用视频速率时间过程观察评价成骨细胞钙信号对拉伸反应的起始特征

Q4 Engineering
Katsuya Sato, Manabu Katayama, S. Fujisawa, T. Nakahara, K. Minami
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引用次数: 0

摘要

成骨细胞改变其细胞内钙离子浓度以响应机械刺激。尽管有报道称,成骨细胞对成骨细胞粘附的基质的拉伸有感知和反应,但其钙信号反应的动力学特征的细节仍不清楚。运动伪影,如拉伸过程中的焦点丢失,使得难以对钙信号反应进行精确的时间过程观察。因此,在本研究中,我们通过视频速率时间分辨率观察了单个成骨细胞对拉伸的细胞内钙信号反应。我们最初开发的细胞拉伸微设备能够在没有过度运动伪影(如焦点漂移)的情况下原位观察拉伸的细胞。用荧光钙指示剂Fluo 8H和荧光细胞质染料钙黄素红橙通过荧光比值法校正运动伪影的残余小影响。我们成功地通过视频速率时间分辨率检测了细胞内钙信号对拉伸的反应。结果显示,从拉伸应用到细胞内钙信号反应的启动存在时间滞后。我们比较了在两个不同的细胞区域测量的两个时间滞后:细胞的中心区域和外围区域。细胞中心区域的时滞比外围区域的时滞短。这一结果表明,成骨细胞钙对拉伸刺激的信号反应始于细胞的中心区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of initiating characteristics of osteoblastic calcium signaling responses to stretch by video rate time-course observation
Osteoblasts change their intracellular calcium ion concentration in response to mechanical stimuli. Although it has been reported that osteoblasts sense and respond to stretching of a substrate on which osteoblastic cells have adhered, the details of the dynamic characteristics of their calcium signaling response remain unclear. Motion artifacts such as loss of focus during stretch application make it difficult to conduct precise time-course observations of calcium signaling responses. Therefore, in this study, we observed intracellular calcium signaling responses to stretch in a single osteoblastic cell by video rate temporal resolution. Our originally developed cell-stretching microdevice enables in situ observation of a stretched cell without excessive motion artifacts such as focus drift. Residual minor effects of motion artifacts were corrected by the fluorescence ratiometric method with fluorescent calcium indicator Fluo 8H and fluorescent cytoplasm dye calcein red-orange. We succeeded to detect the intracellular calcium signaling response to stretch by video rate temporal resolution. The results revealed a time lag from stretch application to initiation of the intracellular calcium signaling response. We compared two time lags measured at two different cell areas: central and peripheral regions of the cell. The time lag in the central region of the cell was shorter than that in the peripheral region. This result suggests that the osteoblastic calcium signaling response to stretching stimuli initiates around the central region of the cell.
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来源期刊
Journal of Biomechanical Science and Engineering
Journal of Biomechanical Science and Engineering Engineering-Biomedical Engineering
CiteScore
0.90
自引率
0.00%
发文量
18
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