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用于活细胞中灵敏比率 pH 检测的优化良好的共轭 GO-DNA 纳米系统。

Well-Optimized Conjugated GO-DNA Nanosystem for Sensitive Ratiometric pH Detection in Live Cells.

机构信息

Department of Materials Science and Engineering , Southern University of Science and Technology , 1088 Xueyuan Boulevard , Nanshan District, Shenzhen , Guangdong 518055 , P. R. China.

College of Chemistry and Life Science , Zhejiang Normal University , Jinhua 321004 , P. R. China.

出版信息

Langmuir. 2019 Oct 22;35(42):13745-13752. doi: 10.1021/acs.langmuir.9b02417. Epub 2019 Oct 14.

Abstract

Intracellular pH is a vital parameter which can reflect the physiological process, and the detection of intracellular pH with a high signal-to-noise ratio (SNR) remains a challenge. Compared to pH biosensors based on a single-wavelength signal, it is much easier to obtain better sensitivity and higher SNR from the biosensors by two-wavelength ratiometric signals. In this study, we used DNA-grafted graphene oxide (GO) to ratiometrically detect intracellular pH ranging from basic to acidic. A high SNR with a 35-fold difference in the ratiometric output has been achieved through careful optimization: (1) A high DNA conjugation yield of 45% has been gained through utilizing the partial double-stranded assembly strategy. (2) Herring sperm DNA (HSD) plays an important role in improving the sensitivity of the nanosystem by purifying and passivating the surface of GO; therefore, the concentration of HSD has been optimized to pursue the most sensitive ratiometric response. Apart from the ultrahigh SNR, fabricated GO-AR-Cy5/IFO-Cy3 exhibited excellent stability and biocompatibility in biological environments. Further experiments demonstrated that the nanosystem worked well in live cells in response to pH changes. It is possible to distinguish small pH differences and realize quantitative detection based on ratiometric fluorescence imaging by laser scanning confocal microscope analysis, which makes the nanosystem a promising candidate for further biological study and clinical applications.

摘要

细胞内 pH 值是一个重要的参数,它可以反映生理过程,而具有高信噪比 (SNR) 的细胞内 pH 值检测仍然是一个挑战。与基于单波长信号的 pH 生物传感器相比,通过双波长比率信号,生物传感器更容易获得更好的灵敏度和更高的 SNR。在本研究中,我们使用 DNA 接枝氧化石墨烯 (GO) 来比率检测从碱性到酸性的细胞内 pH 值。通过仔细优化,我们实现了具有 35 倍差异的高 SNR 的比率输出:(1) 通过利用部分双链组装策略,获得了 45% 的高 DNA 接枝产率。(2) 鲱鱼精子 DNA (HSD) 通过纯化和钝化 GO 的表面在提高纳米系统的灵敏度方面发挥了重要作用;因此,优化了 HSD 的浓度以追求最敏感的比率响应。除了超高 SNR 外,制备的 GO-AR-Cy5/IFO-Cy3 在生物环境中表现出优异的稳定性和生物相容性。进一步的实验表明,该纳米系统在活细胞中对 pH 值变化的反应良好。通过激光扫描共聚焦显微镜分析进行比率荧光成像,可以区分小的 pH 值差异并实现定量检测,这使得该纳米系统成为进一步生物学研究和临床应用的有前途的候选者。

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