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基于表面等离子体增强的短波近红外荧光用于检测亚毫米级肿瘤。

Surface Plasmon-Enhanced Short-Wave Infrared Fluorescence for Detecting Sub-Millimeter-Sized Tumors.

机构信息

Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

The David H. Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA, 02142, USA.

出版信息

Adv Mater. 2021 Feb;33(7):e2006057. doi: 10.1002/adma.202006057. Epub 2021 Jan 14.

Abstract

Short-wave infrared (SWIR, 900-1700 nm) enables in vivo imaging with high spatiotemporal resolution and penetration depth due to the reduced tissue autofluorescence and decreased photon scattering at long wavelengths. Although small organic SWIR dye molecules have excellent biocompatibility, they have been rarely exploited as compared to their inorganic counterparts, mainly due to their low quantum yield. To increase their brightness, in this work, the SWIR dye molecules are placed in close proximity to gold nanorods (AuNRs) for surface plasmon-enhanced emission. The fluorescence enhancement is optimized by controlling the dye-to-AuNR number ratio and up to ≈45-fold enhancement factor is achieved. In addition, the results indicate that the highest dye-to-AuNR number ratio gives the highest emission intensity per weight and this is used for synthesizing SWIR imaging probes using layer-by-layer (LbL) technique with polymer coating protection. Then, the SWIR imaging probes are applied for in vivo imaging of ovarian cancer and the surface coating effect on intratumor distribution of the imaging probes is investigated in two orthotopic ovarian cancer models. Lastly, it is demonstrated that the plasmon-enhanced SWIR imaging probe has great potential for fluorescence imaging-guided surgery by showing its capability to detect sub-millimeter-sized tumors.

摘要

短波近红外光(SWIR,900-1700nm)由于减少了组织自发荧光和长波长下的光子散射,具有高时空分辨率和穿透深度,可实现体内成像。虽然小分子有机 SWIR 染料具有极好的生物相容性,但与无机类似物相比,它们的应用却很少,这主要是由于它们的量子产率较低。为了提高它们的亮度,在这项工作中,SWIR 染料分子被放置在金纳米棒(AuNRs)附近,以实现表面等离子体增强发射。通过控制染料与 AuNR 的数量比来优化荧光增强,实现了高达 ≈45 倍的增强因子。此外,结果表明,染料与 AuNR 的最高数量比给出了每重量最高的发射强度,这用于使用聚合物涂层保护的层层(LbL)技术合成 SWIR 成像探针。然后,将 SWIR 成像探针用于卵巢癌的体内成像,并在两种原位卵巢癌模型中研究了表面涂层对肿瘤内成像探针分布的影响。最后,通过展示其检测亚毫米大小肿瘤的能力,证明了等离子体增强 SWIR 成像探针在荧光成像引导手术中具有很大的潜力。

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