科学研究
学术论文
当前位置: 首页>>科学研究>>学术论文>>正文

    侯琳等Smart nanocomposite hydrogels based on azo crosslinked graphene oxide for oral colon-specific drug delivery

    2017-10-19   点击:[]

    Smart nanocomposite hydrogels based on azo crosslinked graphene oxide for oral colon-specific drug delivery

    【作者】Lin Hou, Yuyang Shi, Guixiang Jiang, Wei Liu, Huili Han,Qianhua Feng, Junxiao Ren, Yujie Yuan, Yongchao Wang,Jinjin Shi and Zhenzhong Zhang

    【期刊名】Nanotechnology

    【影响因子】 2015: 3.573

    【作者单位】 School of Pharmaceutical Sciences, Zhengzhou University, 100 Kexue Avenue, Zhengzhou 450001, PR China

    【年,卷():页码】2016, 27: 315105

    【关键词】graphene oxide, curcumin, pH-sensitive, composite hydrogels, colon-specific

    delivery

    【摘要】A safe and efficient nanocomposite hydrogel for colon cancer drug delivery was synthesized

    using pH-sensitive and biocompatible graphene oxide (GO) containing azoaromatic crosslinks as

    well as poly (vinyl alcohol) (PVA) (GO–N=N–GO/PVA composite hydrogels). Curcumin

    (CUR), an anti-cancer drug, was encapsulated successfully into the hydrogel through a freezing

    and thawing process. Fourier transform infrared spectroscopy, scanning electron microscopy and

    Raman spectroscopy were performed to confirm the formation and morphological properties of

    the nanocomposite hydrogel. The hydrogels exhibited good swelling properties in a pH-sensitive

    manner. Drug release studies under conditions mimicking stomach to colon transit have shown

    that the drug was protected from being released completely into the physiological environment

    of the stomach and small intestine. In vivo imaging analysis, pharmacokinetics and a distribution

    of the gastrointestinal tract experiment were systematically studied and evaluated as colonspecific

    drug delivery systems. All the results demonstrated that GO–N=N–GO/PVA composite

    hydrogels could protect CUR well while passing through the stomach and small intestine to the

    proximal colon, and enhance the colon-targeting ability and residence time in the colon site.

    Therefore, CUR loaded GO–N=N–GO/PVA composite hydrogels might potentially provide a

    theoretical basis for the treatment of colon cancer with high efficiency and low toxicity.

    【全文链接】http://iopscience.iop.org/article/10.1088/0957-4484/27/31/315105/pdf


    上一条:史进进等Fullerene (C60)-based tumor-targeting nanoparticles with "off-on" state for enhanced treatment of cancer
    下一条:史进进等A Multi-Functional Tumor Theranostic Nanoplatform for MRI Guided Photothermal-Chemotherapy

    关闭

版权所有:河南省肿瘤重大疾病靶向治疗与诊断重点实验室

地址:郑州市科学大道100号    邮编:450001