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使用光学纳米探针在单个活细胞中进行无标记pH监测。

Label-Free pH Monitoring in a Single Living Cell Using an Optical Nanoprobe.

作者信息

Yang Qingbo, Zhang Xiaobei, Song Yang, Li Ke, Shi Honglan, Xiao Hai, Ma Yinfa

机构信息

Department of Chemistry, Missouri University of Science and Technology, Rolla, MO 65409, United States.

Center for Biomedical Research, Missouri University of Science and Technology, Rolla, MO 65409, United States.

出版信息

Med Devices Sens. 2020 Jun;3(3). doi: 10.1002/mds3.10079. Epub 2020 Mar 12.

Abstract

Intracellular pH plays critical roles in cell and tissue functions during processes such as metabolism, proliferation, apoptosis, ion transportation, endocytosis, muscle contraction and so on. It is thus an important biomarker that can readily be used to monitor the physiological status of a cell. Thus, disrupted intracellular pH may serve as an early indicator of cell dysfunction and deterioration. Various methods have been developed to detect cellular pH, such as pH-sensitive labeling reagents with fluorescent or Raman signals. However, excessive cellular uptake of these reagents will not only disrupt cell viability but also compromise effective long-term monitoring. Here, we present a novel fiber-optic fluorescent nanoprobe with a high spatial resolution for label-free, subcellular pH sensing. The probe has a fast response time (~20 seconds) with minimum invasiveness and excellent pH resolution (0.02 pH units) within a biologically relevant pH environment ranging from 6.17 to 8.11. Its applicability was demonstrated on cultured A549 lung cancer cells, and its efficacy was further testified in two typical cytotoxic cases using carbonylcyanide 3-chlorophenyl hydrazine, titanium dioxide, and nanoparticles. The probe can readily detect the pH variations among cells under toxin/nanoparticles administration, enabling direct monitoring of the early onset of physiological or pathological events with high spatiotemporal resolution. This platform has excellent promise as a minimum invasive diagnostic tool for pH-related cellular mechanism studies, such as inflammation, cytotoxicity, drug resistance, carcinogenesis, stem cell differentiation and so on.

摘要

细胞内pH值在新陈代谢、增殖、凋亡、离子转运、胞吞作用、肌肉收缩等过程中的细胞和组织功能中起着关键作用。因此,它是一种重要的生物标志物,可随时用于监测细胞的生理状态。因此,细胞内pH值的紊乱可能是细胞功能障碍和恶化的早期指标。已经开发了各种方法来检测细胞pH值,例如具有荧光或拉曼信号的pH敏感标记试剂。然而,这些试剂在细胞内的过度摄取不仅会破坏细胞活力,还会影响有效的长期监测。在这里,我们提出了一种新型的光纤荧光纳米探针,具有高空间分辨率,用于无标记的亚细胞pH传感。该探针具有快速响应时间(约20秒),侵入性最小,在6.17至8.11的生物相关pH环境中具有出色的pH分辨率(0.02 pH单位)。其在培养的A549肺癌细胞上的适用性得到了证明,并在使用羰基氰化物3-氯苯腙、二氧化钛和纳米颗粒的两个典型细胞毒性案例中进一步验证了其有效性。该探针可以很容易地检测毒素/纳米颗粒给药后细胞之间的pH变化,从而能够以高时空分辨率直接监测生理或病理事件的早期发生。作为一种用于研究与pH相关的细胞机制(如炎症、细胞毒性、耐药性、致癌作用、干细胞分化等)的微创诊断工具,该平台具有极好的前景。

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