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New Optical Imaging Reporter-labeled Anaplastic Thyroid Cancer-Derived Extracellular Vesicles as a Platform for In Vivo Tumor Targeting in a Mouse Model

机译:新的光学成像报道 - 标记的甲状腺型癌症衍生的细胞外囊作为在小鼠模型中靶向体内肿瘤的平台

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Extracellular vesicles (EVs), originating from multivesicular bodies by invagination of the endosomal membrane, are communication channels between distant cells. They are natural carriers of exogeneous cellular materials and have been exploited as drug delivery carriers in various diseases. Here, we found that tumor cell-derived EVs can be used as efficient targets in tumors by monitoring with an optical reporter system. Anaplastic thyroid cancer (CAL62) cell-derived EVs with Renilla luciferase (Rluc) were used to target CAL62 tumors in a mouse model. Optical imaging revealed that cancer cell-derived EVs (EV-CAL62/Rluc) targeted the original tumor (CAL62) in mice within 30?min after systemic injection. Furthermore, fluorescence imaging revealed that EV-CAL62/Rluc were internalized into CAL62 tumors in the mice. Ex vivo Optical imaging further confirmed the in vivo finding. Here, we successfully monitored the tumor targeting ability of tumor cell-derived EVs by optical imaging. Based on these results, tumor cell-derived EVs are highly effective natural carriers for drug delivery for cancer therapies.
机译:通过侵入内体膜来源自多产体的细胞外囊泡(EVS)是远处细胞之间的通信通道。它们是相生细胞材料的天然载体,并且已被剥夺为各种疾病的药物递送载体。在这里,我们发现通过用光学报告系统监测,肿瘤细胞衍生的EV可以用作肿瘤中的有效靶标。具有雷尼拉荧光素酶(Rluc)的血管塑性甲状腺癌(CAL62)电池衍生的EVS用于靶向小鼠模型中的CAL62肿瘤。光学成像显示,癌细胞衍生的EVS(EV-CAL62 / RLUC)在系统注射后30≤min的小鼠内靶向原始肿瘤(CAL62)。此外,荧光成像显示EV-CAL62 / RLUC在小鼠中内化到CAL62肿瘤中。离体光学成像进一步证实了体内发现。在这里,我们通过光学成像成功监测了肿瘤细胞衍生EV的肿瘤靶向能力。基于这些结果,肿瘤细胞衍生的EV是用于癌症疗法的药物递送的高效天然载体。

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