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65GHz 近场 CMOS 介质传感器揭示,角质形成细胞死亡早期细胞内体相水含量增加,即角质细胞凋亡。

Increase in the Intracellular Bulk Water Content in the Early Phase of Cell Death of Keratinocytes, Corneoptosis, as Revealed by 65 GHz Near-Field CMOS Dielectric Sensor.

机构信息

Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.

RIKEN Center for Integrative Medical Sciences, Yokohama 230-0045, Japan.

出版信息

Molecules. 2022 Apr 30;27(9):2886. doi: 10.3390/molecules27092886.

Abstract

While bulk water and hydration water coexist in cells to support the expression of biological macromolecules, how the dynamics of water molecules, which have long been only a minor role in molecular biology research, relate to changes in cellular states such as cell death has hardly been explored so far due to the lack of evaluation techniques. In this study, we developed a high-precision measurement system that can discriminate bulk water content changes of ±0.02% (0.2 mg/cm) with single-cell-level spatial resolution based on a near-field CMOS dielectric sensor operating at 65 GHz. We applied this system to evaluate the temporal changes in the bulk water content during the cell death process of keratinocytes, called corneoptosis, using isolated SG1 (first layer of stratum granulosum) cells in vitro. A significant irreversible increase in the bulk water content was observed approximately 1 h before membrane disruption during corneoptosis, which starts with cytoplasmic high Ca signal. These findings suggest that the calcium flux may have a role in triggering the increase in the bulk water content in SG1 cells. Thus, our near-field CMOS dielectric sensor provides a valuable tool to dissect the involvement of water molecules in the various events that occur in the cell.

摘要

虽然大量水和结合水共同存在于细胞中以支持生物大分子的表达,但由于缺乏评估技术,长期以来水分子的动力学在分子生物学研究中只扮演次要角色,它们与细胞状态变化(如细胞死亡)的关系至今几乎没有得到探索。在这项研究中,我们开发了一种高精度测量系统,该系统基于在 65GHz 下工作的近场 CMOS 介电传感器,具有单细胞级空间分辨率,能够分辨出±0.02%(0.2mg/cm)的大量水含量变化。我们将该系统应用于评估角质形成细胞(称为角层细胞凋亡)死亡过程中大量水含量的时间变化,使用体外分离的 SG1(颗粒层第一层)细胞。在细胞质中钙离子信号升高引发的角层细胞凋亡开始之前约 1 小时,大量水含量就出现了不可逆转的显著增加。这些发现表明,钙通量可能在触发 SG1 细胞中大量水含量增加方面发挥作用。因此,我们的近场 CMOS 介电传感器为剖析水分子在细胞中发生的各种事件中的作用提供了一种有价值的工具。

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