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Cell Labeling for 19F MRI: New and Improved Approach to Perfluorocarbon Nanoemulsion Design

机译:19 F MRI的细胞标记:全氟化碳纳米乳剂设计的新方法

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This report describes novel perfluorocarbon (PFC) nanoemulsions designed to improve ex vivo cell labeling for 19F magnetic resonance imaging (MRI). 19F MRI is a powerful non-invasive technique for monitoring cells of the immune system in vivo, where cells are labeled ex vivo with PFC nanoemulsions in cell culture. The quality of 19F MRI is directly affected by the quality of ex vivo PFC cell labeling. When co-cultured with cells for longer periods of time, nanoemulsions tend to settle due to high specific weight of PFC oils (1.5–2.0 g/mL). This in turn can decrease efficacy of excess nanoemulsion removal and reliability of the cell labeling in vitro. To solve this problem, novel PFC nanoemulsions are reported which demonstrate lack of sedimentation and high stability under cell labeling conditions. They are monodisperse, have small droplet size (~130 nm) and low polydispersity (0.15), show a single peak in the 19F nuclear magnetic resonance spectrum at −71.4 ppm and possess high fluorine content. The droplet size and polydispersity remained unchanged after 160 days of follow up at three temperatures (4, 25 and 37 °C). Further, stressors such as elevated temperature in the presence of cells, and centrifugation, did not affect the nanoemulsion droplet size and polydispersity. Detailed synthetic methodology and in vitro testing for these new PFC nanoemulsions is presented.
机译:该报告介绍了新颖的全氟化碳(PFC)纳米乳剂,旨在改善 19 F磁共振成像(MRI)的离体细胞标记。 19 F MRI是一种功能强大的非侵入性技术,用于监测体内免疫系统的细胞,该细胞在体外用细胞培养物中的PFC纳米乳剂进行标记。 19 F MRI的质量直接受离体PFC细胞标记质量的影响。当与细胞共培养更长的时间时,由于高比重的PFC油(1.5-2.0 g / mL),纳米乳剂趋于沉降。反过来,这会降低过量去除纳米乳剂的功效和体外细胞标记的可靠性。为了解决该问题,报道了新颖的PFC纳米乳液,其在细胞标记条件下显示出不沉淀和高稳定性。它们是单分散的,具有小的液滴尺寸(〜130 nm)和低的多分散性(<0.15),在 19 F核磁共振谱中显示一个单峰,为-71.4 ppm,并且具有高的氟含量。在三种温度(4、25和37°C)下进行了160天的随访后,液滴的大小和多分散性保持不变。此外,诸如细胞存在下的高温和离心之类的应激物不影响纳米乳液液滴的大小和多分散性。介绍了这些新型PFC纳米乳液的详细合成方法和体外测试。

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