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用于化学源方向估计的基于细胞的生物混合传感器装置

Cell-Based Biohybrid Sensor Device for Chemical Source Direction Estimation.

作者信息

Oda H, Kihara K, Morimoto Y, Takeuchi S

机构信息

Department of Mechano-Informatics, Graduate School of Information Science and Technology, The University of Tokyo, Japan.

出版信息

Cyborg Bionic Syst. 2021 Jan 23;2021:8907148. doi: 10.34133/2021/8907148. eCollection 2021.

Abstract

This paper describes a method to estimate the direction from which the signal molecule reaches the sensor by using living cells. In this context, biohybrid sensors that utilize a sophisticated sensing system of cells can potentially offer high levels of chemical-detection sensitivity and selectivity. However, biohybrid-sensor-based chemical-source-direction estimation has not received research attention because the cellular response to chemicals has not been examined in the context of directional information. In our approach, we fabricated a device that can limit the interface between the cell-laden hydrogel and the chemical solution of interest to enhance the time difference over which the chemical solution reaches the cells. Chemical detection by cells that express specific receptors is reflected as the fluorescence of the calcium indicator within the cells. Our device has eight chambers that each house 3D cell-laden collagen hydrogels facing circularly outward. The device also works as a cover to prevent chemicals from permeating the hydrogel from above. In our study, by observing the time course of the fluorescence emission of each chamber, we were able to successfully estimate the chemical-source direction within an error range of 7-13°. Our results suggest that a combination of microstructure devices embedded with living cells can be used to exploit cell functionalities to yield chemical-source directional information.

摘要

本文描述了一种利用活细胞估计信号分子到达传感器方向的方法。在这种情况下,利用细胞复杂传感系统的生物杂交传感器有可能提供高水平的化学检测灵敏度和选择性。然而,基于生物杂交传感器的化学源方向估计尚未受到研究关注,因为尚未在方向信息的背景下研究细胞对化学物质的反应。在我们的方法中,我们制造了一种装置,该装置可以限制载有细胞的水凝胶与感兴趣的化学溶液之间的界面,以增加化学溶液到达细胞的时间差。表达特定受体的细胞进行的化学检测表现为细胞内钙指示剂的荧光。我们的装置有八个腔室,每个腔室都容纳面向外呈圆形排列的三维载有细胞的胶原水凝胶。该装置还起到盖子的作用,防止化学物质从上方渗透到水凝胶中。在我们的研究中,通过观察每个腔室荧光发射的时间进程,我们成功地在7 - 13°的误差范围内估计了化学源方向。我们的结果表明,嵌入活细胞的微结构装置组合可用于利用细胞功能产生化学源方向信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6db2/9494699/99e81fbdd9ec/CBSYSTEMS2021-8907148.001.jpg

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