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用于毒性/活力测试的球体-3D 和单层-2D 肠道电化学生物传感器:在药物筛选、食品安全和环境污染物分析中的应用。

Spheroid-3D and Monolayer-2D Intestinal Electrochemical Biosensor for Toxicity/Viability Testing: Applications in Drug Screening, Food Safety, and Environmental Pollutant Analysis.

机构信息

MiCRA Biodiagnostics Technology Gateway , Technological University Dublin (TU Dublin - Tallaght Campus) , Tallaght, Dublin 24, D24 FKT9 , Ireland.

Hothouse , Technological University Dublin, (TU Dublin - City Campus) , Aungier Street , Dublin 2, D02 HW71 , Ireland.

出版信息

ACS Sens. 2019 Mar 22;4(3):660-669. doi: 10.1021/acssensors.8b01490. Epub 2019 Feb 19.

DOI:10.1021/acssensors.8b01490
PMID:30698007
Abstract

The rise of three-dimensional cell culture systems that provide in vivo-like environments for pharmaco-toxicological models has prompted the need for simple and robust viability assays suitable for complex cell architectural structures. This study addresses that challenge with the development of an in vitro enzyme based electrochemical sensor for viability/cytotoxicity assessment of two-dimensional (2D) monolayer and three-dimensional (3D) spheroid culture formats. The biosensor measures the cell viability/toxicity via electrochemical monitoring of the enzymatic activity of nonspecific esterases of viable cells, through the hydrolysis of 1-naphthyl acetate to 1-naphthol. The proposed sensor demonstrated strong correlation ( r = 0.979) with viable cell numbers. Furthermore, the model intestinal toxicants diclofenac (DFC, pharmaceutical), okadaic acid (OA, food-safety), and mancozeb (MZB, environmental) were used for the functional evaluation of the proposed sensor using 2D and 3D culture formats. Sensor performance showed high consistency with conventional cell viability/cytotoxicity assays (MTT/CFDA-AM) for all toxicants, with the sensor IC values matching the relevant viability LC values at the 95% confidence interval range for 2D (DCF: 1.19-1.26 mM, MZB: 10.28-14.18 μM, OA: 40.91-77.13 nM) and 3D culture formats (DCF: 1.02-4.78 mM, MZB: 11.26-15.16 μM, OA: 162.09-179.67 nM). The presented results demonstrate the feasibility of the proposed sensor as a robust endpoint screening tool for both 2D and 3D cytotoxicity assessment.

摘要

三维细胞培养系统的兴起为药物毒理学模型提供了类似于体内的环境,这促使人们需要开发简单而稳健的适用于复杂细胞结构的活力测定方法。本研究通过开发基于酶的体外电化学传感器,解决了二维(2D)单层和三维(3D)球体培养格式的细胞活力/细胞毒性评估的这一挑战。该生物传感器通过电化学监测活细胞非特异性酯酶的酶活性来测量细胞活力/细胞毒性,活细胞通过水解 1-萘乙酸酯生成 1-萘酚。所提出的传感器与活细胞数量具有很强的相关性(r = 0.979)。此外,模型肠毒物双氯芬酸(DFC,药物)、雪腐镰刀菌烯醇(OA,食品安全)和代森锰锌(MZB,环境)被用于 2D 和 3D 培养格式下对所提出的传感器的功能评估。对于所有毒物,传感器的性能与传统的细胞活力/细胞毒性测定(MTT/CFDA-AM)高度一致,传感器的 IC 值与 2D 培养格式(DCF:1.19-1.26 mM,MZB:10.28-14.18 μM,OA:40.91-77.13 nM)和 3D 培养格式(DCF:1.02-4.78 mM,MZB:11.26-15.16 μM,OA:162.09-179.67 nM)的相关活力 LC 值在 95%置信区间范围内相匹配。所呈现的结果证明了所提出的传感器作为一种强大的终点筛选工具,用于 2D 和 3D 细胞毒性评估的可行性。

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