Magnetic Nanoprobes for Spatio-Mechanical Manipulation in Single Cells

Author:

Novoselova Iuliia P.ORCID,Neusch AndreasORCID,Brand Julia-Sarita,Otten Marius,Safari Mohammad Reza,Bartels Nina,Karg MatthiasORCID,Farle MichaelORCID,Wiedwald UlfORCID,Monzel CorneliaORCID

Abstract

Magnetic nanoparticles (MNPs) are widely known as valuable agents for biomedical applications. Recently, MNPs were further suggested to be used for a remote and non-invasive manipulation, where their spatial redistribution or force response in a magnetic field provides a fine-tunable stimulus to a cell. Here, we investigated the properties of two different MNPs and assessed their suitability for spatio-mechanical manipulations: semisynthetic magnetoferritin nanoparticles and fully synthetic ‘nanoflower’-shaped iron oxide nanoparticles. As well as confirming their monodispersity in terms of structure, surface potential, and magnetic response, we monitored the MNP performance in a living cell environment using fluorescence microscopy and asserted their biocompatibility. We then demonstrated facilitated spatial redistribution of magnetoferritin compared to ‘nanoflower’-NPs after microinjection, and a higher magnetic force response of these NPs compared to magnetoferritin inside a cell. Our remote manipulation assays present these tailored magnetic materials as suitable agents for applications in magnetogenetics, biomedicine, or nanomaterial research.

Funder

Volkswagen Foundation

Deutsche Forschungsgemeinschaft

Fonds der Chemischen Industrie

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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