Department of Biomedical Engineering, Cornell SIMS Laboratory, Cornell University, Ithaca, New York.
J Microsc. 2023 May;290(2):125-133. doi: 10.1111/jmi.13182. Epub 2023 Mar 14.
A secondary ion mass spectrometry (SIMS)-based isotopic imaging technique of ion microscopy was used for observing calcium influx in single renal epithelial LLC-PK cells. The CAMECA IMS-3f SIMS instrument, used in the study, is capable of producing isotopic images of single cells at 500 nm spatial resolution. Due to the high-vacuum requirements of the instrument the cells were prepared cryogenically with a freeze-fracture method and frozen freeze-dried cells were used for SIMS analysis. The influx of calcium was imaged directly by exposure of cells to Ca stable isotope in the extracellular buffer for 10 min. The Ca influx was measured at mass 44 and the distribution of endogenous calcium at mass 40 ( Ca) in the same cell. A direct comparison of interphase cells to cells undergoing division revealed that calcium influx is restricted in metaphase and post-metaphase stages of cell division. This restriction is lifted in late cytokinesis. The net influx of Ca in 10 min was approximately half under calcium influx restriction in comparison to interphase cells. Under calcium influx restriction the Ca concentration was the same between the mitotic chromosome and the cytoplasm. These observations indicate that the endoplasmic reticulum (ER) calcium uptake is compromised under calcium influx restriction in cells undergoing division.
利用基于二次离子质谱 (SIMS) 的离子显微镜同位素成像技术观察了单个肾上皮 LLC-PK 细胞中的钙内流。本研究中使用的 CAMECA IMS-3f SIMS 仪器能够以 500nm 的空间分辨率生成单细胞的同位素图像。由于仪器对高真空的要求,细胞采用冷冻断裂法进行冷冻制备,并用冷冻干燥细胞进行 SIMS 分析。通过将细胞在细胞外缓冲液中暴露于 Ca 稳定同位素 10 分钟,直接对钙内流进行成像。在质量 44 处测量 Ca 内流,并在同一细胞中测量质量 40(Ca)处的内源性钙分布。将有丝分裂细胞与正在分裂的细胞进行直接比较,结果表明钙内流在细胞分裂的中期和后期受到限制。在后期胞质分裂中,这种限制被解除。与有丝分裂细胞相比,在钙内流受限的情况下,10 分钟内的 Ca 净内流约减少一半。在钙内流受限的情况下,有丝分裂染色体和细胞质之间的 Ca 浓度相同。这些观察结果表明,在分裂细胞中,内质网 (ER) 钙摄取受到钙内流限制的影响。