Glutamic acid-coated Fe 3 O 4 nanoparticles for tumor-targeted imaging and therapeutics

We have developed surface functionalised Fe O magnetic nanoparticles (MNPs) based system that can be used for tumor-targeted multimodal therapies and MR imaging. Biocompatible, non-essential amino acid (glutamic acid) was introduced onto the surface of Fe O MNPs to provide functional sites for bindi...

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Veröffentlicht in:Materials science & engineering. C, Materials for biological applications Materials for biological applications, 2020-07, Vol.112, p.110915
Hauptverfasser: Dutta, Bijaideep, Nema, Anshika, Shetake, Neena G, Gupta, Jagriti, Barick, K C, Lawande, Malini A, Pandey, B N, Priyadarsini, Indira K, Hassan, P A
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Sprache:eng
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Zusammenfassung:We have developed surface functionalised Fe O magnetic nanoparticles (MNPs) based system that can be used for tumor-targeted multimodal therapies and MR imaging. Biocompatible, non-essential amino acid (glutamic acid) was introduced onto the surface of Fe O MNPs to provide functional sites for binding of chemotherapeutic drugs. These glutamic acid-coated Fe O MNPs (GAMNPs) exhibit good water-dispersibility, magnetic responsivity and pH dependent charge conversal feature. The magnetic core as well as organic shell of GAMNPs was characterized by XRD, TEM, DLS, FTIR, PPMS and UV-visible spectroscopy and zeta-potential analyzer etc. The broad spectrum anticancer drugs, doxorubicin hydrochloride (DOX) and methotrexate (MTX) were electrostatically and covalently conjugated to the surface of GAMNPs, respectively for combination chemotherapy. These dual drugs loaded system (DOX-MTX-GAMNPs) shows pH dependent release behaviour of both the drugs and enhanced toxicity towards breast cancer cell line (MCF-7) as compared to their individual treatment. Fluorescence microscopy and flow cytometric analyses confirmed the successful uptake of drug loaded system into MCF-7 cell lines. Further MTX being analogue of folic acid, its co-delivery with DOX would help in internalization of both the drugs into MCF-7 cells. These GAMNPs also show good heating efficiency under AC magnetic field (Intrinsic loss power, ILP = 0.95 and 0.73 and 0.48 nHm /Kg at Fe concentration of 0.5, 1 and 2 mg/ml, respectively) and transverse relaxivity (r  = 152 mM  s ) indicating their potential capability for hyperthermia therapy and MRI tracking. Furthermore, it has been observed that the combination of chemotherapeutic drugs and hyperthermia leads to an enhancement of cytotoxicity in MCF-7 cells.
ISSN:1873-0191
DOI:10.1016/j.msec.2020.110915