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Magnetic nanoparticles for "smart liposomes"

journal contribution
posted on 2024-11-16, 09:27 authored by Yoshitaka Nakayama, Mislav Mustapic, Haleh Ebrahimian, Pawel WagnerPawel Wagner, Jung Ho KimJung Ho Kim, Md Shahriar Hossain, Josip HorvatJosip Horvat, Boris Martinac
Liposomal drug delivery systems (LDDSs) are promising tools used for the treatment of diseases where highly toxic pharmacological agents are administered. Currently, destabilising LDDSs by a specific stimulus at a target site remains a major challenge. The bacterial mechanosensitive channel of large conductance (MscL) presents an excellent candidate biomolecule that could be employed as a remotely controlled pore-forming nanovalve for triggered drug release from LDDSs. In this study, we developed superparamagnetic nanoparticles for activation of the MscL nanovalves by magnetic field. Synthesised CoFe2O4 nanoparticles with the radius less than 10 nm were labelled by SH groups for attachment to MscL. Activation of MscL by magnetic field with the nanoparticles attached was examined by the patch clamp technique showing that the number of activated channels under ramp pressure increased upon application of the magnetic field. In addition, we have not observed any cytotoxicity of the nanoparticles in human cultured cells. Our study suggests the possibility of using magnetic nanoparticles as a specific trigger for activation of MscL nanovalves for drug release in LDDSs.

Funding

An aberration corrected analytical Transmission Electron Microscope for nanoscale characterisation of materials

Australian Research Council

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History

Citation

Nakayama, Y., Mustapic, M., Ebrahimian, H., Wagner, P., Kim, J., Hossain, M. Al., Horvat, J. & Martinac, B. (2015). Magnetic nanoparticles for “smart liposomes”. European Biophysics Journal, 44 (8), 647-654.

Journal title

European Biophysics Journal

Volume

44

Issue

8

Pagination

647-654

Language

English

RIS ID

101947

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