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通过微电泳技术实现量子点的细胞质内递送。

Cytoplasmic delivery of quantum dots via microelectrophoresis technique.

机构信息

School of Physical Sciences, Institute for Photonics and Advanced Sensing (IPAS), The University of Adelaide, Adelaide, Australia.

ARC Centre of Excellence for Nanoscale BioPhotonics (CNBP), The University of Adelaide, Adelaide, Australia.

出版信息

Electrophoresis. 2021 Jun;42(11):1247-1254. doi: 10.1002/elps.202000388. Epub 2021 Mar 11.

Abstract

Nanoparticles with specific properties and functions have been developed for various biomedical research applications, such as in vivo and in vitro sensors, imaging agents and delivery vehicles of therapeutics. The development of an effective delivery method of nanoparticles into the intracellular environment is challenging and success in this endeavor would be beneficial to many biological studies. Here, the well-established microelectrophoresis technique was applied for the first time to deliver nanoparticles into living cells. An optimal protocol was explored to prepare semiconductive quantum dots suspensions having high monodispersity with average hydrodynamic diameter of 13.2-35.0 nm. Micropipettes were fabricated to have inner tip diameters of approximately 200 nm that are larger than quantum dots for ejection but less than 500 nm to minimize damage to the cell membrane. We demonstrated the successful delivery of quantum dots via small electrical currents (-0.2 nA) through micropipettes into the cytoplasm of living human embryonic kidney cells (roughly 20-30 μm in length) using microelectrophoresis technique. This method is promising as a simple and general strategy for delivering a variety of nanoparticles into the cellular environment.

摘要

已经开发出具有特定性质和功能的纳米粒子,用于各种生物医学研究应用,例如体内和体外传感器、成像剂以及治疗药物的输送载体。将纳米粒子有效地递送到细胞内环境是具有挑战性的,而在这方面的成功将有益于许多生物学研究。在这里,我们首次应用成熟的微电泳技术将纳米粒子递送到活细胞中。我们探索了一种优化的方案来制备具有高单分散性的半导体量子点悬浮液,其平均水动力直径为 13.2-35.0nm。我们制造了微管,其内径约为 200nm,大于用于射出的量子点,但小于 500nm,以最大程度地减少对细胞膜的损伤。我们使用微电泳技术,通过微管中的小电流(-0.2nA)将量子点成功递送到活的人胚肾细胞(长度约为 20-30μm)的细胞质中。这种方法有望成为将各种纳米粒子递送到细胞环境中的一种简单而通用的策略。

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