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定量荟萃分析比较在灌注器官芯片中的细胞模型与静态细胞培养。

A quantitative meta-analysis comparing cell models in perfused organ on a chip with static cell cultures.

机构信息

Department of Health Technology, Technical University of Denmark, 2800, Kgs Lyngby, Denmark.

出版信息

Sci Rep. 2023 May 22;13(1):8233. doi: 10.1038/s41598-023-35043-5.

Abstract

As many consider organ on a chip for better in vitro models, it is timely to extract quantitative data from the literature to compare responses of cells under flow in chips to corresponding static incubations. Of 2828 screened articles, 464 articles described flow for cell culture and 146 contained correct controls and quantified data. Analysis of 1718 ratios between biomarkers measured in cells under flow and static cultures showed that the in all cell types, many biomarkers were unregulated by flow and only some specific biomarkers responded strongly to flow. Biomarkers in cells from the blood vessels walls, the intestine, tumours, pancreatic island, and the liver reacted most strongly to flow. Only 26 biomarkers were analysed in at least two different articles for a given cell type. Of these, the CYP3A4 activity in CaCo2 cells and PXR mRNA levels in hepatocytes were induced more than two-fold by flow. Furthermore, the reproducibility between articles was low as 52 of 95 articles did not show the same response to flow for a given biomarker. Flow showed overall very little improvements in 2D cultures but a slight improvement in 3D cultures suggesting that high density cell culture may benefit from flow. In conclusion, the gains of perfusion are relatively modest, larger gains are linked to specific biomarkers in certain cell types.

摘要

由于许多人认为器官芯片更适合体外模型,因此及时从文献中提取定量数据来比较细胞在芯片中流动和相应静态孵育下的反应是很有意义的。在筛选出的 2828 篇文章中,有 464 篇文章描述了用于细胞培养的流动,其中 146 篇文章包含正确的对照和量化数据。对在流动和静态培养下测量的 1718 个生物标志物比值进行分析表明,在所有细胞类型中,许多生物标志物不受流动调节,只有一些特定的生物标志物对流动有强烈反应。来自血管壁、肠道、肿瘤、胰岛和肝脏的细胞中的生物标志物对流动反应最为强烈。对于给定的细胞类型,只有 26 个生物标志物在至少两篇不同的文章中进行了分析。其中,Caco2 细胞中的 CYP3A4 活性和肝细胞中的 PXR mRNA 水平被流动诱导增加了两倍以上。此外,由于 95 篇文章中有 52 篇没有显示出给定生物标志物对流动的相同反应,因此文章之间的重现性较低。流动对 2D 培养的总体改善很小,但对 3D 培养的改善稍大,这表明高密度细胞培养可能受益于流动。总之,灌注的增益相对较小,与某些细胞类型中的特定生物标志物相关的增益较大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/062a/10203308/5fc522e47ef2/41598_2023_35043_Fig2_HTML.jpg

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