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Nano-sensitizers for multi-modality optical diagnostic imaging and therapy of cancer

机译:纳米增敏剂,用于癌症的多模态光学诊断成像和治疗

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We report novel bioconjugated nanosensitizers as optical and therapeutic probes for the detection, monitoring and treatment of cancer. These nanosensitisers, consisting of hypericin loaded bioconjugated gold nanoparticles, can act as tumor cell specific therapeutic photosensitizers for photodynamic therapy coupled with additional photothermal effects rendered by plasmonic heating effects of gold nanoparticles. In addition to the therapeutic effects, the nanosensitizer can be developed as optical probes for state-of-the-art multi-modality in-vivo optical imaging technology such as in-vivo 3D confocal fluorescence endomicroscopic imaging, optical coherence tomography (OCT) with improved optical contrast using nano-gold and Surface Enhanced Raman Scattering (SERS) based imaging and bio-sensing. These techniques can be used in tandem or independently as in-vivo optical biopsy techniques to specifically detect and monitor specific cancer cells in-vivo. Such novel nanosensitizer based optical biopsy imaging technique has the potential to provide an alternative to tissue biopsy and will enable clinicians to make real-time diagnosis, determine surgical margins during operative procedures and perform targeted treatment of cancers.
机译:我们报告新型生物共轭纳米增敏剂作为光学和治疗探针,用于检测,监测和治疗癌症。这些纳米增敏剂由载有金丝桃素的生物共轭金纳米颗粒组成,可作为肿瘤细胞特有的光敏剂,用于光动力疗法,以及由金纳米颗粒的等离子体加热效应产生的其他光热效应。除了具有治疗效果外,纳米敏化剂还可以作为光学探针开发,用于最新的多模态体内光学成像技术,例如体内3D共聚焦荧光内镜成像,光学相干断层扫描(OCT)使用基于纳米金和表面增强拉曼散射(SERS)的成像和生物传感技术,可以改善光学对比度。这些技术可以串联或独立地用作体内光学活检技术,以特异性地体内检测和监测特定癌细胞。这种基于纳米敏化剂的新型光学活检成像技术具有提供组织活检替代方案的潜力,并将使临床医生能够进行实时诊断,在手术过程中确定手术切缘并进行针对性的癌症治疗。

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