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在集成微流控装置中分析离体免疫细胞的分泌功能。

Secretion Function Analysis of Ex Vivo Immune Cells in an Integrated Microfluidic Device.

机构信息

Laboratory of Microtechnologies Applied to Biomedicine, Centro de Investigación y Estudios Avanzados del Instituto Politécnico Nacional (Cinvestav), Monterrey, NL, Mexico.

Research Laboratory of Electronics, Massachusetts Institute of Technology (MIT), Cambridge, MA, USA.

出版信息

Methods Mol Biol. 2023;2679:269-285. doi: 10.1007/978-1-0716-3271-0_19.

Abstract

Immune cells play a major role in the development of cancer, from being able to inhibit it by secreting pro-inflammatory mediators, to assist in its development by secreting growth factors, immunosuppressive mediators, and ECM-modifying enzymes. Therefore, the ex vivo analysis of the secretion function of immune cells can be employed as a reliable prognostic biomarker in cancer. However, one limiting factor in current approaches to probe the ex vivo secretion function of cells is their low throughput and the consumption of large quantities of sample. Microfluidics provides a unique advantage, by being able to integrate different components, such as cell culture and biosensors in a monolithic microdevice; it can increase the analytical throughput and leverage it with its intrinsic low sample requirement. Furthermore, the integration of fluid control elements also allows this analysis to be highly automatable, leading to increases in consistency in the results. Here, we describe an approach to analyze the ex vivo secretion function of immune cells using a highly integrated microfluidic device.

摘要

免疫细胞在癌症的发展中起着重要作用,它们既能通过分泌促炎介质来抑制癌症,也能通过分泌生长因子、免疫抑制介质和细胞外基质修饰酶来协助癌症发展。因此,体外分析免疫细胞的分泌功能可以作为癌症可靠的预后生物标志物。然而,目前探测细胞体外分泌功能的方法存在一个局限性,就是它们的通量低,需要消耗大量的样本。微流控技术具有独特的优势,它可以将细胞培养和生物传感器等不同组件集成在一个整体的微设备中;它可以提高分析的通量,并利用其内在的低样本需求来提高通量。此外,流体控制元件的集成也使得这种分析能够高度自动化,从而提高结果的一致性。在这里,我们描述了一种使用高度集成的微流控设备来分析免疫细胞体外分泌功能的方法。

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