Biodegradable functionalized magnetite nanoparticles as binary-targeting carrier for breast carcinoma

Author:

Akl Magda Ali,Kamel Amira Mostafa,El-Ghaffar Mahmoud Ahmed Abd

Abstract

AbstractIn this study, Superparamagnetic magnetite nanoparticles (SPMNPs) are used in a new way as direct nanocarrier for Doxorubicin hydrochloride (DOX) via the functionalization of their surface with tri-sodium citrate through ligand exchange to conjugate DOX with imine bond to form tri-sodium citrate functionalized magnetite loaded DOX nanoparticles (DOX/Cit-MNPs). The DOX/Cit-MNPs were coated with chitosan to form chitosan coated citrate functionalized magnetite loaded DOX nanoparticles (Cs/DOX/Cit-MNPs) to offer biodegradability and pH-sensitive drug release features. The Fourier transform infrared spectroscopy (FTIR) analysis confirmed functionalization of SPMNPs, DOX-conjugation, and chitosan coating. The trans electron microscopy (TEM) show spherical nanostructures with average size 40 nm for coated nanocarriers. The saturation magnetization value of carrier was 59 emu/g.The in-vitro release of DOX from the chitosan coated tri-sodium citrate functionalized magnetite loaded DOX nanoparticles (Cs/DOX/Cit-MNPs) was studied to be 75% at pH 5.5 and 28.6% at pH 7.4 which proves the pH sensitivity of encapsulated Cs/DOX/Cit-MNPs. The effect of Cs/DOX/Cit-MNPs toward Human Breast Cancer Cell lines (MCF7) was studied and found to be 76% without magnet and 98% with external magnet after 72 h. With increasing DOX concentration and treatment time, the cell inhibition (IR%) of DOX solution and Cs/DOX-Cit-MNPs suspension to all cells is increased. Cs/DOX/Cit-MNPs showed sustained release and good inhibition to cancer cells and offer a protective mode for normal cells (WISH) compared to the free DOX. Graphical Abstract

Funder

Mansoura University

Publisher

Springer Science and Business Media LLC

Subject

General Chemistry

Reference75 articles.

1. Siegel RL, Miller KD, Jemal A. Cancer statistics, 2015. CA Cancer J Clin. 2015;65(1):5–29.

2. Canadian-Cancer-Statistics-2015-EN.pdf [Internet]. [Cited 2015 Nov 15]. Available from: https://www.cancer.ca/~/media/cancer.ca/CW/cancerinformation/s/Canadian-Cancer-Statistics-2015-EN.pdf.

3. Treatments and Side Effects|American Cancer Society [Internet]. [cited 2015 Dec Available from: http://www.cancer.org/treatment/treatmentsandsideeffects.

4. Ghanbari M, Asadi A, Rostamzadeh S. Study of the cytotoxicity effect of doxorubicin-loaded/folic acid-targeted super paramagnetic iron oxide nanoparticles on AGS cancer cell line. J Nanomed Nanotechnol. 2016;7(368):2.

5. Munnier E, Cohen-Jonathan S, Herve K, Linassier C, Souce M, Dubois P, Chourpa I. Doxorubicin delivered to MCF-7 cancer cells by superparamagnetic iron oxide nanoparticles: effects on subcellular distribution and cytotoxicity. J Nanoparticle Res. 2011;13(3):959–71.

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