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具有嵌入式报告基团的超亮 SERS 探针的合理设计用于生物成像和光热治疗。

Rational Design of Ultrabright SERS Probes with Embedded Reporters for Bioimaging and Photothermal Therapy.

机构信息

Institute of Biochemistry and Physiology of Plants and Microorganisms, Russian Academy of Sciences , 13 Prospekt Entuziastov, Saratov 410049, Russia.

Saratov National Research State University , 83 Ulitsa Astrakhanskaya, Saratov 410012, Russia.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 13;9(36):30387-30397. doi: 10.1021/acsami.7b08733. Epub 2017 Aug 30.

Abstract

Plasmonic nanoparticles can be utilized as surface-enhanced Raman scattering (SERS) probes for bioimaging and as photothermal (PT) agents for cancer therapy. Typically, their SERS and PT efficiencies reach maximal values under the on-resonant condition, when the excitation wavelength overlaps the localized surface plasmon resonance (LSPR) wavelength preferably in the near-infrared (NIR) biological window. However, the photogenerated heat may inevitably disturb or even destroy biological samples during the imaging process. Herein, we develop ultrabright SERS probes composed of metallic Au@Ag core-shell rodlike nanomatryoshkas (RNMs) with embedded Raman reporters. By rationally controlling the Ag shell thickness, the LSPR of RNMs can be tuned from UV to NIR range, resulting in highly tunable SERS and PT properties. As bright NIR SERS imaging nanoprobes, RNMs with a thick Ag shell are designed for minimal PT damage to the biological targets under the off-resonance condition, as illustrated through monitoring the changes in mitochondrial membrane potential of cancer cells during SERS imaging procedure. By contrast, RNMs with a thin Ag shell are designed as multifunctional NIR theranostic probes that combine enhanced photothermal therapy capability, as exemplified by efficient PT killing of cancer cells, with reduced yet still efficient imaging properties at the on-resonance excitation.

摘要

等离子体纳米粒子可用作表面增强拉曼散射 (SERS) 探针进行生物成像,以及用作光热 (PT) 剂进行癌症治疗。通常,它们的 SERS 和 PT 效率在共振条件下达到最大值,此时激发波长最好与近红外 (NIR) 生物窗口中的局域表面等离子体共振 (LSPR) 波长重叠。然而,在成像过程中,光生热可能不可避免地会干扰甚至破坏生物样品。在此,我们开发了由具有嵌入式拉曼报告分子的金属 Au@Ag 核壳棒状纳米多壳体 (RNM) 组成的超亮 SERS 探针。通过合理控制 Ag 壳厚度,可以将 RNM 的 LSPR 从 UV 调谐到 NIR 范围,从而产生高度可调的 SERS 和 PT 性能。作为明亮的 NIR SERS 成像纳米探针,具有厚 Ag 壳的 RNM 设计用于在离共振条件下对生物靶标造成最小的 PT 损伤,这通过监测 SERS 成像过程中癌细胞线粒体膜电位的变化得到说明。相比之下,具有薄 Ag 壳的 RNM 被设计为多功能 NIR 治疗诊断探针,将增强的光热治疗能力与高效的 PT 杀伤癌细胞相结合,同时在共振激发下仍具有降低但仍然有效的成像性能。

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