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飞秒激光脉冲对细胞间粘附成熟的时程统计评估

Time-Course Statistical Evaluation of Intercellular Adhesion Maturation by Femtosecond Laser Impulse.

作者信息

Iino Takanori, Hagiyama Man, Furuno Tadahide, Ito Akihiko, Hosokawa Yoichiroh

机构信息

Graduate School of Materials Science, Nara Institute of Science and Technology, Nara, Japan.

Department of Pathology, Kindai University Faculty of Medicine, Osaka, Japan.

出版信息

Biophys J. 2016 Nov 15;111(10):2255-2262. doi: 10.1016/j.bpj.2016.09.044.

Abstract

The maturation of intercellular adhesion is an essential process for establishing the signal transduction network in living cells. Although the maturation is naturally considered to enhance the signal transduction, the relationship between the signal transduction and the maturation process has not been revealed in detail using time-course data. Here, using a coculture of mast cells and neurites, differences in maturation between individual cells were estimated as a function of the adhesion strength by our original single-cell measurement method utilizing a laser-induced impulsive force. When an intense femtosecond laser is focused into a culture medium under a microscope, shock and stress waves are generated at the laser focal point that exert an impulsive force on individual cells. In our method, this impulse is used to break the adhesion between a mast cell and a neurite. The magnitude of the impulse is then quantified by a local force-measurement system utilizing an atomic force microscope, and the adhesion strength is estimated from the threshold of the impulse required to break the adhesion. The measurement is conducted within 1 min/cell, and thus, data on the individual differences of the adhesion strength can be obtained within only a few hours. Coculturing of neurites and mast cells for 4 h resulted in a specific adhesion that was stronger than the nonspecific adhesions between the substrate and mast cells. In the time-course investigation, we identified two distinct temporal patterns of adhesion: 1) the strength at 24 h was the same as the initial strength; and 2) the strength increased threefold from baseline and became saturated within 24 h. Based on these results, the distribution of CADM1 adhesion molecules in the neurites was suggested to be inhomogeneous, and the relationship between adhesion maturation and the signal-transduction process was considered.

摘要

细胞间黏附的成熟是在活细胞中建立信号转导网络的一个重要过程。尽管通常认为这种成熟会增强信号转导,但尚未使用时间进程数据详细揭示信号转导与成熟过程之间的关系。在这里,利用肥大细胞和神经突的共培养,通过我们原创的利用激光诱导脉冲力的单细胞测量方法,将单个细胞之间成熟的差异估计为黏附强度的函数。当飞秒强激光在显微镜下聚焦到培养基中时,在激光焦点处会产生冲击波和应力波,对单个细胞施加脉冲力。在我们的方法中,这种脉冲用于破坏肥大细胞与神经突之间的黏附。然后利用原子力显微镜通过局部力测量系统对脉冲的大小进行量化,并根据破坏黏附所需的脉冲阈值估计黏附强度。测量在每个细胞1分钟内完成,因此,仅需几个小时就能获得关于黏附强度个体差异的数据。神经突和肥大细胞共培养4小时会导致一种比底物与肥大细胞之间的非特异性黏附更强的特异性黏附。在时间进程研究中,我们确定了两种不同的黏附时间模式:1)24小时时的强度与初始强度相同;2)强度从基线增加了三倍,并在24小时内达到饱和。基于这些结果,提示神经突中CADM1黏附分子的分布是不均匀的,并对黏附成熟与信号转导过程之间的关系进行了探讨。

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