Electrochemical sensing of oxygen metabolism for a three-dimensional cultured model with biomimetic vascular flow

血管网 类有机物 生物医学工程 氧气 新陈代谢 微流控 化学 计算机科学 细胞生物学 生物 纳米技术 医学 材料科学 解剖 生物化学 有机化学
作者
Yuji Nashimoto,Rei Mukomoto,Takuto Imaizumi,Takato Terai,Shotaro Shishido,Kosuke Ino,Ryuji Yokokawa,Takashi Miura,Kunishige Onuma,Masahiro Inoue,Hitoshi Shiku
出处
期刊:Biosensors and Bioelectronics [Elsevier BV]
卷期号:219: 114808-114808 被引量:31
标识
DOI:10.1016/j.bios.2022.114808
摘要

Microphysiological systems (MPSs) with three-dimensional (3D) cultured models have attracted considerable interest because of their potential to mimic human health and disease conditions. Recent MPSs have shown significant advancements in engineering perfusable vascular networks integrated with 3D culture models, realizing a more physiological environment in vitro; however, a sensing system that can monitor their activity under biomimetic vascular flow is lacking. We designed an open-top microfluidic device with sensor capabilities and demonstrated its application in analyzing oxygen metabolism in vascularized 3D tissue models. We first validated the platform by using human lung fibroblast (hLF) spheroids. Then, we applied the platform to a patient-derived cancer organoid and evaluated the changes in oxygen metabolism during drug administration through the vascular network. We found that the platform could integrate a perfusable vascular network with 3D cultured cells, and the electrochemical sensor could detect the change in oxygen metabolism in a quantitative, non-invasive, and real-time manner. This platform would become a monitoring system for 3D cultured cells integrated with a perfusable vascular network.
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