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Fabrication of Graphene and AuNP Core Polyaniline Shell Nanocomposites as Multifunctional Theranostic Platforms for SERS Real-time Monitoring and Chemo-photothermal Therapy

机译:石墨烯和AuNP核聚苯胺壳纳米复合材料的制备作为SERS实时监测和化学光热疗法的多功能治疗平台

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摘要

In this work, novel theranostic platforms based on graphene oxide and AuNP core polyaniline shell (GO-Au@PANI) nanocomposites are fabricated for simultaneous SERS imaging and chemo-photothermal therapy. PANI, a new NIR photothermal therapy agent with strong NIR absorption, outstanding stability and low cytotoxicity is decorated on AuNPs by one-pot oxidative polymerization, then the Au@PANI core-shell nanoparticles are attached to the graphene oxide (GO) sheet via π-π stacking and electrostatic interaction. The obtained GO-Au@PANI nanohybirds exhibit excellent NIR photothermal transduction efficiency and ultrahigh drug-loading capacity. The nanocomposites can also serve as novel NIR SERS probes utilizing the intense SERS signals of PANI. Rapid SERS imaging of cancer cells is achieved using this ultrasensitive nanoprobe. GO-Au@PANI also reveals good capability of drug delivery with the DOX-loading efficiency of 189.2% and sensitive NIR/pH-responsive DOX release. The intracellular real-time drug release dynamics from the nanocomposites is monitored by SERS-fluorescence dual mode imaging. Finally, chemo-photothermal ablation of cancer cells is carried out in vitro and in vivo using GO-Au@PANI as high-performance chemo-photothermal therapeutic nanoagent. The theranostic applications of GO-Au@PANI endow it with great potential for personalized and precise cancer medicine.
机译:在这项工作中,制造了基于氧化石墨烯和AuNP核聚苯胺壳(GO-Au @ PANI)纳米复合材料的新型治疗学平台,用于同步SERS成像和化学光热疗法。通过一锅氧化聚合法在AuNPs上修饰PANI,这是一种新的近红外吸收力强,稳定性强,细胞毒性低的新型NIR光热治疗剂,然后通过π将Au @ PANI核壳纳米粒子附着到氧化石墨烯(GO)板上-π堆积和静电相互作用。所获得的GO-Au @ PANI纳米杂合物具有优异的近红外光热转换效率和超高的载药量。纳米复合材料还可利用PANI的强SERS信号作为新型NIR SERS探针。使用这种超灵敏的纳米探针可以实现癌细胞的快速SERS成像。 GO-Au @ PANI还显示出良好的药物递送能力,其DOX装载效率为189.2%,并且对NIR / pH敏感的DOX释放灵敏。通过SERS-荧光双模式成像监测纳米复合物的细胞内实时药物释放动力学。最后,使用GO-Au @ PANI作为高性能的化学光热治疗纳米剂,在体外和体内进行癌细胞的化学光热消融。 GO-Au @ PANI的治疗学应用赋予其在个性化和精确的癌症医学方面的巨大潜力。

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