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首页> 外文期刊>Journal of biomedical nanotechnology >Preparation of Graphene Oxide-Based Supramolecular Hybrid Nanohydrogel Through Host-Guest Interaction and Its Application in Drug Delivery
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Preparation of Graphene Oxide-Based Supramolecular Hybrid Nanohydrogel Through Host-Guest Interaction and Its Application in Drug Delivery

机译:通过宿主访客相互作用的石墨烯基氧化物的超分子杂交纳米氢化物的制备及其在药物递送中的应用

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Graphene oxide (GO) has attracted a wide attention for its excellent mechanical, thermal properties and unique twodimensional structure. In this work, A new GO-based supramolecular hybrid nanohydrogel was prepared, in which GO as the cross-links was incorporated into the above hydrogel through non-covalent functionalization to enhance the mechanical properties and control morphology. A 1-pyrenebutyric acid (Py) modified low-molecular weight (MW) mPEG was firstly synthesized via a simple esterification reaction. Then, low-MW mPEG functionalized GO (GO-Py-PEG) was obtained due to the strong pi-pi stacking interaction between Py and GO. The combination of the host-guest interaction between mPEG and alpha-CD and addition of GO lastly leaded to the formation of supramolecular hybrid nanohydrogel. Various techniques including UV-vis spectroscopy, Fourier transform infrared (FT-IR) spectroscopy, X-ray diffraction (XRD), thermogravimetric analysis (TGA) and transmission electron microscopy (TEM) were used to thoroughly characterize the hybrid hydrogel. More interestingly, the results of rheology studies and scanning electron microscopy (SEM) revealed that the mechanical strength and morphology of hybrid hydrogel was improved by the incorporation of GO. Meanwhile, doxorubicin hydrochloride (DOX) as a model drug was loaded into hybrid hydrogel, and the in vitro released behavior was studied under different pH values. The results showed that the formed hybrid hydrogel could release DOX over 50 h in a sustained manner. In addition, in vitro and in vivo experiments, GO-Py-PEG-alpha-CD@DOX hydrogel (hydrogel@DOX) dramatically shows the inhibition of tumor cell proliferation and tumor growth. At the same time, HE staining results show hydrogel@DOX can significantly reduce the side effects of DOX. We believe that the development of such hybrid hydrogels will provide important potential for medical applications.
机译:石墨烯氧化物(GO)引起了优异的机械,热性能和独特的两模结构。在这项工作中,制备了一种新的基于去分子杂交纳米水凝胶,其中通过非共价官能化将交联掺入上述水凝胶中以增强机械性能和对照形态。首先通过简单的酯化反应首先合成1-芘丁酸(PY)改性的低分子量(MW)MPEG。然后,由于PY之间的强PI-PI堆叠相互作用,获得了低MW MPEG官能化GO(GO-PY-PEG)。 MPEG与α-CD之间的宿主客体相互作用的组合并依次加入去形成超分子杂交纳米氢筋的形成。使用包括UV-Vis光谱,傅里叶变换红外(FT-IR)光谱,X射线衍射(XRD),热重分析(TGA)和透射电子显微镜(TEM)的各种技术用于彻底表征杂交水凝胶。更有趣的是,流变研究和扫描电子显微镜(SEM)的结果表明,通过掺入GO的掺入,改善了杂种水凝胶的机械强度和形态。同时,将Doxorubicin盐酸盐(DOX)作为模型药物装入混合水凝胶中,并在不同pH值下研究体外释放的行为。结果表明,形成的杂合水凝胶可以以持续的方式在50小时内释放DOX。此外,在体外和体内实验中,Go-Py-PEG-α-CD @ Dox水凝胶(Hydrogel @ Dox)显着显示了肿瘤细胞增殖和肿瘤生长的抑制。与此同时,他染色结果显示水凝胶@ Dox可以显着降低DOX的副作用。我们认为这种混合水凝胶的发展将为医疗应用提供重要潜力。

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