Journal of Encapsulation and Adsorption Sciences

Volume 3, Issue 4 (December 2013)

ISSN Print: 2161-4865   ISSN Online: 2161-4873

Google-based Impact Factor: 3  Citations  

In Vitro Studies of NIPAAM-MAA-VP Copolymer-Coated Magnetic Nanoparticles for Controlled Anticancer Drug Release*

HTML  Download Download as PDF (Size: 804KB)  PP. 108-115  
DOI: 10.4236/jeas.2013.34013    5,405 Downloads   9,086 Views  Citations

ABSTRACT

Thermosensetive poly(N-isopropylacrylamide)-based magnetic nanoparticles were synthesized by free radical polymerization of N-isopropylacrylamide (NIPPAMs), methacrylic acid (MAA), and vinyl pyrrolidone (VP) in the presence of methylene-bis-acrylamide as cross linking agent. The Fe3O4 magnetic nanoparticls were prepared by chemical precipitation of Fe salts in the ratio of 1:2 under alkaline and inert condition. Thermosensitive crosslinked P (NI-PAAM-MAA-VP) copolymers were characterized by FT-IR and H-NMR. The pH and thermosensitive copolymer was used for preparation of drug loaded magnetic nanoparticles, and doxorubicin (DOX) was used as a typical anticancer drug. The amount of the loaded drug and drug release amount were determined by UV measurements. Scanning electron microscopy (SEM) and lower critical solution temperature (LCST) were used to determine the particle surface morphology and the phase transition temperature of the nanoparticles respectively. The release behavior of DOX at pH = 7.4 and 37°C was studied. The result indicated that this thermosensetive magnetic nanoparticle has a high drug loading capacity and favorable linear release property for DOX without initial burst release. Thus this system is promising for the application in targeted smart anticancer drug delivery.

Share and Cite:

Davaran, S. , Akbarzadeh, A. , Nejati-Koshki, K. , Alimohammadi, S. , Farajpour Ghamari, M. , Mahmoudi Soghrati, M. , Rezaei, A. and Ahmad Khandaghi, A. (2013) In Vitro Studies of NIPAAM-MAA-VP Copolymer-Coated Magnetic Nanoparticles for Controlled Anticancer Drug Release*. Journal of Encapsulation and Adsorption Sciences, 3, 108-115. doi: 10.4236/jeas.2013.34013.

Cited by

[1] Magnetic precision: Unleashing the therapeutic potential of paclitaxel-loaded nanoparticles in breast cancer treatment
Oral Oncology Reports, 2024
[2] Magnetic nano-ferrites as targeted drug delivery system for the treatment of cancer
AIP Conference Proceedings, 2023
[3] Synthesis and characterization of chalcone based benzoxazine-magnetite nanocomposites
Chemical Papers, 2022
[4] Biogenic synthesis of ferrous (III) oxide and Fe3O4/SiO2 using Chlorella sp. and its adsorption properties of water contaminated with copper (II) ions
Bulletin of the Chemical …, 2022
[5] Quantum Dots: A New Hope for the Pharmaceutical Field
Journal of Drug …, 2022
[6] Advances in lung cancer treatment using nanomedicines
ACS …, 2022
[7] Nanoparticles and Nanomotors Modified by Nucleic Acids Aptamers for Targeted Drug Delivery
2021
[8] Constrained thermoresponsive polymers–new insights into fundamentals and applications
Beilstein Journal of …, 2021
[9] Conventional and hybrid nanoparticulate systems for the treatment of hepatocellular carcinoma: An updated review
Sherbiny - European Journal of Pharmaceutics and …, 2021
[10] A simple in situ synthesis of iron oxide magnetic nanoparticles embedded in thermosensitive polymer for DNA capture
2020
[11] A facile design of smart silica nanocarriers via surface-initiated RAFT polymerization as a dual-stimuli drug release platform
2019
[12] Light controlled metallo-drug delivery system based on the TiO2-nanoparticles and Ru-complex
Journal of Photochemistry and Photobiology A: Chemistry, 2017
[13] Enhancing cisplatin delivery to hepatocellular carcinoma HepG2 cells using dual sensitive smart nanocomposite
Journal of Environmental Science and Health, Part B, 2017
[14] Construction of polymer coated core–shell magnetic mesoporous silica nanoparticles with triple responsive drug delivery
Polymer Chemistry, 2017
[15] Magnetite‐functionalized graphene/poly (styrene‐butadiene‐styrene) composites: Thermal and mechanical properties
Polymer International, 2017
[16] Preparation and characterization of PLGA-β-CD polymeric nanoparticles containing methotrexate and evaluation of their effects on T47D cell line
Artificial cells, nanomedicine, and biotechnology, 2016
[17] Synthesis of magnetic particles with well-defined living polymeric chains via combination of RAFT polymerization and thiol-ene click chemistry
Journal of Polymer Research, 2016
[18] Synthesis, characterization, biocompatibility of hydroxyapatite–natural polymers nanocomposites for dentistry applications
Artificial cells, nanomedicine, and biotechnology, 2015
[19] Comparison, synthesis and evaluation of anticancer drug-loaded polymeric nanoparticles on breast cancer cell lines
Artificial cells, nanomedicine, and biotechnology, 2015
[20] Cisplatin release from dual-responsive magnetic nanocomposites
Artificial cells, nanomedicine, and biotechnology, 2015
[21] Immunology and vaccines and nanovaccines for Helicobacter pylori infection
Expert review of vaccines, 2015
[22] Biomedical and biological applications of quantum dots
Artificial Cells, Nanomedicine, and Biotechnology, 2015
[23] Magnetic nanoparticles: Applications in gene delivery and gene therapy
Artificial cells, nanomedicine, and biotechnology, 2015
[24] Magnetic nanoparticles as potential candidates for biomedical and biological applications
Artificial Cells, Nanomedicine, and Biotechnology, 2015
[25] PNIPAAm-MAA nanoparticles as delivery vehicles for curcumin against MCF-7 breast cancer cells
Artificial cells, nanomedicine, and biotechnology, 2015
[26] Curcumin inhibits leptin gene expression and secretion in breast cancer cells by estrogen receptors
Cancer Cell Int, 2014
[27] Trichostatin A-induced Apoptosis is mediated by Krüppel-like factor 4 in ovarian and lung cancer
Asian Pacific Journal of Cancer Prevention, 2014
[28] Trichostatin A-induced apoptosis is mediated by Kruppel-like factor 4 in ovarian and lung cancer
2014
[29] Comparison of inhibitory effect of 17-DMAG nanoparticles and free 17-DMAG in HSP90 gene expression in lung cancer.
2014
[30] Synthesis, characterization, biocompatibility of hydroxyapatite-natural polymers nanocomposites for dentistry applications
Artificial cells, nanomedicine, and biotechnology, 2014
[31] Intracellular ROS protection efficiency and free radical-scavenging activity of quercetin and quercetin-encapsulated liposomes
Artificial cells, nanomedicine, and biotechnology, 2014
[32] Application of gold nanoparticles in biomedical and drug delivery
Artificial cells, nanomedicine, and biotechnology, 2014
[33] Current methods for synthesis of magnetic nanoparticles
Artificial cells, nanomedicine, and biotechnology, 2014
[34] Basics of DNA biosensors and cancer diagnosis
Artificial cells, nanomedicine, and biotechnology, 2014
[35] In vitro study and characterization of doxorubicin-loaded magnetic nanoparticles modified with biodegradable copolymers
Artificial cells, nanomedicine, and biotechnology, 2014
[36] Comparison of Inhibitory Effect of 17-DMAG Nanoparticles and Free 17-DMAG in HSP90 Gene Expression in Lung Cancer
Asian Pacific Journal of Cancer Prevention, 2014
[37] Physicochemical Characteristics of Fe
Asian Pacific Journal of Cancer Prevention, 2014
[38] A comparison of the inhibitory effect of nano-encapsulated helenalin and free helenalin on telomerase gene expression in the breast cancer cell line, by real-time PCR
Artificial cells, nanomedicine, and biotechnology, 2014
[39] Drug delivery and nanodetection in lung cancer
Artificial cells, nanomedicine, and biotechnology, 2014
[40] Molecular target therapy of AKT and NF-kB signaling pathways and multidrug resistance by specific cell penetrating inhibitor peptides in HL-60 cells
Asian Pac J Cancer Prev, 2014
[41] Novel drug delivery system based on doxorubicin-encapsulated magnetic nanoparticles modified with PLGA-PEG1000 copolymer
Artificial cells, nanomedicine, and biotechnology, 2014
[42] Synthesis and in vitro study of cisplatin-loaded Fe3O4 nanoparticles modified with PLGA-PEG6000 copolymers in treatment of lung cancer
Journal of microencapsulation, 2014
[43] Comparison of inhibitory effects of 17-AAG nanoparticles and free 17-AAG on HSP90 gene expression in breast cancer
Asian Pac J Cancer Prev, 2014
[44] Gene silencing effect of SiRNA-magnetic modified with biodegradable copolymer nanoparticles on hTERT gene expression in lung cancer cell line
Artificial cells, nanomedicine, and biotechnology, 2014
[45] A Comparison between the cytotoxic effects of pure curcumin and curcumin-loaded PLGA-PEG nanoparticles on the MCF-7 human breast cancer cell line
Artificial cells, nanomedicine, and biotechnology, 2014
[46] Silver nanoparticles: synthesis methods, bio-applications and properties
Critical reviews in microbiology, 2014
[47] Dendrimers: synthesis, applications, and properties
Nanoscale research letters, 2014
[48] Physicochemical Characteristics of Fe3O4 Magnetic Nanocomposites Based on Poly(N-isopropylacrylamide) for Anti-cancer Drug Delivery
2014
[49] Comparison of inhibitory effects of 17-AAG nanoparticles and free 17-AAG on HSP90 gene expression in breast cancer.
Asian Pacific journal of cancer prevention: APJCP, 2013
[50] Shrinking Behavior of Thermo-And Magnetic-Responsive Gels Under External Magnetic Fields
[51] تهیه و ارزیابی In-vitro نانوکامپوزیت های هوشمند حاوی سیس پلاتین بر مبنای کوپلیمرهای حساس به دمای N-ایزوپروپیل آکریلامید‎

Copyright © 2025 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.