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Universal LIMS based platform for the automated processing of cell-based assays

机译:基于通用的LIMS基于细胞的分析的自动化处理平台

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摘要

Nowadays, cell-based assays are an elementary tool for diagnostics, animal-free substance testing and basic research. Depending on the application, the spectrum ranges from simple static cell cultures in microtiter plates to dynamic co-cultures in complex micro physiological systems (organ-on-a-chip). Depending on the complexity of the assay, numerous working steps have to be performed and the data from different analysis systems have to be processed, combined and documented. A universal platform has been developed for the automated handling of cell-based assays, which combines a laboratory information management system (LIMS) with a laboratory execution system (LES), a universal laboratory automation platform and established laboratory equipment. The LIMS handles the administration of all laboratory-relevant information, the planning, control and monitoring of laboratory processes, as well as the direct and qualified processing of raw data. Using a kidney-on-achip system as an example, the realization of complex cellbased assays for the animal-free characterization of the toxicity of different antibiotics will be demonstrated. In the kidney-on-a-chip system the artificial proximal tubular barrier was formed by seeding human immortalized proximal tubule cells (RPTEC) and human blood outgrowth endothelial cells (BOEC) on ThinCert™ membranes. Transepithelial electrical resistance (TEER) was measured daily to evaluate the barrier function of the cellular layers. Fluid handling and TEER measurements were performed using a laboratory automation platform that communicates directly with the LIMS. The LES supports laboratory assistants in executing the manual handling steps of the experiments.
机译:如今,基于细胞的测定是诊断,无动物物质测试和基础研究的基础工具。根据应用,光谱范围从微量滴定板中的简单静态细胞培养物到复合微生物生理系统中的动态共培养物(片上芯片)。根据测定的复杂性,必须执行许多工作步骤,并且必须处理,组合和记录来自不同分析系统的数据。已经开发了一种通用平台,用于自动处理基于细胞的测定,这将实验室信息管理系统(LIMS)与实验室执行系统(LES),通用实验室自动化平台和建立的实验室设备相结合。 LIMS处理所有实验室相关信息的管理,实验室流程的规划,控制和监测,以及直接和合格的原始数据处理。使用肾上achip系统作为示例,将证明将对不同抗生素毒性进行无动物表征的复杂细胞分析的实现。在肾上腺系统中,通过在Thincert™膜上播种人造永生化的近端小管细胞(RPTEC)和人血液出生内皮细胞(BOEC)形成人工近端管状屏障。每天测量TRANSEPITHELIAL电阻(TEER)以评估细胞层的屏障功能。使用直接与LIMS通信的实验室自动化平台进行流体处理和转型测量。 LES支持实验室助理执行实验的手动处理步骤。

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