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Distinct ON/OFF fluorescence signals from dual-responsive activatable nanoprobes allows detection of inflammation with improved contrast

机译:来自双响应可活化纳米体素的不同的ON / OFF荧光信号允许检测炎症,改善对比度

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摘要

Visualization of biochemical changes associated with disease is of great clinical significance, as it should allow earlier, more accurate diagnosis than structural imaging, facilitating timely clinical intervention. Herein, we report combining stimuli-responsive polymers and near-infrared fluorescent dyes (emission max: 790 nm) to create robust activatable fluorescent nanoprobes capable of simultaneously detecting acidosis and oxidative stress associated with inflammatory microenvironments. The spectrally-resolved mechanism of fluorescence activation allows removal of unwanted background signal (up to 20-fold reduction) and isolation of a pure activated signal, which enables sensitive and unambiguous localization of inflamed areas; target-to-background ratios reach 22 as early as 3 h post-injection. This new detection platform could have significant clinical impact in early detection of pathologies, individual tailoring of drug therapy, and image-guided tumor resection. (C) 2017 Elsevier Ltd. All rights reserved.
机译:与疾病相关的生物化学变化的可视化具有很大的临床意义,因为它应该比结构成像更早,更准确的诊断,促进及时的临床干预。在此,我们报告将刺激响应聚合物和近红外荧光染料(发射MAX:790nm)组合以产生鲁棒的可激活荧光纳米体,能够同时检测与炎症微环境相关的酸中毒和氧化应激。荧光激活的光谱分辨机理允许去除不需要的背景信号(降低高达20倍)并分离纯活化的信号,这使得发炎区域的敏感和明确的定位能够;目前靶向比率达到22早在注射后3小时。这种新的检测平台可在早期发现病理学,单独剪裁药物治疗和图像引导肿瘤切除方面具有显着的临床影响。 (c)2017 Elsevier Ltd.保留所有权利。

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