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High-Yield, Magnetic Harvesting of Extracellular Outer-Membrane Vesicles from Escherichia coli. | LitMetric

High-Yield, Magnetic Harvesting of Extracellular Outer-Membrane Vesicles from Escherichia coli.

Small

Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices, Soochow University, 199 Ren'ai Rd, Suzhou, Jiangsu, 215123, P. R. China.

Published: December 2022

AI Article Synopsis

  • Extracellular outer-membrane vesicles (OMVs) from E. coli may be useful as drug nanocarriers due to their biocompatibility and cell entry ability, but low yields hinder their use.
  • A new method for harvesting OMVs using magnetic iron-oxide nanoparticles (MNPs) significantly increases yields, especially when MNPs are PEGylated, enhancing their uptake and secretion in E. coli.
  • Magnetically-harvested OMVs can be effectively targeted to specific locations in the human body and penetrate deeper into infectious biofilms compared to OMVs collected with traditional ultracentrifugation methods.

Article Abstract

Extracellular outer-membrane vesicles (OMVs) are attractive for use as drug nanocarriers, because of their high biocompatibility and ability to enter cells. However, widespread use is hampered by low yields. Here, a high-yield method for magnetic harvesting of OMVs from Escherichia coli is described. To this end, E. coli are grown in the presence of magnetic iron-oxide nanoparticles (MNPs). Uptake of MNPs by E. coli is low and does not increase secretion of OMVs. Uptake of MNPs can be enhanced through PEGylation of MNPs. E. coli growth in the presence of PEGylated MNPs increases bacterial MNP-uptake and OMV-secretion, accompanied by upregulation of genes involved in OMV-secretion. OMVs containing MNPs can be magnetically harvested at 60-fold higher yields than achieved by ultracentrifugation. Functionally, magnetically-harvested OMVs and OMVs harvested by ultracentrifugation are both taken-up in similar numbers by bacteria. Uniquely, in an applied magnetic field, magnetically-harvested OMVs with MNPs accumulate over the entire depth of an infectious biofilm. OMVs harvested by ultracentrifugation without MNPs only accumulate near the biofilm surface. In conclusion, PEGylation of MNPs is essential for their uptake in E. coli and yields magnetic OMVs allowing high-yield magnetic-harvesting. Moreover, magnetic OMVs can be magnetically targeted to a cargo delivery site in the human body.

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Source
http://dx.doi.org/10.1002/smll.202204350DOI Listing

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