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Article

Synthesis and characterization of magnetic polymeric nanocomposites for pH-sensitive controlled release of methotrexate

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Pages 2067-2080 | Received 26 Apr 2022, Accepted 20 Jun 2022, Published online: 30 Jun 2022

References

  • Shang YS, Du JS, Wang BR, et al. Preparation of MSNs@keratin as pH/GSH dual responsive drug delivery system. J Biomater Sci Polym Ed. 2022; 1–14.
  • Zhang Y, Zhang W, Wang Y, et al. Emerging nanotaxanes for cancer therapy. Biomaterials. 2021;272:120790.
  • Kumari S, Choudhary PK, Shukla R, et al. Recent advances in nanotechnology based combination drug therapy for skin cancer. J Biomater Sci Polym Ed. 2022; 1–34.
  • Soetaert F, Korangath P, Serantes D, et al. Cancer therapy with iron oxide nanoparticles: Agents of thermal and immune therapies. Adv Drug Deliv Rev. 2020;163:65–83.
  • Arif M, Sharaf M, Samreen, et al. Chitosan-based nanoparticles as delivery-carrier for promising antimicrobial glycolipid biosurfactant to improve the eradication rate of Helicobacter pylori biofilm. J Biomater Sci Polym Ed. 2021;32(6):813–832.
  • Yu H, Wang B, Zhou S, et al. Polyvinylpyrrolidone functionalization induces deformable structure of graphene oxide nanosheets for lung-targeting delivery. Nano Today. 2021;38:101151.
  • Liu LJ, Ma QM, Cao J, et al. Recent progress of graphene oxide-based multifunctional nanomaterials for cancer treatment. Cancer Nano. 2021;12(1):18.
  • Huang C, Zhang X, Li YC, et al. Hyaluronic acid and graphene oxide loaded silicon contact lens for corneal epithelial healing. J Biomater Sci Polym Ed. 2021;32(3):372–384.
  • Liang C, Song J, Zhang Y, et al. Facile approach to prepare rGO@Fe3O4 microspheres for the magnetically targeted and NIRresponsive chemo-photothermal combination therapy. Nanoscale Res Lett. 2020;15(1):86.
  • Rebekah A, Sivaselvam S, Viswanathan C, et al. Magnetic nanoparticle-decorated graphene oxide-chitosan composite as an efficient nanocarrier for protein delivery. Colloid Surf A. 2021;610:125913.
  • Zhang Y, Zhang H, Qin X, et al. Fabrication of multitargeting and pH-regulated nanocomposites for antitumor photodynamic therapy based on triphenylphosphine and graphene oxide. ACS Appl Bio Mater. 2020;3(2):952–964.
  • Wang JM, Fang JJ, Fang P, et al. Preparation of hollow core/shell Fe3O4@graphene oxide composites as magnetic targeting drug nanocarriers. J Biomater Sci Polym Ed. 2017;28(4):337–349.
  • Umar AA, Patah M, Abnisa F, et al. Rational design of PEGylated magnetite grafted on graphene oxide with effective heating efficiency for magnetic hyperthermia application. Colloid Surf A. 2021;619:126545.
  • Ashrafizadeh M, Zarrabi A, Hushmandi K, et al. Progress in natural compounds/siRNA co-delivery employing nanovehicles for cancer therapy. ACS Comb Sci. 2020;22(12):669–700.
  • Liu W, Zhang X, Zhou L, et al. Reduced graphene oxide (rGO) hybridized hydrogel as a near-infrared (NIR)/pH dual-responsive platform for combined chemo-photothermal therapy. J Colloid Interface Sci. 2019;536:160–170.
  • Abbasi R, Amjad JM, Nosrati H, et al. Synthesis and characterization of PEGylated iron and graphene oxide magnetic composite for curcumin delivery. Appl Organomet Chem. 2020;34(10):1–9.
  • Azizkhani S, Mahmoudi E, Abdullah N, et al. Synthesis and characterisation of graphene oxide-silica-chitosan for eliminating the Pb(II) from aqueous solution. Polymers. 2020;12(9):1922.
  • Shafiei F, Saberi RS, Meh R, et al. A label-free electrochemical aptasensor for breast cancer cell detection based on a reduced graphene oxide-chitosan-gold nanoparticle composite. Bioelectrochemistry. 2021;140:107807.
  • Kazempour M, Namazi H, Akbarzadeh A, et al. Synthesis and characterization of PEG-functionalized graphene oxide as an effective pH-sensitive drug carrier. Artif Cells Nanomed Biotechnol. 2019;47(1):90–94.
  • Liu Y, Wang S, Liang Y, et al. Simultaneous removal of methyl orange and Cr(VI) using polyethyleneimine-modified corncob-derived carbon material. BioResources. 2020;15(4):7342–7356.
  • Lu Y, Fan L, Yang LY, et al. PEI-modified core-shell/bead-like amino silica enhanced poly (vinyl alcohol)/chitosan for diclofenac sodium efficient adsorption. Carbohydr Polym. 2020;229:115459.
  • Ehsanimehr S, Moghadam PN, Dehaen W, et al. PEI grafted Fe3O4@SiO2@SBA-15 labeled FA as a pH-sensitive mesoporous magnetic and biocompatible nanocarrier for targeted delivery of doxorubicin to MCF-7 cell line. Colloid Surf A. 2021;615:126302.
  • Xue L, Yan Y, Kos P, et al. PEI fluorination reduces toxicity and promotes liver-targeted siRNA delivery. Drug Deliv Transl Res. 2021;11(1):255–260.
  • Avval ZM, Malekpour L, Raeisi F, et al. Introduction of magnetic and supermagnetic nanoparticles in new approach of targeting drug delivery and cancer therapy application. Drug Metab Rev. 2020;52(1):157–184.
  • Li W, Cao Z, Yu L, et al. Hierarchical drug release designed Au@PDA-PEG-MTX NPs for targeted delivery to breast cancer with combined photothermal-chemotherapy. J Nanobiotechnol. 2021;19(1):143.
  • Farzanfar J, Farjadian F, Roointan A, et al. Assessment of pH responsive delivery of methotrexate based on PHEMA-st-PEG-DA nanohydrogels. Macromol. Res. 2021;29(1):54–61.
  • Wu J, Deng A, Jiang W, et al. Synthesis and in vitro evaluation of pH-sensitive magnetic nanocomposites as methotrexate delivery system for targeted cancer therapy. Mater Sci Eng C Mater Biol Appl. 2017;71:132–140.
  • Yoo MJ, Park HB. Effect of hydrogen peroxide on properties of graphene oxide in hummers method. Carbon. 2019;141:515–522.
  • Wang Y, Sun D, Liu G, et al. Size-controllable synthesis of Fe3O4 nanospheres for electromagnetic wave absorber. J Electron Mater. 2015;44(7):2292–2299.
  • Wu J, Wang X, Zhu B, et al. pH-sensitive magnetic drug delivery system via layer-by-layer self-assembly of CS/PEG and its controlled release of DOX. J Biomater Sci Polym Ed. 2020;31(8):1057–1070.
  • Hoan NTV, Thu NTA, Van Duc H, et al. Fe3O4/reduced graphene oxide nanocomposite: synthesis and its application for toxic metal ion removal. J Chem. 2016;2016:2418172.
  • Liu X, Wang ZQ, Wu YZ, et al. Integrating the Z-scheme heterojunction into a novel Ag2O@rGO@reduced TiO2 photocatalyst: broadened light absorption and accelerated charge separation co-mediated highly efficient UV/visible/NIR light photocatalysis. J Colloid Interface Sci. 2019;538:689–698.
  • Bagheri S, Esrafili A, Kermani M, et al. Performance evaluation of a novel rGO-Fe0/Fe3O4-PEI nanocomposite for lead and cadmium removal from aqueous solutions. J Mol Liq. 2020;320:114422.
  • Song P, Zhang XY, Sun MX, et al. Synthesis of graphene nanosheets via oxalic acid-induced chemical reduction of exfoliated graphite oxide. RSC Adv. 2012;2(3):1168–1173.
  • Stankovich S, Dikin DA, Piner RD, et al. Synthesis of graphene-based nanosheets via chemical reduction of exfoliated graphite oxide. Carbon. 2007;45(7):1558–1565.
  • Wu J, Shen Y, Jiang W, et al. Magnetic targeted drug delivery carriers encapsulated with pH-sensitive polymer: synthesis, characterization and in vitro doxorubicin release studies. J Biomater Sci Polym Ed. 2016;27(13):1303–1316.
  • Poursharifi N, Semnani D, Soltani P, et al. Designing a novel and versatile multi-layered nanofibrous structure loaded with MTX and 5-FU for the targeted delivery of anticancer drugs. Polym Degrad Stabil. 2020;179:109275.
  • Hojoon L, Min AK, Chang-Moon L. Near-infrared laser-responsive photothermal bubble-generating PLA nanoparticles for controlled drug release. Macromol Res. 2021;29:224–229.
  • Rahman M, Khan JA, Kanwal U, et al. Methotrexate-loaded PEGylated gold nanoparticles as hemocompatible and pH-responsive anticancer drug nanoconjugate. J Nanopart Res. 2021;23(8):195.
  • Du Y, Chen W, Zheng M, et al. pH-sensitive degradable chimaeric polymersomes for the intracellular release of doxorubicin hydrochloride. Biomaterials. 2012;33(29):7291–7299.
  • Kievit FM, Wang FY, Fang C, et al. Doxorubicin loaded iron oxide nanoparticles overcome multidrug resistance in cancer in vitro. J Control Release. 2011;152(1):76–83.
  • Ganje M, Jafari SM, Tamadon AM, et al. Mathematical and fuzzy modeling of limonene release from amylose nanostructures and evaluation of its release kinetics. Food Hydrocolloid. 2019;95:186–194.
  • Wu J, Jiang W, Shen Y, et al. Synthesis and characterization of mesoporous magnetic nanocomposites wrapped with chitosan gatekeepers for pH-sensitive controlled release of doxorubicin. Mater Sci Eng C Mater Biol Appl. 2017;70(Pt 1):132–140.

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