Citation: ZHANG Yajing, JI Peng, HAN Deming, ZHAO Lihui, XU Yajuan, LIU Wenshu. Preparation of Graphene Nano Drug-Loading System and Its Killing Effect on Human Oral Squamous Cell Carcinoma Cells[J]. Chinese Journal of Applied Chemistry, ;2019, 36(5): 564-570. doi: 10.11944/j.issn.1000-0518.2019.05.180351 shu

Preparation of Graphene Nano Drug-Loading System and Its Killing Effect on Human Oral Squamous Cell Carcinoma Cells

  • Corresponding author: ZHAO Lihui, 1252042806@qq.com XU Yajuan, 535923996@qq.com
  • Received Date: 6 November 2018
    Revised Date: 14 January 2019
    Accepted Date: 28 February 2019

    Fund Project: the Jilin Provincial Science and Technology Agen JJKH20170604KJSupported by the Jilin Provincial Science and Technology Agen(No.JJKH20170604KJ)

Figures(4)

  • Graphene oxide was synthesized by chemical redox method. The graphene oxide nanoparticles were prepared by ultrasonic fragmentation and peeling, and functionalized by polyethylene glycol(PEG). The modified graphene oxide was loaded with cisplatin. The graphene nano-drug delivery system was characterized by scanning electron microscopy(SEM), ultraviolet-visible absorption spectroscopy(UV-Vis) and Fourier transform infrared spectroscopy(FTIR). The killing effect of graphene nano-drug delivery system on oral squamous cell carcinoma human oral squamous cell carcinoma(KB) cells was examined by cell survival rate experiment(MTT) method. The results demonstrate that the loading rate of graphene nano-drug-loading system is 42.4%. Polyethylene glycol modified nano graphene oxide can reduce the cytotoxicity of nano graphene oxide and improve its biocompatibility. It has dual killing effect on KB cells, which provides a theoretical basis for the clinical application of nano graphene oxide in cancer treatment.
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    1. [1]

      Warnakulasuriya S. Global Epidemiology of Oral and Oropharyngeal Cancer[J]. Oral Oncol, 2009,45(4):309-316.  

    2. [2]

      LUO Yi. Diagnosis and Treatment Strategies of Locally Advanced/Distant Metastasis of Head and Neck Squamous Cell Carcinomas[J]. Anti-tumor Pharm, 2016,6(1):1-3. doi: 10.3969/j.issn.2095-1264.2016.01.01

    3. [3]

      Yin Q, Chen W. Research Progress of Pathogeny and Treatment of Oral Cancer[J]. Cancer Res Clin, 2014,26(8):573-576.  

    4. [4]

      Nagler R M. Molecular Aspects of Oral Cancer[J]. Anticancer Res, 2002,22(5):2977-2980.  

    5. [5]

      Singh D P, Herrera C E, Singh B. Graphene Oxide:An Efficient Material and Recent Approach for Biotechnological and Biomedical Applications[J]. Mater Sci Eng C, 2018,86(3):173-197.  

    6. [6]

      Banerjee A N. Graphene and Its Derivatives as Biomedical Materials:Future Prospects and Challenges[J]. Interface Focus A Theme Supplement J R Soc Interface, 2018,8(3):1-22.  

    7. [7]

      Bramini M, Alberini G, Colombo E. Interfacing Graphene-Based Materials with Neural Cells[J]. Front Syst Neurosci, 2018,12(1):1-22.  

    8. [8]

      Lee Y, Seo T H, Lee S. Neuronal Differentiation of Human Mesenchymal Stem Cells in Response to the Domain Size of Graphene Substrates[J]. J Biomed Mater Res Part A, 2018,106(1):43-51.  

    9. [9]

      Mohammadrezaei D, Golzar H, Rezai R M. In vitro Effect of Graphene Structures as an Osteoinductive Factor in Bone Tissue Engineering:A Systematic Review[J]. J Biomed Mater Res Part A, 2018,106(8):2284-2343. doi: 10.1002/jbm.v106.8

    10. [10]

      Fisher C, Rider A E, Han Z J. Applications and Nanotoxicity of Carbon Nanotubes and Graphene in Biomedicine[J]. J Nanomater, 2012,2012(8):1-19.  

    11. [11]

      JIAO Fang, ZHOU Guoqiang, CHEN Chunying. Trends in Studies on Chemical Modification and Biomedical Applications of Fullerenes[J]. J Ecotoxicol, 2010,5(4):469-480.  

    12. [12]

      BAI Ru, WANG Wen, JIN Xinglong. Review on Biological Security of Nanomaterials[J]. J Environ Health, 2007,24(1):59-61. doi: 10.3969/j.issn.1001-5914.2007.01.026

    13. [13]

      Akduman C, Özgüney I, Kumbasar E P A. Preparation and Characterization of Naproxen-Loaded Electrospun Thermoplastic Polyurethane Nanofibers as a Drug Delivery System[J]. Mater Sci Eng C, 2016,64(5):383-390.  

    14. [14]

      Li W D, Sun X Y. Mechanisms by Which Tumor Hypoxic and Acidic Microenvironments Affect Immunotherapy[J]. World Chinese J Digestol, 2017,25(21):1934-1944. doi: 10.11569/wcjd.v25.i21.1934

    15. [15]

      Zhao F, Zhao Y, Liu Y. Cellular Uptake, Intracellular Trafficking, and Cytotoxicity of Nanomaterials[J]. Small, 2011,7(10):1322-1337.  

    16. [16]

      Seabra A B, Paula A J, Lima R D. Nanotoxicity of Graphene and Graphene Oxide[J]. Chem Res Toxicol, 2014,27(2):159-168. doi: 10.1021/tx400385x

    17. [17]

      Tian L, Pei X, Zeng Y. Functionalized Nanoscale Graphene Oxide for High Efficient Drug Delivery of Cisplatin[J]. J Nanopart Res, 2014,16(11):2709-2722. doi: 10.1007/s11051-014-2709-3

    18. [18]

      Zhang W, Guo Z, Huang D. Synergistic Effect of Chemo-Photothermal Therapy Using PEGylated Graphene Oxide[J]. Biomaterials, 2011,32(33):8555-8561. doi: 10.1016/j.biomaterials.2011.07.071

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