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首页> 外文期刊>Theranostics >Dual-Targeted Gold Nanoprism for Recognition of Early Apoptosis, Dual-Model Imaging and Precise Cancer Photothermal Therapy
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Dual-Targeted Gold Nanoprism for Recognition of Early Apoptosis, Dual-Model Imaging and Precise Cancer Photothermal Therapy

机译:双靶金纳米棱镜用于识别早期凋亡,双模式成像和精确的癌症光热疗法

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Photothermal therapy as novel strategy to convert near-infrared (NIR) light into heat for treatment cancers has attracted great attention and been widely studied. However, side effects and low efficiency remain the main challenge of precise cancer photothermal therapy. Methods: In this study, we have successfully fabricated and characterized the dual-targeted gold nanoprisms, whereby bare gold nanoprisms (Au NPR) were conjugated to a phenanthroline derivatives-functionalized tetraphenylethene (TPE) and further stabilized with target peptide aptamers via Au-S bonds (Au-Apt-TPE). Then, the remaining nitrogen atoms of the Au-Apt-TPE could effectively chelate with Znsup2+/sup ions (Au-Apt-TPE@Zn) for monitoring early stage apoptotic cells. Results: The as-synthesized Au-Apt-TPE@Zn exhibited good monodispersity, size stability and consistent spectral characteristics. TPE synthesized here showed aggregation-induced emission (AIE) characteristics, and zinc conjunction (TPE@Zn) endowed Au-Apt-TPE@Zn with the cell membrane-targeted ability to selectively recognize the membranes of early stage apoptotic cells but not respond to healthy cells, which provided valuable diagnosis information on therapeutic efficacy. Au-Apt-TPE@Zn achieved specifically nuclear-targeted ability by surface decoration of AS1411 DNA aptamer. Au-Apt-TPE@Zn under NIR irradiation showed effective photothermal therapy against SGC-7901 human gastric carcinoma cells growth in vitro by inducing apoptosis through triggering reactive oxygen species (ROS) overproduction and regulating multiple signal crosstalk. In vivo studies revealed that Au-Apt-TPE@Zn under NIR irradiation showed deep penetration and dual-model imaging application (cancer-targeted fluorescence imaging and light-up photoacoustic imaging). Au-Apt-TPE@Zn under NIR irradiation also displayed strong photothermal therapy against gastric carcinoma xenograft growth in vivo by induction of apoptosis. Importantly, analysis of histopathology, hematotoxicity and immunocytotoxicity indicated that Au-Apt-TPE@Zn had less side effect and high biocompatibility. Conclusions: Our findings validated the design of using Au nanoprism with AIE materials and dual-targeted decoration could be an effective strategy in recognition of early apoptosis, dual-model imaging and precise cancer photothermal therapy.
机译:光热疗法作为一种将近红外(NIR)光转换成热量以治疗癌症的新策略已引起了广泛的关注并得到了广泛的研究。然而,副作用和低效率仍然是精确的癌症光热疗法的主要挑战。方法:在这项研究中,我们已经成功地制造和表征了双靶金纳米棱镜,从而将裸金纳米棱镜(Au NPR)与菲咯啉衍生物官能化的四苯基乙烯(TPE)偶联,并通过Au-S与目标肽适体进一步稳定键(Au-Apt-TPE)。然后,Au-Apt-TPE的剩余氮原子可以有效地与Zn 2 + 离子(Au-Apt-TPE @ Zn)螯合,以监测早期凋亡细胞。结果:合成后的Au-Apt-TPE @ Zn具有良好的单分散性,尺寸稳定性和一致的光谱特性。此处合成的TPE具有聚集诱导发射(AIE)特性,锌结合(TPE @ Zn)赋予Au-Apt-TPE @ Zn具有细胞膜靶向能力,能够选择性识别早期凋亡细胞的膜,但不响应健康细胞,为治疗功效提供了有价值的诊断信息。 Au-Apt-TPE @ Zn通过AS1411 DNA适体的表面修饰达到了特定的核靶向能力。近红外照射下的Au-Apt-TPE @ Zn对人胃癌细胞SGC-7901的生长具有有效的光热治疗作用,其通过触发活性氧(ROS)的过量产生和调节多信号串扰来诱导细胞凋亡。体内研究表明,NIR照射下的Au-Apt-TPE @ Zn表现出深层渗透和双模式成像应用(靶向癌的荧光成像和光亮光声成像)。 NIR照射下的Au-Apt-TPE @ Zn也显示出通过诱导细胞凋亡在体内对抗胃癌异种移植物生长的强光热疗法。重要的是,对组织病理学,血液毒性和免疫细胞毒性的分析表明,Au-Apt-TPE @ Zn具有较少的副作用和较高的生物相容性。结论:我们的发现验证了使用具有AIE材料的金纳米棱镜的设计,并且双重目标装饰可以作为识别早期细胞凋亡,双重模型成像和精确的癌症光热疗法的有效策略。

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