4.8 Article

A High-Throughput Nanofluidic Device for Exosome Nanoporation to Develop Cargo Delivery Vehicles

Journal

SMALL
Volume 17, Issue 35, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202102150

Keywords

cargo delivery; exosomes; microfluidics; nanofluidics; vehicles

Funding

  1. National Natural Science Foundation of China (NSFC) [61805271, 62074155]
  2. Key-Area Research and Development Program of Guangdong Province [2019B020226004]
  3. Shenzhen Science and Technology Innovation Commission [JCYJ20170818154035069, KCXFZ202002011008124]

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The ENP is a nanofluidic device designed for efficient loading of various cargos into exosomes without compromising their integrity. The device operates by transporting exosomes through nanochannels, allowing cargo molecules to permeate into the exosomes while maintaining their integrity.
Efficient loading of various exogenous cargos into exosomes while not affecting their integrity and functionalities remains a major challenge. Here, a nanofluidic device named exosome nanoporator (ENP) is presented for high-throughput loading of various cargos into exosomes. By transporting exosomes through nanochannels with height comparable to their dimension, exosome membranes are permeabilized by mechanical compression and fluid shear, allowing the influx of cargo molecules into the exosomes from the surrounding solution while maintaining exosome integrity. The ENP consisting of an array of 30 000 nanochannels demonstrates a high sample throughput, and the working mechanism of the device is elucidated through experimental and numerical study. Further, the exosomes treated by the ENP can deliver their drug cargos to human non-small cell lung cancer cells and induce cell death, indicating the potential opportunities of the device for developing new exosome-based delivery vehicles for medical and biological applications.

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