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上转换纳米粒子-mOrange 蛋白 FRET 纳米探针,用于细胞内 pH 值的自比率/比率测定和单细胞 pH 成像。

Upconversion nanoparticle-mOrange protein FRET nanoprobes for self-ratiometric/ratiometric determination of intracellular pH, and single cell pH imaging.

机构信息

Institute of Biophotonics, National Yang-Ming University, 155 Sec-2, Li Nong Street, Taipei, 112, Taiwan.

LumiStar Biotechnology Inc., National Biotechnology Research Park, Taipei, 115, Taiwan.

出版信息

Biosens Bioelectron. 2020 May 1;155:112115. doi: 10.1016/j.bios.2020.112115. Epub 2020 Feb 26.

Abstract

Fluorescence based intracellular pH nanoprobes have been developed that overcomes the limitations imposed by shallow penetration depth of ultraviolet excitation, photostability, phototoxicity, and interference from background autofluorescence. In this study, we have constructed a Förster Resonance Energy Transfer (FRET) based pH nanoprobe using upconversion nanoparticle (UCNP) as a donor (excitation/emission @ 980/540 nm, green channel), and mOrange fluorescent protein (excitation/emission @ 548/566 nm, red channel) as acceptor. The UCNP-mOrange nanoprobe could be fluorescently imaged with 980 nm excitation, having deep penetration depth, by a fluorescence microscope on a coverslip, or uptaken in a single HeLa cell. The cellular upatake of these nanoparticles were confirmed by transmission electron microscope study. The FRET probes, with a FRET efficiency of ~20% at physiological pH of 7.0, have simultaneous self-ratiometric and ratiometric features varying linearly with local pH. The probe exhibits high accuracy, sensitivity, reversibility, and stability over a wide range of pH (3.0-8.0). The fluorescence intensity ratio from individual green, and red channels in fluorescence microscopic images could be used to estimate the pH of the intracellular compartments of HeLa cell from the pH dependent ratiometric calibration. Nigericin mediated intracellular pH (3.0, 5.0, and 7.0) could be accurately estimated from the CLSM derived FRET ratio. The pH probes demonstrate high stability and reversibility when switched between pH 3, and 8 for at least 5 cycles.

摘要

基于荧光的细胞内 pH 纳米探针已经被开发出来,克服了紫外激发光穿透深度浅、光稳定性差、光毒性和背景自发荧光干扰等限制。在这项研究中,我们构建了一种基于Förster 共振能量转移(FRET)的 pH 纳米探针,使用上转换纳米粒子(UCNP)作为供体(激发/发射@980/540nm,绿色通道),和 mOrange 荧光蛋白(激发/发射@548/566nm,红色通道)作为受体。UCNP-mOrange 纳米探针可以用 980nm 激发进行荧光成像,在盖玻片上的荧光显微镜下具有深穿透深度,或者在单个 HeLa 细胞中摄取。通过透射电子显微镜研究证实了这些纳米粒子的细胞摄取。FRET 探针在生理 pH 值为 7.0 时具有约 20%的 FRET 效率,具有同时的自比色和比色特征,与局部 pH 值呈线性变化。该探针在 pH 3.0-8.0 范围内具有高精度、高灵敏度、高可逆性和高稳定性。荧光显微镜图像中单个绿色通道和红色通道的荧光强度比可用于根据 pH 值相关的比色校准从 HeLa 细胞的细胞内区室估计 pH 值。可以从共聚焦显微镜衍生的 FRET 比准确估计尼可地尔介导的细胞内 pH(3.0、5.0 和 7.0)。当在 pH 3 和 8 之间切换时,pH 探针表现出高稳定性和高可逆性,至少可进行 5 个循环。

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