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Fluorescence-quenching of a Liposomal-encapsulated Near-infrared Fluorophore as a Tool for In Vivo Optical Imaging

机译:脂质体包裹的近红外荧光团的荧光猝灭作为体内光学成像的工具

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摘要

Optical imaging offers a wide range of diagnostic modalities and has attracted a lot of interest as a tool for biomedical imaging. Despite the enormous number of imaging techniques currently available and the progress in instrumentation, there is still a need for highly sensitive probes that are suitable for in vivo imaging. One typical problem of available preclinical fluorescent probes is their rapid clearance in vivo, which reduces their imaging sensitivity. To circumvent rapid clearance, increase number of dye molecules at the target site, and thereby reduce background autofluorescence, encapsulation of the near-infrared fluorescent dye, DY-676-COOH in liposomes and verification of its potential for in vivo imaging of inflammation was done. DY-676 is known for its ability to self-quench at high concentrations. We first determined the concentration suitable for self-quenching, and then encapsulated this quenching concentration into the aqueous interior of PEGylated liposomes. To substantiate the quenching and activation potential of the liposomes we use a harsh freezing method which leads to damage of liposomal membranes without affecting the encapsulated dye. The liposomes characterized by a high level of fluorescence quenching were termed Lip-Q. We show by experiments with different cell lines that uptake of Lip-Q is predominantly by phagocytosis which in turn enabled the characterization of its potential as a tool for in vivo imaging of inflammation in mice models. Furthermore, we use a zymosan-induced edema model in mice to substantiate the potential of Lip-Q in optical imaging of inflammation in vivo. Considering possible uptake due to inflammation-induced enhanced permeability and retention (EPR) effect, an always-on liposome formulation with low, non-quenched concentration of DY-676-COOH (termed Lip-dQ) and the free DY-676-COOH were compared with Lip-Q in animal trials.
机译:光学成像提供了广泛的诊断方式,并作为生物医学成像工具引起了人们的极大兴趣。尽管当前可获得大量的成像技术以及仪器的进步,但是仍然需要适用于体内成像的高灵敏度探针。现有的临床前荧光探针的一个典型问题是它们在体内的快速清除,这降低了它们的成像灵敏度。为了规避快速清除,增加目标部位的染料分子数量,从而减少背景自发荧光,将近红外荧光染料DY-676-COOH封装在脂质体中,并验证了其在体内炎症成像中的潜力。 DY-676以高浓度时自动淬灭而闻名。我们首先确定适合于自身猝灭的浓度,然后将这种猝灭浓度封装到聚乙二醇化脂质体的水性内部中。为了证实脂质体的猝灭和活化潜能,我们使用了严酷的冷冻方法,该方法导致脂质体膜的损伤而不影响包封的染料。以高水平的荧光猝灭为特征的脂质体称为Lip-Q。我们通过不同细胞系的实验表明,Lip-Q的摄取主要是通过吞噬作用实现的,而吞噬作用又可以表征其潜力,作为在小鼠模型中对炎症进行体内成像的工具。此外,我们在小鼠中使用酵母聚糖诱导的水肿模型来证实Lip-Q在体内炎症光学成像中的潜力。考虑到由于炎症引起的通透性和滞留性(EPR)增强而可能被人体吸收,因此始终在线的脂质体制剂具有低,非猝灭浓度的DY-676-COOH(称为Lip-dQ)和游离的DY-676-COOH在动物试验中与Lip-Q进行了比较。

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