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一种基于水凝胶的纳米传感器,在细胞区室的pH测量中具有前所未有的广泛灵敏度范围。

A hydrogel based nanosensor with an unprecedented broad sensitivity range for pH measurements in cellular compartments.

作者信息

Zhang M, Søndergaard R V, Kumar E K P, Henriksen J R, Cui D, Hammershøj P, Clausen M H, Andresen T L

机构信息

School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Analyst. 2015 Nov 7;140(21):7246-53. doi: 10.1039/c5an01014d.

Abstract

Optical pH nanosensors have been applied for monitoring intracellular pH in real-time for about two decades. However, the pH sensitivity range of most nanosensors is too narrow, and measurements that are on the borderline of this range may not be correct. Furthermore, ratiometric measurements of acidic intracellular pH (pH < 4) in living cells are still challenging due to the lack of suitable nanosensors. In this paper we successfully developed a multiple sensor, a fluorophore based nanosensor, with an unprecedented broad measurement range from pH 1.4 to 7.0. In this nanosensor, three pH-sensitive fluorophores (difluoro-Oregon Green, Oregon Green 488, and fluorescein) and one pH-insensitive fluorophore (Alexa 568) were covalently incorporated into a nanoparticle hydrogel matrix. With this broad range quadruple-labelled nanosensor all physiological relevant pH levels in living cells can be measured without being too close to the limits of its pH-range. The nanosensor exhibits no susceptibility to interference by other intracellular ions at physiological concentrations. Due to its positive surface charge it is spontaneously internalized by HeLa cells and localizes to the lysosomes where the mean pH was measured at 4.6. This quadruple-labelled nanosensor performs accurate measurements of fluctuations of lysosomal pH in both directions, which was shown by treatment with the V-ATPase inhibitor bafilomycin A1 or its substrate ATP in HeLa cells. These measurements indicate that this novel quadruple-labelled nanosensor is a promising new tool for measuring the pH of acidic compartments in living cells.

摘要

光学pH纳米传感器已被用于实时监测细胞内pH约二十年。然而,大多数纳米传感器的pH敏感范围过窄,处于该范围边界的测量可能不准确。此外,由于缺乏合适的纳米传感器,对活细胞内酸性pH(pH < 4)进行比率测量仍然具有挑战性。在本文中,我们成功开发了一种多重传感器,一种基于荧光团的纳米传感器,其测量范围前所未有的宽,从pH 1.4到7.0。在这种纳米传感器中,三种pH敏感荧光团(二氟俄勒冈绿、俄勒冈绿488和荧光素)和一种pH不敏感荧光团(Alexa 568)共价结合到纳米颗粒水凝胶基质中。使用这种宽范围的四重标记纳米传感器,可以测量活细胞中所有生理相关的pH水平,而不会过于接近其pH范围的极限。该纳米传感器对生理浓度下的其他细胞内离子干扰不敏感。由于其正表面电荷,它被HeLa细胞自发内化并定位到溶酶体,在那里测得的平均pH为4.6。这种四重标记纳米传感器能够准确测量HeLa细胞中溶酶体pH在两个方向上的波动,这通过用V-ATP酶抑制剂巴弗洛霉素A1或其底物ATP处理得以证明。这些测量表明,这种新型四重标记纳米传感器是测量活细胞酸性区室pH的一种有前途的新工具。

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