Laboratory of Biophysics, Institute of Biomedicine and Medical Research Laboratories, University of Turku , Tykistökatu 6A, 20520 Turku, Finland.
Department of Neurosciences, Karolinska Institutet , von Eulers väg 3, 17177 Stockholm, Sweden.
Anal Chem. 2017 Feb 7;89(3):1501-1508. doi: 10.1021/acs.analchem.6b03223. Epub 2017 Jan 9.
Measurement of changes of pH at various intracellular compartments has potential to solve questions concerning the processing of endocytosed material, regulation of the acidification process, and also acidification of vesicles destined for exocytosis. To monitor these events, the nanosized optical pH probes need to provide ratiometric signals in the optically transparent biological window, target to all relevant intracellular compartments, and to facilitate imaging at subcellular resolution without interference from the biological matrix. To meet these criteria we sensitize the surface conjugated pH sensitive indicator via an upconversion process utilizing an energy transfer from the nanoparticle to the indicator. Live cells were imaged with a scanning confocal microscope equipped with a low-energy 980 nm laser excitation, which facilitated high resolution and penetration depth into the specimen, and low phototoxicity needed for long-term imaging. Our upconversion nanoparticle resonance energy transfer based sensor with polyethylenimine-coating provides high colloidal stability, enhanced cellular uptake, and distribution across cellular compartments. This distribution was modulated with membrane integrity perturbing treatment that resulted into total loss of lysosomal compartments and a dramatic pH shift of endosomal compartments. These nanoprobes are well suited for detection of pH changes in in vitro models with high biological background fluorescence and in in vivo applications, e.g., for the bioimaging of small animal models.
测量各种细胞内隔室的 pH 值变化有可能解决与内吞物质处理、酸化过程调节以及用于胞吐的小泡酸化有关的问题。为了监测这些事件,纳米级光学 pH 探针需要在光学透明的生物窗口中提供比率信号,靶向所有相关的细胞内隔室,并在不干扰生物基质的情况下促进亚细胞分辨率的成像。为了满足这些标准,我们通过上转换过程来敏化表面共轭 pH 敏感指示剂,利用纳米颗粒到指示剂的能量转移。使用配备低能量 980nm 激光激发的扫描共聚焦显微镜对活细胞进行成像,这有利于高分辨率和对样品的穿透深度,以及用于长期成像的低光毒性。我们的基于上转换纳米颗粒共振能量转移的带有聚乙烯亚胺涂层的传感器提供了高胶体稳定性、增强的细胞摄取以及在细胞隔室中的分布。这种分布可以通过破坏膜完整性的处理来调节,导致溶酶体隔室完全丢失和内体隔室的 pH 值急剧变化。这些纳米探针非常适合检测具有高生物背景荧光的体外模型中的 pH 值变化,以及在体内应用中,例如,用于小动物模型的生物成像。