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Detection of cardiovascular drugs and marine toxins using a multifunctional cell-based impedance biosensor system

机译:使用基于细胞的多功能阻抗生物传感器系统检测心血管药物和海洋毒素

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摘要

With growing concern about human health, relevant drug and food toxicity has drawn more and more attention. However, traditional methods like mouse bioassays cannot meet the sharply increasing demand for drug and food toxicity assessment. In this study, a multifunctional cell-based impedance biosensor system is established for drug and toxin analysis, using a cell-based impedance biosensor (CIB) as the sensitive element. Cellular growth and beating experiments were carried out to verify the multifunctionality of the system. Four typical heart-related compounds including verapamil, bay K8644, chromanol 293B, and adriamycin were used for cardiotoxicity analysis function tests of the CIB system. Also, one typical marine diarrhetic toxin, okadaic acid (OA), was used for cytotoxicity analysis function tests of the CIB system. From the results, the CIB system can reflect the drug function and toxicity directly through the cell growth and beating status. According to the results, the multifunctional CIB system may provide a high-throughput and useful method for effective screening of cardiovascular drugs and marine toxins in vitro.
机译:随着人们对健康的日益关注,相关的药物和食物毒性越来越引起人们的关注。但是,诸如小鼠生物测定法之类的传统方法无法满足对药物和食物毒性评估的急剧增长的需求。在这项研究中,使用基于细胞的阻抗生物传感器(CIB)作为敏感元素,建立了用于药物和毒素分析的多功能基于细胞的阻抗生物传感器系统。进行细胞生长和跳动实验以验证系统的多功能性。四种典型的与心脏有关的化合物,包括维拉帕米,bay K8644,苯并二氢吡喃酚293B和阿霉素,用于CIB系统的心脏毒性分析功能测试。另外,一种典型的海洋腹泻毒素冈田酸(OA)被用于CIB系统的细胞毒性分析功能测试。从结果来看,CIB系统可以直接通过细胞生长和跳动状态反映药物的功能和毒性。根据结果​​,多功能CIB系统可以提供一种高通量和有用的方法,用于体外有效地筛选心血管药物和海洋毒素。

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