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首页> 外文期刊>Journal of biomedical nanotechnology >Folic Acid-Targeted and Cell Penetrating Peptide-Mediated Theranostic Nanoplatform for High-Efficiency Tri-Modal Imaging-Guided Synergistic Anticancer Phototherapy
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Folic Acid-Targeted and Cell Penetrating Peptide-Mediated Theranostic Nanoplatform for High-Efficiency Tri-Modal Imaging-Guided Synergistic Anticancer Phototherapy

机译:叶酸靶向和细胞穿透肽介导的Theranostic纳米平台的高效三模态成像引导协同抗癌光疗。

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摘要

A novel nanomaterial with precisely-defined size and shape, biocompatible composition, and excellent stability, which can integrate multi modal targeted imaging and therapy into a single system for visualized therapeutics, has recently attracted significant research interest. Here, we developed a multifunctional nanoplatform based on silica-coated 4-mercaptobenzoic acid-modified gold nanorods (Au NRs) decorated with gold nanoclusters rich in the photosensitizer Ce6 (Au-Ce6 NCs). The nanoparticles also comprised folic acid and cell penetrating peptide molecules anchored on the surface, obtaining the Au@SiO2@Au-cell penetrating peptide nanocomposite. The Au-Ce6 NCs enhanced the photophysical stability, provided numerous bonding sites and offered a large surface-area and interior space to achieve a high drug loading efficiency (up to 55%). The anchored folic acid and cell penetrating peptide synergistically enhanced the efficiency of uptake of nanocomposites by HeLa cells (up to 70.7%) and improved therapeutic efficacy. The nanocomposite also has good water solubility, excellent biocompatibility, and long-term stability against illumination and exposure to pH 3-12, thus facilitating their bioapplications in cancer theranostics. Here, the nanocomposite was established for high-resolution and noninvasive tri-modal surface-enhanced Raman spectrum/dark-field/fluorescence imaging-guided high-efficiency synergistic photodynamic/photothermal therapy of cancer. Our studies demonstrate that the multifunctional nanocomposite has the potential as a novel and sensitive contrast agent for complementary and synergistic theranostics in the clinic.
机译:最近,一种具有精确定义的尺寸和形状,生物相容性组成和出色稳定性的新型纳米材料,已将多模式靶向成像和疗法整合到一个用于可视化疗法的单一系统中,引起了广泛的研究兴趣。在这里,我们开发了一种多功能纳米平台,该平台基于二氧化硅涂层的4-巯基苯甲酸改性的金纳米棒(Au NRs),其修饰有富含光敏剂Ce6(Au-Ce6 NCs)的金纳米簇。该纳米颗粒还包含叶酸和锚定在表面上的细胞穿透肽分子,从而获得Au @ SiO2 @ Au-细胞穿透肽纳米复合材料。 Au-Ce6 NC增强了光物理稳定性,提供了许多键合位点,并提供了较大的表面积和内部空间,可实现较高的载药效率(高达55%)。锚定叶酸和细胞穿透肽可协同增强HeLa细胞摄取纳米复合材料的效率(高达70.7%)并提高治疗效果。该纳米复合材料还具有良好的水溶性,优异的生物相容性以及对光照和暴露于pH 3-12的长期稳定性,因此有利于其在癌症治疗中的生物应用。在这里,建立了纳米复合材料用于高分辨率和无创的三峰表面增强拉曼光谱/暗场/荧光成像引导的癌症高效协同光动力/光热疗法。我们的研究表明,多功能纳米复合材料具有潜力,可作为一种新颖而敏感的造影剂,用于临床中的互补和协同治疗学。

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