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百香果状纳结构的双光声/超声多参数成像。

Dual photoacoustic/ultrasound multi-parametric imaging from passion fruit-like nano-architectures.

机构信息

Institute of Clinical Physiology, National Research Council, Pisa, Italy.

Fondazione CNR/Regione Toscana G. Monasterio, Pisa, Italy.

出版信息

Nanomedicine. 2018 Aug;14(6):1787-1795. doi: 10.1016/j.nano.2018.05.007. Epub 2018 May 17.

Abstract

Ultrasound (US) imaging is a well-established diagnostic technique to image soft tissues in real time, while photoacoustic (PA) is an emerging imaging technique employed to collect molecular information. Integration of PA and US imaging provides complementary information enhancing diagnostic accuracy without employing ionizing radiations. The development of contrast agents able to combine PA and US features is pivotal to improve the significance of PAUS imaging and for PAUS-guided treatment of neoplasms. Here, we demonstrate in relevant ex-vivo models that disassembling passion fruit-like nano-architectures (pfNAs) can be employed in PAUS imaging. pfNAs are composed by silica nanocapsules comprising aggregates of commercial NIR-dyes-modified polymers and ultrasmall gold nanoparticles. The intrinsic US and PA features of pfNAs have been fully characterized and validated in tissue-mimicking materials and in ex vivo preparations. Moreover, the application of a multi-parametric approach has allowed the increase of information extrapolated from collected images for a fine texture analysis.

摘要

超声(US)成像是一种成熟的实时软组织成像诊断技术,而光声(PA)是一种新兴的成像技术,用于采集分子信息。PA 和 US 成像的结合提供了互补信息,提高了诊断准确性,而无需使用电离辐射。能够结合 PA 和 US 特性的对比剂的发展对于提高 PAUS 成像的意义以及用于肿瘤的 PAUS 引导治疗至关重要。在这里,我们在相关的离体模型中证明,可以在 PAUS 成像中使用拆分的西番莲果样纳米结构(pfNAs)。pfNAs 由包含商业近红外染料修饰聚合物的聚集体和超小金纳米颗粒的二氧化硅纳米胶囊组成。pfNAs 的固有 US 和 PA 特性已在组织模拟材料和离体标本中得到充分表征和验证。此外,应用多参数方法允许从收集的图像中增加可用于精细纹理分析的信息。

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