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Magnetic vesicles as MRI-trackable biogenic nanovectors

机译:磁泡作为MRI可追踪的生物纳米载体

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Magnetic labeling renders cells MRI-detectable which provides attractive solutions for tracking the fate of a transplanted cell population. Understanding the interplay of magnetic nanoparticles and cells is then an important point that should not be neglected. Here we show that in the condition of food starvation, macrophage cells emit vesicles containing nanoparticles. First, we inferred the intracellular iron oxide load from the magnetophoretic velocity of cells at a calibrated magnetic field gradient. After magnetic labeling and culture in stress conditions, the intracellular iron oxide load was once more determined and a detectable difference was observed before and after stress. Moreover, we identified in the stress conditioned medium membrane vesicle structures carrying magnetic particles. Besides pointing out the role of cell-derived vesicles in the sequestration of the intracellular magnetic label, experiments also demonstrated that vesicles were able to chaperone the magnetic cargo into naive cells.
机译:磁性标记使细胞可以进行MRI检测,从而为跟踪移植细胞的命运提供了有吸引力的解决方案。因此,了解磁性纳米颗粒和细胞之间的相互作用是一个不容忽视的重要观点。在这里,我们表明在食物饥饿的情况下,巨噬细胞会释放出含有纳米颗粒的囊泡。首先,我们根据校准磁场梯度下细胞的磁致速度来推断细胞内氧化铁的负荷。在应激条件下进行磁性标记和培养后,再次测定细胞内氧化铁负荷,并观察到应激前后的可检测差异。此外,我们在应力条件下确定了带有磁性颗粒的中等膜囊泡结构。除了指出细胞源性囊泡在隔离细胞内磁性标记中的作用外,实验还证明了囊泡能够将磁性货物伴侣化为天然细胞。

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