They also served as MRI contrast agents with relaxivities of 8.6 mM s () and 285 mM s ().

摘要

合成磁性纳米胶囊用于控释药物、磁辅助递送和磁共振成像。这些磁性纳米胶囊由稳定的铁纳米核和介孔二氧化硅壳组成,通过在二氧化硅中可控包封椭球形赤铁矿、在酸中对赤铁矿核进行部分蚀刻以及用氢气还原核来合成。铁芯具有高饱和磁化强度,在空气中至少6个月、在水溶液中1个月内抗氧化稳定。铁芯和介孔二氧化硅壳之间的中空空间用于负载抗癌药物和T加权磁共振成像造影剂(钆喷酸葡胺)。这些多功能单分散磁性“纳米眼”用生物相容性聚-L-赖氨酸和海藻酸钠的多层聚电解质层包覆,以根据pH控制药物释放。我们研究了磁性纳米眼的pH控制释放、磁滞曲线和T/T磁共振成像造影。它们还用作磁共振成像造影剂,弛豫率分别为8.6 mM s()和285 mM s()。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7483/3988683/7376b9790775/cm-2013-04168a_0001.jpg

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