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Fluorescent and Photostable Silicon Nanoparticles Sensors for Real-Time and Long-Term Intracellular pH Measurement in Live Cells

机译:用于活细胞实时和长期细胞内pH测量的荧光和光稳定硅纳米颗粒传感器

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Fluorescent sensors suitable for dynamic measurement of intracellular pH (pH(i)) fluctuations should feature the following properties: feeble cytotoxicity, wide-pH range response, and strong fluorescence coupled with good photostability, which are still remaining scanty to date.. Herein, by functionalizing fluorescent silicon. nanoparticles (SiNPs) with pH-sensitive dopamine (DA) and pH-insensitive rhodamine 13 isothiocyanate (RBITC), we present the first demonstration of fluorescent SiNPs-based sensors, simultaneously exhibiting minimal toxicity (cell viability of treated cells remains above 95% during 24-h treatment), sensitive fluorescent response to a broad pH range (similar to 4-10), and bright fluorescence coupled with robust photostability (similar to 9% loss of fluorescence intensity after 40 min continuous excitation; in contrast, fluorescence of Lyso-tracker is rapidly quenched in 5 min under the same experiment conditions). Taking advantage of these merits, we further employ, the resultant fluorescent SiNPs sensors for the detection of lysosomal pH change mediated by nigericin in live HeLa and MCF-7 cells in long-term (e.g., 30 min) manners. Interestingly, two consecutive stages, i.e., alkalization lag phase and logarithmic growth phase, are observed based on recording the whole process of pH change, offering important information for understanding the dynamic process of pH(i) fluctuations.
机译:适用于动态测量细胞内pH(pH(i))波动的荧光传感器应具有以下特性:微弱的细胞毒性,宽pH值范围响应,强荧光和良好的光稳定性,至今仍很少使用。通过功能化荧光硅。 pH敏感的多巴胺(DA)和pH敏感的若丹明13异硫氰酸盐(RBITC)的纳米颗粒(SiNPs),我们展示了基于荧光SiNPs传感器的首次展示,同时显示出最小的毒性(处理过的细胞的细胞存活率在95%以上24小时处理),对宽pH值范围(类似于4-10)的敏感荧光响应,明亮的荧光以及强大的光稳定性(类似于连续激发40分钟后9%的荧光强度损失;相反,Lyso的荧光-tracker在相同的实验条件下于5分钟内迅速淬灭。利用这些优点,我们进一步采用了所得的荧光SiNPs传感器,以长期(例如30分钟)的方式检测由尼日利亚霉素介导的活HeLa和MCF-7细胞中溶酶体的pH变化。有趣的是,在记录pH变化的整个过程的基础上,观察到两个连续的阶段,即碱化滞后阶段和对数生长期,为理解pH(i)波动的动态过程提供了重要信息。

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