Article ID Journal Published Year Pages File Type
1798909 Journal of Magnetism and Magnetic Materials 2015 5 Pages PDF
Abstract

•Commercial ferrofluids were examined as magnetic particle hyperthermia candidates.•Results show an enhanced heating efficiency.•Heating efficiency can be tuned by field amplitude and hydrodynamic size of NPs.•Coating material seems to be a key parameter for the optimum thermal response.

In this work we examine a selection of commercially available magnetic iron oxide nanoparticles as candidates for magnetic particle hyperthermia applications combining their primary modality with additional heat triggered actions. Contrary to lab-made magnetic nanoparticles, commercial ferrofluids may be rapidly pushed through the medical approval processes since their applicability has already been addressed successfully (i.e., formulation, reproducibility, toxicity and quality assurance) in conjunction with the strong companies′ drive in the fast delivery of the new therapy to the patient. Four samples are under study with variable hydrodynamic diameters from two companies (Micromod and Chemicell) consisting of iron-oxide magnetic nanoparticles. The tunable magnetic heating characteristics of the ferrofluids were correlated with particle, field and colloidal solution features. Our work revealed a size-dependent magnetic heating efficiency together with fast thermal response, features that are crucial for adequate thermal efficiency combined with minimum treatment duration and show the potential of such materials as multifunctional theranostic agents.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Condensed Matter Physics
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