4.6 Article

Thermoresponsive polymer gated and superparamagnetic nanoparticle embedded hollow mesoporous silica nanoparticles as smart multifunctional nanocarrier for targeted and controlled delivery of doxorubicin

Journal

NANOTECHNOLOGY
Volume 31, Issue 45, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1361-6528/ab8b0e

Keywords

HmSiO(2); Fe3O4; thermoresponsive; drug delivery; superparamagnetic

Funding

  1. UGC, India, through the MANF fellowship [2014-15/MANF-2014-15-MUS-BIH-42040]
  2. UGC-Dr D.S. Kothari Post Doctoral Fellowship [F.4-2/2006 (BSR)/BL/17-18/0307]
  3. FIST

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The design and development of drug-delivery nanocarriers with high loading capacity, excellent biocompatibility, targeting ability and controllability have been the ultimate goal of the biomedical research community. In this work, we have reported the synthesis and characterization of novel and smart thermoresponsive polymer coated and Fe(3)O(4)embedded hollow mesoporous silica (HmSiO(2)) based multifunctional superparamagnetic nanocarriers for the delivery of doxorubicin (Dox) for cancer treatment. P(NIPAM-MAm) coated and Fe(3)O(4)nanoparticle (NP) embedded hollow mesoporous silica nanocomposite (HmSiO(2)-F-P(NIPAM-MAm)) was prepared by thein situpolymerization of NIPAM and MAm monomers on the surface of hollow mesoporous silica NPs (HmSiO(2)) in the presence of Fe(3)O(4)NPs, oxidizer and crosslinker. TEM analysis showed nearly spherical morphology of HmSiO(2)-F-P(NIPAM-MAm) nanocarrier with a diameter in the range of 100-300 nm. The coating of P(NIPAM-MAm) layer and embedding of Fe(3)O(4)NPs on the surface of the HmSiO(2)NPs was revealed by HRTEM analysis. XRD and FTIR analysis also confirmed the presence of P(NIPAM-MAm) shells and Fe(3)O(4)NPs on hollow mesoporous silica NPs. VSM analysis suggested the superparamagnetic nature of HmSiO(2)-F-P(NIPAM-MAm) nanocarrier. DSC analysis of HmSiO(2)-F-P(NIPAM-MAm) nanocarrier showed a phase transition at the temperature of similar to 38 degrees C. The prepared HmSiO(2)-F-P(NIPAM-MAm) nanocarrier was investigated for its suitability for drug-delivery application using doxorubicin as the model drug by anin vitromethod. The encapsulation efficiency and encapsulation capacity were found to be 95% and 6.8%, respectively. HmSiO(2)-F-P(NIPAM-MAm)-Dox has shown a pH and temperature-dependent Dox release profile. A relatively faster release of Dox from the nanocarrier was observed at temperature above the lower critical solution temperature (LCST) than below the LCST. HmSiO(2)-F-P(NIPAM-MAm) nanocarrier was found to be biocompatible in nature.In vitrocytotoxicity studies against Hela cells suggested that the HmSiO(2)-F-P(NIPAM-MAm)-Dox nanocomposite nanocarrier has good anticancer activity.In vitrocellular uptake study of HmSiO(2)-F-P(NIPAM-MAm)-Dox nanocomposite nanocarrier demonstrated its good internalisation ability into Hela cells. Thus, the prepared nanocomposites show potential as nanocarrier for targeted and controlled drug delivery for cancer treatment.

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