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用于深层组织和双 MRI 成像的高亮 PEG 化上转换发光磁性纳米荧光粉的合成。

Synthesis of brightly PEGylated luminescent magnetic upconversion nanophosphors for deep tissue and dual MRI imaging.

机构信息

Department of Chemistry, Center for Optical Materials Science and Engineering (COMSET) and Environmental Toxicology Program, Clemson University, Clemson SC, 29634, USA.

出版信息

Small. 2014 Jan 15;10(1):160-8. doi: 10.1002/smll.201300828. Epub 2013 Jul 5.

Abstract

A method is developed to fabricate monodispersed biocompatible Yb/Er or Yb/Tm doped β-NaGdF4 upconversion phosphors using polyelectrolytes to prevent irreversible particle aggregation during conversion of the precursor, Gd2 O(CO3 )2.H2 O:Yb/Er or Yb/Tm, to β-NaGdF4 :Yb/Er or Yb/Tm. The polyelectrolyte on the outer surface of nanophosphors also provided an amine tag for PEGylation. This method is also employed to fabricate PEGylated magnetic upconversion phosphors with Fe3 O4 as the core and β-NaGdF4 as a shell. These magnetic upconversion nanophosphors have relatively high saturation magnetization (7.0 emu g(-1) ) and magnetic susceptibility (1.7 × 10(-2) emu g(-1) Oe(-1) ), providing them with large magnetophoretic mobilities. The magnetic properties for separation and controlled release in flow, their optical properties for cell labeling, deep tissue imaging, and their T1 - and T2 -weighted magnetic resonance imaging (MRI) relaxivities are studied. The magnetic upconversion phosphors display both strong magnetophoresis, dual MRI imaging (r1 = 2.9 mM(-1) s(-1) , r2 = 204 mM(-1) s(-1) ), and bright luminescence under 1 cm chicken breast tissue.

摘要

开发了一种使用聚电解质制备单分散生物相容性 Yb/Er 或 Yb/Tm 掺杂的β-NaGdF4 上转换荧光粉的方法,以防止前驱体 Gd2O(CO3)2·H2O:Yb/Er 或 Yb/Tm 转化为β-NaGdF4:Yb/Er 或 Yb/Tm 时不可逆的颗粒聚集。纳米荧光粉外表面的聚电解质还提供了用于聚乙二醇化的胺标记。该方法还用于制备以 Fe3O4 为核、β-NaGdF4 为壳的聚乙二醇化磁性上转换荧光粉。这些磁性上转换纳米荧光粉具有相对较高的饱和磁化强度(7.0 emu g(-1))和磁化率(1.7×10(-2) emu g(-1) Oe(-1)),赋予它们较大的磁泳迁移率。研究了它们在流动中的分离和控制释放的磁性、细胞标记、深层组织成像的光学性能以及 T1 和 T2 加权磁共振成像(MRI)弛豫率。磁性上转换荧光粉在 1 cm 鸡胸脯组织下显示出强烈的磁泳、双 MRI 成像(r1 = 2.9 mM(-1) s(-1),r2 = 204 mM(-1) s(-1))和明亮的发光。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b17e/4118939/06849a86d222/nihms549117f1.jpg

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