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卟啉纳米液滴:亚微米级超声和光声对比成像剂。

Porphyrin Nanodroplets: Sub-micrometer Ultrasound and Photoacoustic Contrast Imaging Agents.

机构信息

Department of Electrical and Computer Engineering, University of Alberta, Edmonton, Alberta, T6G 2V4, Canada.

Department of Medical Biophysics, University of Toronto, Toronto, Ontario, M5G 1L7, Canada.

出版信息

Small. 2016 Jan 20;12(3):371-80. doi: 10.1002/smll.201502450. Epub 2015 Dec 3.

Abstract

A novel class of all-organic nanoscale porphyrin nanodroplet agents is presented which is suitable for multimodality ultrasound and photoacoustic molecular imaging. Previous multimodality photoacoustic-ultrasound agents are either not organic, or not yet demonstrated to exhibit enhanced accumulation in leaky tumor vasculature, perhaps because of large diameters. In the current study, porphyrin nanodroplets are created with a mean diameter of 185 nm which is small enough to exhibit the enhanced permeability and retention effect. Porphyrin within the nanodroplet shell has strong optical absorption at 705 nm with an estimated molar extinction coefficient >5 × 10(9) m(-1) cm(-1) , allowing both ultrasound and photoacoustic contrast in the same nanoparticle using all organic materials. The potential of nanodroplets is that they may be phase-changed into microbubbles using high pressure ultrasound, providing ultrasound contrast with single-bubble sensitivity. Multispectral photoacoustic imaging allows visualization of nanodroplets when injected intratumorally in an HT1080 tumor in the chorioallantoic membrane of a chicken embryo. Intravital microscopy imaging of Hep3-GFP and HT1080-GFP tumors in chicken embryos determines that nanodroplets accumulated throughout or at the periphery of tumors, suggesting that porphyrin nanodroplets may be useful for enhancing the visualization of tumors with ultrasound and/or photoacoustic imaging.

摘要

提出了一类新型的全有机纳米卟啉纳米液滴剂,适用于多模态超声和光声分子成像。以前的多模态光声超声造影剂要么不是有机的,要么尚未证明在渗漏性肿瘤血管中具有增强的积累,这可能是由于其直径较大。在当前的研究中,创建了平均直径为 185nm 的卟啉纳米液滴,其直径足够小,可表现出增强的通透性和保留效应。纳米液滴壳内的卟啉在 705nm 处具有很强的光吸收,估计摩尔消光系数>5×10(9)m(-1)cm(-1),允许使用全有机材料在同一纳米颗粒中同时进行超声和光声对比。纳米液滴的潜在优势在于,它们可以使用高压超声转变为微泡,从而提供具有单泡敏感性的超声对比。多光谱光声成像是在鸡胚绒毛尿囊膜中的 HT1080 肿瘤内瘤内注射后,可视化纳米液滴的一种方法。鸡胚中 Hep3-GFP 和 HT1080-GFP 肿瘤的活体显微镜成像确定,纳米液滴在肿瘤的整个部位或周围积累,这表明卟啉纳米液滴可能有助于增强肿瘤的超声和/或光声成像可视化。

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