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Dual-Modality Dual-Functional Nanoprobes for Cellular and Molecular Imaging

机译:用于细胞和分子成像的双模态双功能纳米探针

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摘要

An emerging need for evaluation of promising cellular therapies is a non-invasive method to image the movement and health of cells following transplantation. However, the use of a single modality to serve this purpose may not be advantageous as it may convey inaccurate or insufficient information. Multi-modal imaging strategies are becoming more popular for in vivo cellular and molecular imaging because of their improved sensitivity, higher resolution and structural/functional visualization. This study aims at formulating Nile Red doped hexamethyldisiloxane (HMDSO) nanoemulsions as dual modality (Magnetic Resonance Imaging/Fluorescence), dual-functional (oximetry/detection) nanoprobes for cellular and molecular imaging. HMDSO nanoprobes were prepared using a HS15-lecithin combination as surfactant and showed an average radius of 71±39 nm by dynamic light scattering and in vitro particle stability in human plasma over 24 hrs. They were found to readily localize in the cytosol of MCF7-GFP cells within 18 minutes of incubation. As proof of principle, these nanoprobes were successfully used for fluorescence imaging and for measuring pO2 changes in cells by magnetic resonance imaging, in vitro, thus showing potential for in vivo applications.
机译:评估有希望的细胞疗法的新兴需求是一种非侵入性方法,可以对移植后细胞的运动和健康状况进行成像。但是,使用单个模式来实现此目的可能不是有利的,因为它可能传达的信息不准确或不足。由于多模态成像策略具有更高的灵敏度,更高的分辨率和结构/功能的可视化效果,因此在体内细胞和分子成像中正变得越来越流行。这项研究旨在将尼罗红掺杂的六甲基二硅氧烷(HMDSO)纳米乳剂配制成用于细胞和分子成像的双模态(磁共振成像/荧光),双功能(血氧测定/检测)纳米探针。使用HS15-卵磷脂组合物作为表面活性剂制备了HMDSO纳米探针,通过动态光散射和24小时人体血浆在体外血浆中的稳定性,HMDSO纳米探针的平均半径为71±39 nm。发现它们在孵育的18分钟内很容易定位在MCF7-GFP细胞的胞质中。作为原理的证明,这些纳米探针已成功用于体外的荧光成像和通过磁共振成像测量细胞中pO2的变化,因此显示出在体内应用的潜力。

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