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双色荧光(近红外和可见)三相全氟碳纳米乳剂。

Two-color fluorescent (near-infrared and visible) triphasic perfluorocarbon nanoemuslions.

机构信息

Duquesne University, Graduate School of Pharmaceutical Sciences, Pittsburgh, Pennsylvania 15282-0001, USA.

出版信息

J Biomed Opt. 2013 Oct;18(10):101312. doi: 10.1117/1.JBO.18.10.101312.

Abstract

Design and development of a new formulation as a unique assembly of distinct fluorescent reporters with nonoverlapping fluorescence spectra and a F19 magnetic resonance imaging agent into colloidally and optically stable triphasic nanoemulsion are reported. Specifically, a cyanine dye-perfluorocarbon (PFC) conjugate was introduced into the PFC phase of the nanoemulsion and a near-infrared dye was introduced into the hydrocarbon (HC) layer. To the best of our knowledge, this is the first report of a triphasic nanoemulsion system where each oil phase, HC, and PFC are fluorescently labeled and formulated into an optically and colloidally stable nanosystem. Having, each oil phase separately labeled by a fluorescent dye allows for improved correlation between in vivo imaging and histological data. Further, dual fluorescent labeling can improve intracellular tracking of the nanodroplets and help assess the fate of the nanoemulsion in biologically relevant media. The nanoemulsions were produced by high shear processing (microfluidization) and stabilized with biocompatible nonionic surfactants resulting in mono-modal size distribution with average droplet size less than 200 nm. Nanoemulsions demonstrate excellent colloidal stability and only moderate changes in the fluorescence signal for both dyes. Confocal fluorescence microscopy of macrophages exposed to nanoemulsions shows the presence of both fluorescence agents in the cytoplasm.

摘要

本文报道了一种新制剂的设计和开发,该制剂是由具有不重叠荧光光谱的独特荧光报告分子组装而成,同时还包含一种 F19 磁共振成像剂,并将其胶体稳定地包裹于三相反相胶束纳米乳中。具体而言,将一种菁染料-全氟碳(PFC)缀合物引入纳米乳的 PFC 相中,将近红外染料引入烃(HC)层中。据我们所知,这是首次报道三相反相胶束纳米乳系统,其中每个油相(HC 和 PFC)都被荧光标记,并被配制成光学和胶体稳定的纳米系统。每个油相分别用荧光染料标记,这使得体内成像和组织学数据之间的相关性得到了提高。此外,双荧光标记可以改善纳米液滴的细胞内跟踪,并有助于评估纳米乳在生物相关介质中的命运。纳米乳通过高剪切处理(微流化)制备,并使用生物相容性非离子表面活性剂稳定,结果得到了平均粒径小于 200nm 的单模态粒径分布。纳米乳表现出极好的胶体稳定性,两种染料的荧光信号仅有适度变化。暴露于纳米乳的巨噬细胞的共聚焦荧光显微镜显示细胞质中存在两种荧光剂。

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本文引用的文献

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Intracellular pH measurements using perfluorocarbon nanoemulsions.使用全氟碳纳米乳液进行细胞内 pH 值测量。
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