首页> 外文期刊>ACS applied materials & interfaces >Raman Reporter-Coupled Ag-core@Au-shell Nanostars for in vivo Improved Surface Enhanced Raman Scattering Imaging and Near-infrared-Triggered Photothermal Therapy in Breast Cancers
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Raman Reporter-Coupled Ag-core@Au-shell Nanostars for in vivo Improved Surface Enhanced Raman Scattering Imaging and Near-infrared-Triggered Photothermal Therapy in Breast Cancers

机译:拉曼记者联用Ag-core @ Au-shell纳米星用于乳腺癌的体内改良表面增强拉曼散射成像和近红外触发光热疗法

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Noble-metal nanomaterials were widely investigated as theranostic systems for surface enhanced Raman scattering (SERS) imaging, and also for photothermal therapy (PTT) of cancers. However, it was still a major challenge to explore multifunctional nanoprobes with high performance, high stability, and low toxicity. In this work, Raman reporter (DTTC)-coupled Ag-core@Au-shell nanostars (Ag@Au-DTTC) were synthesized and investigated for in vivo improved SERS imaging and near-infrared (NIR)-triggered PTT of breast cancers. By the two-step coupling of DTTC, the SERS signal was improved obviously, and the cytotoxicity of nanoparticles was also decreased by coating Au nanostars onto Ag nanoparticles. The as-prepared Ag@Au-DTTC nanostars showed high photostability and excellent photothermal performance, in which the photothermal conversion efficiency was up to 79.01% under the irradiation of an 808 nm laser. The in vitro and in vivo SERS measurements of Ag@Au-DTTC nanostars showed that the many sharp and narrow Raman peaks located at 508, 782, 844, 1135, 1242, 1331, 1464, 1510, and 1580 cm1 could be obviously observed in MCF-7 cells and in MCF-7 tumor-bearing nude mice, compared with that in pure DTTC. In 14-day treatments, the tumor volume of MCF-7 tumor-bearing nude mice injected with Ag@Au-DTTC nanostars and irradiated by an 808 nm laser almost disappeared. This study demonstrated that the as-prepared Ag@Au-DTTC nanostars could be excellent multifunctional agents for improved SERS imaging and NIR-triggered PTT of breast cancers with low risk.
机译:贵金属纳米材料已被广泛用作用于表面增强拉曼散射(SERS)成像以及癌症光热疗法(PTT)的诊断学系统。然而,探索具有高性能,高稳定性和低毒性的多功能纳米探针仍然是一个重大挑战。在这项工作中,合成了拉曼报道分子(DTTC)偶联的银-核@金壳纳米星(Ag @ Au-DTTC),并进行了体内SERS成像改进和近红外(NIR)触发的乳腺癌PTT研究。通过DTTC的两步偶联,通过将Au纳米星涂覆在Ag纳米颗粒上,SERS信号得到了明显改善,并且纳米颗粒的细胞毒性也降低了。制备的Ag @ Au-DTTC纳米星具有较高的光稳定性和优异的光热性能,其中在808 nm激光的照射下,光热转化效率高达79.01%。 Ag @ Au-DTTC纳米星的体外和体内SERS测量表明,在508、782、844、1135、1242、1331、1464、1510和1580 cm1处可以明显观察到许多尖锐和狭窄的拉曼峰。与纯DTTC中的相比,MCF-7细胞和带有MCF-7荷瘤的裸鼠中的情况。在14天的治疗中,注射了Ag @ Au-DTTC纳米星并被808 nm激光照射的MCF-7荷瘤裸鼠的肿瘤体积几乎消失了。这项研究表明,制备的Ag @ Au-DTTC纳米星可能是改善低风险乳腺癌SERS成像和近红外触发PTT的优秀多功能药物。

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