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一种用于装载 ICG 和多模态成像引导光疗的“保护伞”纳米平台。

A "protective umbrella" nanoplatform for loading ICG and multi-modal imaging-guided phototherapy.

机构信息

School of Pharmacy, Zhengzhou University, Zhengzhou, Henan, PR China; Key Laboratory of Targeting Therapy and Diagnosis for Critical Diseases, Henan Province, PR China.

School of Pharmacy, Zhengzhou University, Zhengzhou, Henan, PR China.

出版信息

Nanomedicine. 2018 Feb;14(2):289-301. doi: 10.1016/j.nano.2017.09.009. Epub 2017 Oct 7.

Abstract

In order to prevent the aggregation of ICG and enhance its stability, a novel nanoplatform (TiO:Yb,Ho,F-β-CD@ICG/HA) was designed for NIR-induced phototherapy along with multi-mode imaging(UCL/MRI/Flu). In this nanosysytem: TiO:Yb,Ho,F was used as upconversion materials and applied in vivo for the first time; β-CD acted as a "protective umbrella" to load separated ICG and avoid the low phototherapy efficiency because of its aggregation; HA was the capping agent of β-CD to prevent ICG unexpected leaking and a target to recognize CD44 receptor. The nanosystem exhibited excellent size (~200 nm) and photo- and thermal-stability, preferable reactive oxygen yield and temperature response (50.4 °C) under 808 nm laser. It could efficiently target and suppress tumor growth. The imaging ability (UCL/MRI) of TiO:Yb,Ho,F could facilitate diagnosis of the tumor, especially for deep tissues. Altogether, our work successfully improved the phototherapy efficacy through incorporating the ICG into the cavity of β-CD and applied TiO:Yb,Ho,F for upconversion imaging in vivo.

摘要

为了防止 ICG 的聚集并提高其稳定性,设计了一种新型纳米平台(TiO:Yb,Ho,F-β-CD@ICG/HA),用于近红外光诱导的光疗以及多模式成像(UCL/MRI/荧光)。在这个纳米系统中:TiO:Yb,Ho,F 被用作上转换材料,并首次在体内应用;β-CD 充当“保护伞”,以负载分离的 ICG,并避免由于聚集而导致的低光疗效率;HA 是β-CD 的封端剂,可防止 ICG 意外泄漏,并作为识别 CD44 受体的靶点。该纳米系统表现出优异的尺寸(~200nm)和光热稳定性,在 808nm 激光下可产生优异的活性氧产量和温度响应(50.4°C)。它可以有效地靶向和抑制肿瘤生长。TiO:Yb,Ho,F 的成像能力(UCL/MRI)可以促进肿瘤的诊断,特别是对于深部组织。总之,我们的工作通过将 ICG 纳入β-CD 的腔中,并将 TiO:Yb,Ho,F 应用于体内上转换成像,成功提高了光疗效果。

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