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Heterologous and cross-species tropism of cancer-derived extracellular vesicles

机译:癌症衍生的细胞外囊泡的异种和跨物种嗜性

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Extracellular vesicles (EVs) are naturally occurring cargo delivery vesicles that have recently received considerable attention for their roles in intercellular communication in many physiological and pathological processes, including tumourigenesis. EVs generated by different tissues demonstrated specific homing: in particular, cancer-derived EVs showed a selective tropism for the tumor tissue from which the vesicles originated. For this property, EVs have been proposed as drug delivery tools for anti-cancer therapies, although the limited knowledge about their in vivo tropism hinders their therapeutic applications. The current study aimed to characterize the targeting properties of cancer-derived EVs in vitro and their biodistribution in vivo , by using an imaging approach. Methods : EVs were generated from: i) murine lung (LL/2) and colon (MC-38) cancer lines, ii) human lung cancer cell line (A549) and iii) human liver biopsy samples from healthy individuals. EVs were loaded with fluorescent dyes alone or in combination with a biopharmaceutical agent, the oncolytic adenovirus (OV), characterized for charge and size and tested for their activity in cancer cell lines. Finally, optical imaging was extensively applied to study in vivo and ex vivo the biodistribution of EVs originated from different sources in different mouse models of cancer, including xenograft, syngeneic graft and the MMTV-NeuT genetically modified animal. Results : We initially demonstrated that even loading EVs even with a large biopharmaceutical oncolytic viruses (OVs) did not significantly change their charge and dimension properties, while increasing their anti-neoplastic activity compared to the virus or EVs alone. Interestingly, this activity was observed even if the EVs derived from lung cancer were applied to colon carcinoma cell lines and vice versa , suggesting that the EV uptake occurred in vitro without any specificity for the cancer cells from which the vesicles originated. When administered i.v (intravenously) to the mouse models of cancer, the tumour-derived EVs, but not the EVs derived from a healthy tissue, demonstrated a selective accumulation of the fluorescence at the tumour site 24 h after injection; adding OVs to the formulation did not change the tumour-specific tropism of the EVs also in vivo . Most interestingly, the in vivo experiments confirmed the in vitro observation of the generalized tropism of tumour-derived EVs for any neoplastic tissue, independent of the tumour type or even the species originating the vesicles. Conclusions : Taken together, our in vitro and in vivo data demonstrate for the first time a heterologous, cross-species tumour-tropism for cancer-derived EVs. This finding challenges our current view on the homing properties of EVs and opens new avenues for the selective delivery of diagnostic/therapeutic agents to solid tumours.
机译:细胞外囊泡(EVs)是天然存在的货物递送囊泡,最近由于它们在许多生理和病理学过程(包括肿瘤形成)中在细胞间通讯中的作用而受到了广泛的关注。由不同组织产生的电动汽车表现出特定的归巢:特别是,源自癌症的电动汽车对囊泡起源的肿瘤组织表现出选择性的向性。出于这种特性,电动汽车已被提议作为抗癌疗法的药物输送工具,尽管对其体内趋向性的了解有限,但阻碍了其治疗应用。当前的研究旨在通过使用成像方法来表征癌症衍生的电动汽车的体外靶向特性及其在体内的生物分布。方法:EV产生于:i)鼠肺癌(LL / 2)和结肠癌(MC-38)癌症系,ii)人肺癌细胞系(A549)和iii)健康人的肝活检样品。电动汽车单独装有荧光染料,或与生物药物,溶瘤腺病毒(OV)结合使用,其特征在于电荷和大小,并测试了它们在癌细胞系中的活性。最后,光学成像被广泛应用于体内和离体研究电动汽车的生物分布,这些电动汽车源自不同来源的癌症小鼠模型,包括异种移植,同基因移植和MMTV-NeuT转基因动物。结果:我们最初证明,即使使用大型生物药物溶瘤病毒(OVs)加载电动车也不会显着改变其电荷和尺寸特性,而与单独使用病毒或电动车相比,其抗肿瘤活性却更高。有趣的是,即使将源自肺癌的EV应用于结肠癌细胞系,也观察到了这种活性,反之亦然,这表明在体外对EV的摄取没有针对囊泡所起源的癌细胞的特异性。当静脉内(静脉内)对癌症的小鼠模型给药时,肿瘤来源的电动汽车(而不是源自健康组织的电动汽车)在注射后24小时显示出荧光在肿瘤部位的选择性蓄积。在制剂中添加OVs也不会在体内改变EV的肿瘤特异性嗜性。最有趣的是,体内实验证实了对任何肿瘤组织的肿瘤衍生电动汽车的广义趋向性的体外观察,而与肿瘤的类型甚至囊泡的种类无关。结论:综上所述,我们的体外和体内数据首次证明了针对癌症衍生电动车的异源,跨物种肿瘤趋向性。这一发现挑战了我们目前对电动汽车归位特性的看法,并为选择性地将诊断/治疗剂递送至实体瘤开辟了新途径。

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