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A Closed System for Pico-Liter Order Substance Transport from a Giant Liposome to a Cell

机译:一个封闭的系统用于从巨型脂质体到细胞的微升级物质运输。

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摘要

In single cell analysis, transport of foreign substances into a cell is an important technique. In particular, for accurate analysis, a method to transport a small amount (pico-liter order) of substance into the cell without leakage while retaining the cell shape is essential. Because the fusion of the cell and the giant liposome is a closed system to the outside, it may be possible to transport a precise, small amount of substances into the cell. Additionally, there is no possibility that a leaked substance would affect other systems. To develop the liposome-cell transportation system, knowledge about the behavior of substances in the liposome and the cell is important. However, only a few studies have observed the substance transport between a liposome and a cell. Here, we report observation of small amount of substance transport into a single C2C12 cell by using a giant liposome. Substance transport occurred by electrofusion between the cell and the giant liposome containing the substance, which is a closed system. First, to observe the electrofusion and substance transport from the moment of voltage application, we fabricated a microfluidic device equipped with electrodes. We introduced suspensions of cells and liposomes into the microfluidic device and applied alternating current (AC) and direct current (DC) voltages for electrofusion. We observed a small amount (22.4 ± 0.1%, 10.3 ± 0.4% and 9.1 ± 0.1%) of fluorescent substance (Calcein) contained in the liposomes was transported into the cell without leakage outside the cell, and we obtained the diffusion coefficient of Calcein in the cell as 137 ± 18 μm2/s. We anticipate that this system and the knowledge acquired will contribute to future realization of more accurate single cell analysis in a wide range of fields.
机译:在单细胞分析中,将异物转运到细胞中是一项重要技术。尤其是,为了进行准确的分析,必不可少的是在保持细胞形状的同时将少量物质(皮升级)运输到细胞中而不会泄漏的方法。因为细胞和巨型脂质体的融合是一个外部的封闭系统,所以有可能将精确的少量物质转运到细胞中。此外,泄漏的物质也不可能影响其他系统。为了开发脂质体-细胞转运系统,关于脂质体和细胞中物质行为的知识很重要。但是,只有很少的研究观察到了脂质体和细胞之间的物质运输。在这里,我们报告使用巨型脂质体观察到少量物质转运到单个C2C12细胞中的现象。物质运输是通过细胞与含有该物质的巨大脂质体之间的电融合而发生的,这是一个封闭的系统。首先,为了观察施加电压后的电融合和物质传输,我们制造了配备电极的微流体装置。我们将细胞和脂质体的悬浮液引入微流控设备,并施加交流(AC)和直流(DC)电压进行电融合。我们观察到脂质体中所含的少量荧光物质(钙黄绿素)(22.4±0.1%,10.3±0.4%和9.1±0.1%)被运输到细胞中而没有泄漏到细胞外,我们获得了钙黄绿素的扩散系数电池中的电势为137±18μm 2 / s。我们预计该系统和所获得的知识将有助于将来在广泛领域中实现更准确的单细胞分析。

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