Center for Bioscience Research and Education, Utsunomiya University, 350 Mine, Utsunomiya, Tochigi 321-8505, Japan.
Microscopy (Oxf). 2024 Jul 30;73(4):343-348. doi: 10.1093/jmicro/dfad064.
Intracellular organelles alter their morphology in response to ambient conditions such as temperature to optimize physiological activities in cells. Observing organelle dynamics at various temperatures deepens our understanding of cellular responses to the environment. Confocal laser microscopy is a powerful tool for live-cell imaging of fluorescently labeled organelles. However, the large contact area between the specimen and the ambient air on the microscope stage makes it difficult to maintain accurate cellular temperatures. Here, we present a method for precisely controlling cellular temperatures using a custom-made adaptor that can be installed on a commercially available temperature-controlled microscope stage. Using this adaptor, we observed temperature-dependent organelle dynamics in living plant cells; morphological changes in chloroplasts and peroxisomes were temperature dependent. This newly developed adaptor can be easily placed on a temperature-controlled stage to capture intracellular responses to temperature at unprecedentedly high resolution.
细胞内细胞器会根据环境条件(如温度)改变其形态,以优化细胞内的生理活动。观察不同温度下细胞器的动态变化,可加深我们对细胞如何响应环境的理解。共聚焦激光显微镜是一种用于对荧光标记细胞器进行活细胞成像的强大工具。然而,由于显微镜载物台上标本与周围空气之间的大面积接触,很难精确控制细胞温度。在这里,我们提出了一种使用定制适配器精确控制细胞温度的方法,该适配器可以安装在市售的温度控制显微镜载物台上。使用这个适配器,我们观察到了活植物细胞中温度依赖性的细胞器动态;叶绿体和过氧化物酶体的形态变化与温度有关。这个新开发的适配器可以很容易地安装在温度控制的载物台上,以以前所未有的高分辨率捕捉细胞内对温度的响应。