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A tumour-selective cascade activatable self-detained system for drug delivery and cancer imaging

机译:用于药物输送和癌症成像的肿瘤选择性级联可激活自保持系统

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摘要

Achieving the activation of drugs within cellular systems may provide targeted therapies. Here we construct a tumour-selective cascade activatable self-detained system (TCASS) and incorporate imaging probes and therapeutics. We show in different mouse models that the TCASS system accumulates in solid tumours. The molecules show enhanced accumulation in tumour regions via the effect of recognition induced self-assembly. Analysis of the molecular penetration in tumour tissue shows that in vivo self-assembly increases the penetration capability compared to typical soft or hard nanomaterials. Importantly, the in vivo self-assembled molecules exhibit a comparable clearance pathway to that of small molecules, which are excreted from organs of the reticuloendothelial system (liver and kidney), while are relatively slowly eliminated from tumour tissues. Finally, this system, combined with the NIR probe, shows high specificity and sensitivity for detecting bladder cancer in isolated intact patient bladders.
机译:在细胞系统内实现药物的激活可以提供靶向治疗。在这里,我们构建了一个肿瘤选择性级联可激活自保持系统(TCASS),并结合了成像探针和治疗剂。我们在不同的小鼠模型中显示TCASS系统在实体瘤中积累。这些分子通过识别诱导的自组装效应在肿瘤区域显示出增强的积累。对肿瘤组织中分子渗透的分析表明,与典型的软或硬纳米材料相比,体内自组装可提高渗透能力。重要的是,体内自组装分子的清除途径与小分子的清除途径相当,小分子从网状内皮系统的器官(肝脏和肾脏)中排出,而从肿瘤组织中清除得相对较慢。最后,该系统与NIR探针相结合,对于检测孤立的完整患者膀胱中的膀胱癌具有很高的特异性和灵敏度。

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