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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Self-assembled peptide nanoparticles as tumor microenvironment activatable probes for tumor targeting and imaging
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Self-assembled peptide nanoparticles as tumor microenvironment activatable probes for tumor targeting and imaging

机译:自组装肽纳米颗粒作为肿瘤微环境可激活探针,用于肿瘤靶向和成像

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摘要

Design of specific and sensitive imaging probes for targeting tumor microenvironment holds great promise to achieve precise detection and rapid responsiveness to neoplastic tissues. Dysregulated pH, one of the most remarkable hallmarks of tumor microenvironment, can be considered as a good specific trigger for the design of broad-spectrum and local-environment responsive imaging probes. However, the current existing design strategies for pH-responsive systems are insufficient to meet the needs for a rapid and tumor-specific diagnosis. Here we reported a novel biomimetic nanostructure based on oligopeptide self-assembly that can quickly switch into dissociated stagewith active fluorescence property from self-assembled stagewith quenched fluorescence activity when encountering a subtle pH-change in tumormicroenvironment (pH 6.8 vs. 7.4). This oligopeptide-assembly is examined as tumor microenvironment activatable probes for both intratumoral and intravenous in vivo tumor imaging. Through the distinct fluorescent intensities, it is validated that the acidic tumor microenvironment can activate stronger fluorescence signals. The tailor-made self-assembled oligopeptide nanomaterials have the potential for efficient and specific in situ diagnosis of various solid tumorswith aweakly acidicmicroenvironment,which is expected to be of crucial importance for clinical tumor diagnostics.
机译:针对肿瘤微环境的特异性和灵敏成像探针的设计具有实现精确检测和对肿瘤组织快速反应的巨大希望。 pH失调是肿瘤微环境最显着的特征之一,可以被认为是设计广谱和局部环境响应型成像探针的良好特异性触发因素。但是,pH响应系统的当前现有设计策略不足以满足快速诊断和肿瘤特异性诊断的需求。在这里我们报道了一种基于寡肽自组装的新型仿生纳米结构,当在肿瘤微环境中遇到微妙的pH变化时(pH 6.8与7.4),可以从具有猝灭荧光活性的自组装阶段快速切换到具有活性荧光特性的解离阶段。该寡肽组装体被检查为肿瘤内和静脉内体内肿瘤成像的肿瘤微环境可激活探针。通过不同的荧光强度,证实了酸性肿瘤微环境可以激活更强的荧光信号。量身定制的自组装寡肽纳米材料具有在酸性微环境恶劣的条件下对各种实体瘤进行高效,特异的原位诊断的潜力,有望在临床肿瘤诊断中发挥至关重要的作用。

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