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Near-Infrared Fluorescent Nanocapsules with Reversible Response to Thermal/pH Modulation for Optical Imaging

机译:具有热/ pH调制可逆响应的近红外荧光纳米胶囊,用于光学成像

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摘要

Polymeric near-infrared (NIR) fluorescent nanocapsules were developed, of which the fluorescence exhibited reversible response to local thermal/pH modulation. Our strategy was to use polymeric micelles made of temperature-sensitive Pluronic F-127 to encapsulate an amphiphilic NIR fluorescent dye—indocyanine green (ICG)—within the core and then cross-link the micelle corona by pH-sensitive poly(ethylenimine) (PEI), The size swelling/shrinking property of the micelles induced by temperature decrease/increase was used as a switch to control the fluorescence yield of the nanocapsules. It was found that the fluorescence yield significantly increased with the increase in temperature. The PEI cross-link made the fluorescence yield also sensitive to local pH change and enhanced intracellular delivery of the nanocapsules as well. Preliminary results suggest the NIR fluorescent probes could be potentially used as a contrast agent sensitive to local environment for translational optical imaging/sensing.
机译:开发了聚合物近红外(NIR)荧光纳米胶囊,其中的荧光表现出对局部热/ pH调节的可逆响应。我们的策略是使用由温度敏感的Pluronic F-127制成的聚合物胶束将两亲NIR荧光染料-吲哚菁绿(ICG)包裹在芯内,然后通过pH敏感的聚(乙烯亚胺)交联胶束电晕( (PEI),由温度降低/升高引起的胶束的大小膨胀/收缩性质用作控制纳米胶囊的荧光产率的开关。发现随着温度的升高,荧光产量显着增加。 PEI交联使得荧光产量也对局部pH值变化敏感,并且纳米胶囊的细胞内传递也增强了。初步结果表明,NIR荧光探针可潜在地用作对本地环境敏感的造影剂,以进行平移光学成像/传感。

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