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首页> 外文期刊>Scientific reports. >A low voltage nanopipette dielectrophoretic device for rapid entrapment of nanoparticles and exosomes extracted from plasma of healthy donors
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A low voltage nanopipette dielectrophoretic device for rapid entrapment of nanoparticles and exosomes extracted from plasma of healthy donors

机译:一种低压纳米纤维电泳装置,用于快速捕获纳米颗粒和鼻子的血浆中血浆中的血浆

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An insulator-based dielectrophoresis (iDEP) is a label-free method that has been extensively utilized for manipulation of nanoparticles, cells, and biomolecules. Here, we present a new iDEP approach that can rapidly trap nanoparticles at the close proximity of a glass nanopipette’s tip by applying 10?V/cm direct current (DC) across the pipette’s length. The trapping mechanism was systemically studied using both numerical modeling and experimental observations. The results showed that the particle trapping was determined to be controlled by three dominant electrokinetic forces including dielectrophoretic, electrophoretic and electroosmotic force. Furthermore, the effect of the ionic strength, the pipette’s geometry, and the applied electric field on the entrapment efficiency was investigated. To show the application of our device in biomedical sciences, we demonstrated the successful entrapment of fluorescently tagged liposomes and unlabeled plasma-driven exosomes from the PBS solution. Also, to illustrate the selective entrapment capability of our device, 100?nm liposomes were extracted from the PBS solution containing 500?nm polystyrene particles at the tip of the pipette as the voltage polarity was reversed.
机译:基于绝缘体的介电电泳(IDEP)是一种无标记的方法,其已被广泛用于操纵纳米颗粒,细胞和生物分子。这里,我们提出了一种新的IDEP方法,可以通过在移液管的长度上施加10μmv/ cm直流(DC)来快速捕获玻璃纳米纤维尖端的近距离的纳米颗粒。使用数值建模和实验观察来系统地研究捕获机制。结果表明,确定颗粒捕获由三种主电泳,电泳和电渗力的三种显性电动力控制。此外,研究了离子强度,移液管几何形状和施加的电场对熵效率的影响。为了展示我们在生物医学科学中的装置的应用,我们证明了从PBS溶液中成功夹住荧光标记的脂质体和未标记的等离子体驱动的外泌体。另外,为了说明我们的装置的选择性夹带能力,从含有500·NM聚苯乙烯颗粒的PBS溶液中萃取100μl脂质体,因为电压极性反转。

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