Literature DB >> 18514212

Dual-stimuli responsive PNiPAM microgel achieved via layer-by-layer assembly: magnetic and thermoresponsive.

John E Wong1, Akhilesh K Gaharwar, Detlef Müller-Schulte, Dhirendra Bahadur, Walter Richtering.   

Abstract

We describe the synthesis, characterisation and surface-modification of magnetic nanoparticles and a poly(N-isopropylacrylamide) microgel, followed by the assembly and characterisation of magnetic nanoparticles on the microgel. To facilitate this deposition, the surface of the microgel is first modified via the layer-by-layer assembly of polyelectrolytes. One advantage of this concept is that it allows an independent optimization and fine tuning of the magnetic and thermoresponsive properties of individual components (nanoparticles and microgels) before assembling them so that the hybrid core-shell structure retains all the individual properties. The decisive parameter when exploiting the thermoresponsive and magnetic properties in such hybrid core-shell structures is the amount of heat transfer from the magnetic core onto the thermosensitive (loaded) microgel (for the subsequent heat-triggered release of drugs). Inductive heat study reveals that the heat generated by the magnetic nanoparticles is sufficient to cause the collapse of the microgel above its volume phase transition temperature. Successful confinement of positively and negatively charged magnetic nanoparticles between polyelectrolyte layers is achieved using the layer-by-layer deposition onto the microgel. Dynamic light scattering measurements show (i) the presence of each layer successfully deposited, (ii) the preservation of thermoresponsivity in the coated microgel, and (iii) that the magnetic nanoparticles do not get detached during the phase transition of the microgel. Electrophoresis measurements confirm charge reversal at every stage of layering of polycations, polyanions and magnetic nanoparticles. This unique combination of thermoresponsivity and magnetism opens up novel perspectives towards remotely controlled drug carriers.

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Year:  2008        PMID: 18514212     DOI: 10.1016/j.jcis.2008.05.024

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


  9 in total

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Review 2.  Nanogels as pharmaceutical carriers: finite networks of infinite capabilities.

Authors:  Alexander V Kabanov; Serguei V Vinogradov
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3.  Alternating Magnetic Field-Responsive Hybrid Gelatin Microgels for Controlled Drug Release.

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4.  Multi-Layered Films Containing a Biomimetic Stimuli-Responsive Recombinant Protein.

Authors:  J S Barbosa; R R Costa; A M Testera; M Alonso; J C Rodríguez-Cabello; J F Mano
Journal:  Nanoscale Res Lett       Date:  2009-07-16       Impact factor: 4.703

5.  In situ cross-linking of stimuli-responsive hemicellulose microgels during spray drying.

Authors:  Weifeng Zhao; Robertus Wahyu N Nugroho; Karin Odelius; Ulrica Edlund; Changsheng Zhao; Ann-Christine Albertsson
Journal:  ACS Appl Mater Interfaces       Date:  2015-02-09       Impact factor: 9.229

Review 6.  Charge-reversal nanoparticles: novel targeted drug delivery carriers.

Authors:  Xinli Chen; Lisha Liu; Chen Jiang
Journal:  Acta Pharm Sin B       Date:  2016-06-08       Impact factor: 11.413

Review 7.  Nanoengineered thermoresponsive magnetic hydrogels for biomedical applications.

Authors:  Nima A Jalili; Madyson Muscarello; Akhilesh K Gaharwar
Journal:  Bioeng Transl Med       Date:  2016-10-17

8.  Computational studies on the molecular insights of aptamer induced poly(N-isopropylacrylamide)-graft-graphene oxide for on/off- switchable whole-cell cancer diagnostics.

Authors:  Athika Darumas Putri; Bayu Tri Murti; Suvardhan Kanchi; Myalowenkosi I Sabela; Krishna Bisetty; Ashutosh Tiwari; Abdullah M Asiri
Journal:  Sci Rep       Date:  2019-05-27       Impact factor: 4.379

9.  Fabrication of a novel core-shell-shell temperature-sensitive magnetic composite with excellent performance for papain adsorption.

Authors:  Pengfei Chen; Shun Yao; Dongmei Zheng; Zhiyuan Xu; Jinling Yu; Tingting Liang
Journal:  RSC Adv       Date:  2021-07-16       Impact factor: 4.036

  9 in total

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