Literature DB >> 32209489

Alternating magnetic field mediated release of fluorophores from magnetic nanoparticles by hysteretic heating.

Jonathan S Casey1, Julien H Arrizabalaga1, Mohammad Abu-Laban2, Jeffrey C Becca3, Benjamin J Rose1, Kevin T Strickland1, Jacob B Bursavich4, Jacob S McCann5, Carlos N Pacheco6, Lasse Jensen3, Anilchandra Attaluri7, Daniel J Hayes8.   

Abstract

This study explores the use of differential heating of magnetic nanoparticles with different sizes and compositions (MFe2O4 (M = Fe, Co)) for heteroplexed temporal controlled release of conjugated fluorophores from the surface of nanoparticles. By exploiting these differences, we were able to control the amount of hysteretic heating occurring with the distinct sets of magnetic nanoparticles using the same applied alternating magnetic field radio frequency (AMF-RF). Using thermally labile retro-Diels-Alder linkers conjugated to the surface of nanoparticles, the fluorescent payload from the different nanoparticles disengaged when sufficient energy was locally generated during hysteretic heating. 1H, 13C NMR, ESI-MS, and SIMS characterized the thermally responsive fluorescent cycloadducts used in this study; the Diels Alder cycloadducts were modeled using density functional theory (DFT) computations. The localized point heating of the different nanoparticle compositions drove the retro-Diels-Alder reaction at different times resulting in higher release rates of fluorophores from the CoFe2O4 compared to the Fe3O4 nanoparticles.
Copyright © 2020 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Alternating magnetic field; Controlled release; Diels-Alder; Iron oxide; Magnetic; Nanoparticles

Year:  2020        PMID: 32209489      PMCID: PMC7570445          DOI: 10.1016/j.jcis.2020.03.056

Source DB:  PubMed          Journal:  J Colloid Interface Sci        ISSN: 0021-9797            Impact factor:   8.128


  18 in total

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Authors:  Ningzhong Bao; Liming Shen; Yuhsiang Wang; Prahallad Padhan; Arunava Gupta
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2.  Functional iron oxide magnetic nanoparticles with hyperthermia-induced drug release ability by using a combination of orthogonal click reactions.

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Journal:  ACS Nano       Date:  2013-09-12       Impact factor: 15.881

4.  A new dynamic in mass spectral imaging of single biological cells.

Authors:  John S Fletcher; Sadia Rabbani; Alex Henderson; Paul Blenkinsopp; Steve P Thompson; Nicholas P Lockyer; John C Vickerman
Journal:  Anal Chem       Date:  2008-12-01       Impact factor: 6.986

5.  Development of the Colle-Salvetti correlation-energy formula into a functional of the electron density.

Authors: 
Journal:  Phys Rev B Condens Matter       Date:  1988-01-15

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Authors:  Daniel Bobo; Kye J Robinson; Jiaul Islam; Kristofer J Thurecht; Simon R Corrie
Journal:  Pharm Res       Date:  2016-06-14       Impact factor: 4.200

7.  Comparison of thermally actuated retro-diels-alder release groups for nanoparticle based nucleic acid delivery.

Authors:  Mohammad Abu-Laban; Raju R Kumal; Jonathan Casey; Jeff Becca; Daniel LaMaster; Carlos N Pacheco; Dan G Sykes; Lasse Jensen; Louis H Haber; Daniel J Hayes
Journal:  J Colloid Interface Sci       Date:  2018-04-24       Impact factor: 8.128

8.  Dopamine as a robust anchor to immobilize functional molecules on the iron oxide shell of magnetic nanoparticles.

Authors:  Chenjie Xu; Keming Xu; Hongwei Gu; Rongkun Zheng; Hui Liu; Xixiang Zhang; Zhihong Guo; Bing Xu
Journal:  J Am Chem Soc       Date:  2004-08-18       Impact factor: 15.419

9.  Multifunctional magnetic nanoparticles for synergistic enhancement of cancer treatment by combinatorial radio frequency thermolysis and drug delivery.

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Journal:  Adv Healthc Mater       Date:  2012-06-04       Impact factor: 9.933

Review 10.  Tuning the magnetic properties of nanoparticles.

Authors:  Arati G Kolhatkar; Andrew C Jamison; Dmitri Litvinov; Richard C Willson; T Randall Lee
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  1 in total

1.  Reversible Diels-Alder Reactions with a Fluorescent Dye on the Surface of Magnetite Nanoparticles.

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Journal:  Molecules       Date:  2021-02-07       Impact factor: 4.411

  1 in total

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