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首页> 外文期刊>Analytical Sciences >Effects of Processing pH on Emission Intensity of Over-1000 nm Near-Infrared Fluorescence of Dye-Loaded Polymer Micelle with Polystyrene Core
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Effects of Processing pH on Emission Intensity of Over-1000 nm Near-Infrared Fluorescence of Dye-Loaded Polymer Micelle with Polystyrene Core

机译:用聚苯乙烯芯的染料加载聚合物胶束近1000nm近红外荧光发射强度的处理pH

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Fluorescence imaging using the over-thousand-nanometer (OTN) near-infrared (NIR) light is an emerging method for an in vivo imaging analysis of deep tissues without physical sectioning. Polymer micelle nanoparticles (PNPs) composed of organic polymers encapsulating an OTN-NIR fluorescent dye, IR-1061, in their hydrophobic core are expected to be biocompatible probes. Because IR-1061 quickly quenches due to the vibration of polar hydroxyl bonding in its surroundings, the influence of hydroxyl ions should be minimized. Herein, we investigated the effect of the hydrogen ion concentration during the preparation process using IR-1061 and an organic polymer, poly(ethylene glycol)-block -polystyrene (PEG-b -PSt), on the emission properties of the obtained OTN-PNPs. The OTN-PNP has a hydrodynamic diameter of 20 – 30 nm and emits 1110-nm fluorescence that is applicable to angiography. The loading efficiency of IR-1061 in the OTN-PNPs increased when prepared in an aqueous solution with a low hydroxyl ion concentration. In this solution (pH 3.0), highly emissive OTN-PNPs was obtained with IR-1061 at lower nominal concentrations. Decreasing the hydroxyl ion concentration during the preparation process yields highly emissive OTN-PNPs, which may improve the in vivo imaging analysis of biological phenomena in deep tissues.
机译:使用超过千纳米(OTN)近红外(NIR)光的荧光成像是一种新出现的方法,用于在没有物理切割的深组织的体内成像分析中。预期由包封OTN-NIR荧光染料IR-1061的有机聚合物组成的聚合物胶束纳米颗粒(PNP)预期是生物相容性的探针。因为IR-1061由于其周围环境中极性羟基粘结的振动而快速淬火,因此应最小化羟基离子的影响。在此,我们研究了使用IR-1061和有机聚合物,聚(乙二醇) - 嵌段 - 聚苯乙烯(PEG- B-PST)在发射过程中的制备方法期间氢离子浓度的影响所得OTN-PNP的性质。 OTN-PNP具有20-30nm的流体动力直径,并发出1110nm荧光,适用于血管造影。当在具有低羟基离子浓度的水溶液中制备时,ITN-PNP中IR-1061的加载效率增加。在该溶液(pH3.0)中,在较低的标称浓度下用IR-1061获得高发射OTN-PNP。在制备过程中降低羟基离子浓度产生高发光OTN-PNP,其可以改善深层组织中生物现象的体内成像分析中的。

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