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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Suitability of invertebrate and vertebrate cells in a portable impedance-based toxicity sensor: Temperature mediated impacts on long-term survival
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Suitability of invertebrate and vertebrate cells in a portable impedance-based toxicity sensor: Temperature mediated impacts on long-term survival

机译:基于阻抗的便携式毒性传感器中无脊椎动物和脊椎动物细胞的适用性:温度介导的对长期生存的影响

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摘要

Using ECIS (electric cell-substrate impedance sensing) to monitor the impedance of vertebrate cell monolayers provides a sensitive measure of toxicity for a wide range of chemical toxicants. One major limitation to using a cell-based sensor for chemical toxicant detection in the field is the difficulty in maintaining cell viability over extended periods of time prior to use. This research was performed to identify cell lines suitable for ECIS-based toxicity sensing under field conditions. A variety of invertebrate and vertebrate cell lines were screened for their abilities to be stored for extended periods of time on an enclosed fluidic biochip with minimal maintenance. Three of the ten cell lines screened exhibited favorable portability characteristics on the biochips. Interestingly, all three cell lines were derived from ectothermic vertebrates, and the storage temperature that allowed long-term cell survival on the enclosed fluidic biochips was also at the lower end of reported body temperature for the organism, suggesting that reduced cellular metabolism may be essential for longterm survival on the biochip. Future work with the ectothermic vertebrate cells will characterize their sensitivity to a wide range of chemical toxicants to determine if they are good candidates for use in a field portable toxicity sensor.
机译:使用ECIS(电细胞-基板阻抗感测)来监视脊椎动物单层细胞的阻抗可为多种化学毒物提供灵敏的毒性度量。在本领域中使用基于细胞的传感器进行化学有毒物质检测的一个主要限制是难以在使用前长时间维持细胞活力。进行这项研究以鉴定适合在野外条件下基于ECIS进行毒性传感的细胞系。筛选了多种无脊椎动物和脊椎动物细胞系,以使其能够在最少的维护下在封闭的流体生物芯片上长时间存储的能力。筛选的十个细胞系中的三个在生物芯片上显示出良好的便携性。有趣的是,所有三种细胞系均来自于温热脊椎动物,并且允许在封闭的流体生物芯片上长期存活的储存温度也处于该生物体报告的体温的下限,这表明减少的细胞代谢可能是必不可少的在生物芯片上的长期生存。未来将对外热脊椎动物细胞进行研究,以表征其对多种化学毒物的敏感性,以确定它们是否适合用于现场便携式毒性传感器。

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