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高排泄性金超团簇用于肿瘤可转化的 Raman 成像。

Highly Excretable Gold Supraclusters for Translatable Raman Imaging of Tumors.

机构信息

Department of Radiology, Stanford University School of Medicine, Stanford, California94305United States.

Molecular Imaging Program at Stanford (MIPS) and Bio-X Program, Stanford University, Stanford, California94305United States.

出版信息

ACS Nano. 2023 Feb 14;17(3):2554-2567. doi: 10.1021/acsnano.2c10378. Epub 2023 Jan 23.

Abstract

Raman spectroscopy provides excellent specificity for preclinical imaging through a readout of fingerprint-like spectra. To achieve sufficient sensitivity for Raman imaging, metallic gold nanoparticles larger than 10 nm were employed to amplify Raman signals via surface-enhanced Raman scattering (SERS). However, the inability to excrete such large gold nanoparticles has restricted the translation of Raman imaging. Here we present Raman-active metallic gold supraclusters that are biodegradable and excretable as nanoclusters. Although the small size of the gold nanocluster building blocks compromises the electromagnetic field enhancement effect, the supraclusters exhibit bright and prominent Raman scattering comparable to that of large gold nanoparticle-based SERS nanotags due to high loading of NIR-resonant Raman dyes and much suppressed fluorescence background by metallic supraclusters. The bright Raman scattering of the supraclusters was pH-responsive, and we successfully performed Raman imaging of acidic tumors in mice. Furthermore, in contrast to large gold nanoparticles that remain in the liver and spleen over 4 months, the supraclusters dissociated into small nanoclusters, and 73% of the administered dose to mice was excreted during the same period. The highly excretable Raman supraclusters demonstrated here offer great potential for clinical applications of Raman imaging.

摘要

拉曼光谱通过读取类似指纹的光谱,为临床前成像提供了极好的特异性。为了实现拉曼成像的足够灵敏度,使用大于 10nm 的金属金纳米粒子通过表面增强拉曼散射(SERS)来放大拉曼信号。然而,由于无法排出如此大的金纳米粒子,限制了拉曼成像的转化。在这里,我们提出了可生物降解和可排泄为纳米团簇的拉曼活性金超团簇。尽管金纳米团簇构建块的小尺寸会影响电磁场增强效果,但由于高负载近红外共振拉曼染料和金属超团簇大大抑制了荧光背景,超团簇表现出与基于大的金纳米粒子的 SERS 纳米标签相当的明亮和突出的拉曼散射。超团簇的亮拉曼散射具有 pH 响应性,我们成功地对小鼠的酸性肿瘤进行了拉曼成像。此外,与在肝脏和脾脏中超过 4 个月仍保持不变的大的金纳米粒子相比,超团簇解离成小的纳米团簇,并且在同一时期,给予小鼠的超团簇剂量的 73%被排出。这里展示的高排泄性拉曼超团簇为拉曼成像的临床应用提供了巨大的潜力。

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