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传感器在脑血屏障芯片设备中的应用:当前实践和未来方向。

The Use of Sensors in Blood-Brain Barrier-on-a-Chip Devices: Current Practice and Future Directions.

机构信息

Institute of Biophysics, Biological Research Centre, H-6726 Szeged, Hungary.

Doctoral School of Biology, University of Szeged, H-6720 Szeged, Hungary.

出版信息

Biosensors (Basel). 2023 Mar 8;13(3):357. doi: 10.3390/bios13030357.

Abstract

The application of lab-on-a-chip technologies in in vitro cell culturing swiftly resulted in improved models of human organs compared to static culture insert-based ones. These chip devices provide controlled cell culture environments to mimic physiological functions and properties. Models of the blood-brain barrier (BBB) especially profited from this advanced technological approach. The BBB represents the tightest endothelial barrier within the vasculature with high electric resistance and low passive permeability, providing a controlled interface between the circulation and the brain. The multi-cell type dynamic BBB-on-chip models are in demand in several fields as alternatives to expensive animal studies or static culture inserts methods. Their combination with integrated biosensors provides real-time and noninvasive monitoring of the integrity of the BBB and of the presence and concentration of agents contributing to the physiological and metabolic functions and pathologies. In this review, we describe built-in sensors to characterize BBB models via quasi-direct current and electrical impedance measurements, as well as the different types of biosensors for the detection of metabolites, drugs, or toxic agents. We also give an outlook on the future of the field, with potential combinations of existing methods and possible improvements of current techniques.

摘要

芯片实验室技术在体外细胞培养中的应用迅速改善了人体器官模型,与基于静态培养插入物的模型相比。这些芯片设备提供了受控的细胞培养环境,以模拟生理功能和特性。血脑屏障 (BBB) 模型尤其受益于这种先进的技术方法。BBB 是脉管系统中最紧密的内皮屏障,具有高电阻和低被动通透性,为循环系统和大脑之间提供了一个受控的界面。多细胞类型的动态 BBB 芯片模型在多个领域都有需求,可以替代昂贵的动物研究或静态培养插入物方法。它们与集成生物传感器的结合提供了对 BBB 完整性以及对有助于生理和代谢功能和病理学的物质的存在和浓度的实时和非侵入性监测。在这篇综述中,我们描述了内置传感器,通过准直流和阻抗测量来表征 BBB 模型,以及用于检测代谢物、药物或有毒物质的不同类型的生物传感器。我们还展望了该领域的未来,包括现有方法的潜在组合和当前技术的可能改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d06/10046513/13939e9b09f0/biosensors-13-00357-g001.jpg

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