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Sensing the delivery and endocytosis of nanoparticles using magneto-photo-acoustic imaging

机译:使用磁光声成像感知纳米颗粒的递送和内吞

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Many biomedical applications necessitate a targeted intracellular delivery of the nanomaterial to specific cells. Therefore, a non-invasive and reliable imaging tool is required to detect both the delivery and cellular endocytosis of the nanoparticles. Herein, we demonstrate that magneto-photo-acoustic (MPA) imaging can be used to monitor the delivery and to identify endocytosis of magnetic and optically absorbing nanoparticles. The relationship between photoacoustic (PA) and magneto-motive ultrasound (MMUS) signals from the in vitro samples were analyzed to identify the delivery and endocytosis of nanoparticles. The results indicated that during the delivery of nanoparticles to the vicinity of the cells, both PA and MMUS signals are almost linearly proportional. However, accumulation of nanoparticles within the cells leads to nonlinear MMUS-PA relationship, due to non-linear MMUS signal amplification. Therefore, through longitudinal MPA imaging, it is possible to monitor the delivery of nanoparticles and identify the endocytosis of the nanoparticles by living cells.
机译:许多生物医学应用需要将纳米材料定向地细胞内递送至特定细胞。因此,需要非侵入性和可靠的成像工具来检测纳米颗粒的递送和细胞内吞作用。在这里,我们证明了磁光声(MPA)成像可用于监视传递和识别磁性和光学吸收纳米粒子的内吞作用。分析了来自体外样品的光声(PA)和磁动超声(MMUS)信号之间的关系,以确定纳米颗粒的递送和内吞作用。结果表明,在将纳米颗粒递送到细胞附近的过程中,PA和MMUS信号几乎都成线性比例。然而,由于非线性MMUS信号放大,细胞内纳米颗粒的积累导致非线性MMUS-PA关系。因此,通过纵向MPA成像,可以监控纳米颗粒的递送并确定纳米颗粒被活细胞的内吞作用。

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