Nano-constructs that can achieve multimodality imaging and drug delivery combine the strengths of each modality together with therapy. A traceable and aptamer-targeted nano-construct has now been developed, the multifunctional nano-construct was obtained by a 19F silica quantum dots core with a programmable DNA hybrid shell, and the multimodality imaging was triggerd by microRNA. Once the nano-constructs had been delivered into lung cancer cells A549 by aptamer mediated recognition and endocytosis, the overexpressed endogenous miR-21 served as an exclusive key to disorganize the shell of the nano-constructs by competitive hybridization with the DNA hybrid, which led to a enhancement of the 19F MRI and fluorescence signal. More importantly, it also can led to a sustained lethality of the lung cancer cells. The results demonstrate great potential of such multifunctional nano-constructs for real-time dual-modality imaging during targeted gene therapy.
肺癌是威胁人类健康的重要疾病,其发病率和死亡率逐年上升,因此,发展多模态分子影像技术以获取多方位,高分辨信息,明确肺癌的分子机制并为其早期诊疗提供帮助,具有重要的理论意义和实用价值。本项目主要内容是设计合成MicroRNA响应的19F MRI/近红外分子探针,实现对肺癌的靶向诊断和治疗。拟利用19F SiQDs 作为双模态(磁共振和近红外)检测基元,在此基础上修饰上能对肺癌细胞A549有特异性响应的杂化DNA的壳层,形成DNA-19F SiQDs壳核结构的纳米复合体。通过DNA壳层中适配体介导的识别作用,实现该分子探针对肺癌细胞A549的高效识别;通过肺癌中过表达的miR-21的互补配对作用,触发DNA-19F SiQDs的19F MRI信号从无到有,同时也能增强19F SiQDs的荧光信号,并进一步导致肺癌细胞的程序性凋亡,实现从细胞到活体层面的肺部肿瘤的靶向诊疗。
肺癌是威胁人类健康的重要疾病,其发病率和死亡率逐年上升,因此,发展多模态分子影像技术以获取多方位,高分辨信息,明确肺癌的分子机制并为其早期诊疗提供帮助,具有重要的理论意义和实用价值。本项目设计并构建一系列适用于磁共振和荧光分子影像的双功能19F MRI/荧光分子探针,并使得制备的探针具有高特异性的靶向能力,实现对肺腺癌细胞和活体的高灵敏、特异性检测,在分析,细胞和活体水平上实现了实时的动态跟踪和在体成像,显示分子探针识别癌细胞的过程,利用19F磁共振增强技术,对肿瘤微环境和实体瘤进行多分子成像,从而更全面、精准、无创地探测早期肺癌为癌症的早期诊断提供灵敏和高效的分析方法。
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数据更新时间:2023-05-31
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