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Photon upconversion sensitized nanoprobes for sensing and imaging of pH

机译:光子上转换敏感nanoprobes传感和成像的pH值

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Acidic pH inside cells indicates cellular dysfunctions such as cancer. Therefore, the development of optical pH sensors for measuring and imaging intracellular pH is a demanding challenge. The available pH-sensitive probes are vulnerable to e.g. photobleaching or autofluorescence background in biological materials. Our approach circumvents these problems due to near infrared excitation and upconversion photoluminescence. We introduce a nanosensor based on upconversion resonance energy transfer (UC-RET) between an upconverting nanoparticle (UCNP) and a fluorogenic pH-dependent dye pHrodo~(TM) Red that was covalently bound to the aminosilane surface of the nanoparticles. The sensitized fluorescence of the pHrodo~(TM) Red dye increases strongly with decreasing pH. By referencing the pH-dependent emission of pHrodo~(TM) Red with the pH-insensitive upconversion photoluminescence of the UCNP, we developed a pH-sensor which exhibits a dynamic range from pH 7.2 to 2.5. The applicability of the introduced pH nanosensor for pH imaging was demonstrated by imaging the two emission wavelengths of the nanoprobe in living HeLa cells with a confocal fluorescence microscope upon 980 nm excitation. This demonstrates that the presented pH-nanoprobe can be used as an intracellular pH-sensor due to the unique features of UCNPs: excitation with deeply penetrating near-infrared light, high photostability, lack of autofluorescence and biocompatibility due to an aminosilane coating.
机译:细胞内酸性pH值表明细胞障碍,比如癌症。光学测量pH传感器的发展和图像细胞内的pH值是一个要求很高的挑战。容易受到如光漂白或自发荧光背景的生物材料。由于近红外激发和问题上转换光致发光。基于上转换纳米传感器共振能量一个upconverting之间传输(UC-RET)纳米颗粒(UCNP)和fluorogenicpH-dependent染料pHrodo ~ (TM)那是红色的aminosilane表面共价结合纳米粒子。pHrodo ~ (TM)红色染料增强烈减少由引用pH-dependent博士发射pHrodo ~ (TM)的红了pH-insensitive上转换光致发光的UCNP,我们开发了一个pH-sensor展品一个动态的pH值的范围从7.2到2.5。介绍了pH值纳米传感器的适用性pH值成像成像演示了两个发射波长的nanoprobe生活海拉细胞共焦荧光显微镜在980 nm激发。证明了提出pH-nanoprobe即可作为细胞内pH-sensor由于使用UCNPs独特的特性:激励与深入穿透近红外光,高耐光性,缺乏自发荧光和生物相容性由于aminosilane涂层。

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