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体外人源调节性 T 细胞迁移和抑制检测的技术考虑因素。

Technical Considerations in Ex Vivo Human Regulatory T Cell Migration and Suppression Assays.

机构信息

Department of Medical Microbiology and Parasitology, School of Medical Sciences, Universiti Sains Malaysia, Health Campus, Kubang Kerian 16150, Kelantan, Malaysia.

Microbiology Unit, Department of Biological Sciences, College of Natural and Applied Sciences, Summit University Offa, Offa Kwara State PMB 4412, Nigeria.

出版信息

Cells. 2020 Feb 20;9(2):487. doi: 10.3390/cells9020487.

Abstract

Regulatory T cells (Tregs) are renowned for maintaining homeostasis and self-tolerance through their ability to suppress immune responses. For over two decades, Tregs have been the subject of intensive research. The immunosuppressive and migratory potentials of Tregs have been exploited, especially in the areas of cancer, autoimmunity and vaccine development, and many assay protocols have since been developed. However, variations in assay conditions in different studies, as well as covert experimental factors, pose a great challenge to the reproducibility of results. Here, we focus on human Tregs derived from clinical samples and highlighted caveats that should be heeded when conducting Tregs suppression and migration assays. We particularly delineated how factors such as sample processing, choice of reagents and equipment, optimization and other experimental conditions could introduce bias into the assay, and we subsequently proffer recommendations to enhance reliability and reproducibility of results. It is hoped that prioritizing these factors will reduce the tendencies of generating false and misleading results, and thus, help improve our understanding and interpretation of Tregs functional studies.

摘要

调节性 T 细胞(Tregs)因其抑制免疫反应的能力而被誉为维持体内平衡和自身耐受的关键。二十多年来,Tregs 一直是密集研究的对象。Tregs 的免疫抑制和迁移潜力已被利用,特别是在癌症、自身免疫和疫苗开发领域,此后开发了许多检测方案。然而,不同研究中检测条件的差异以及隐蔽的实验因素对结果的可重复性构成了巨大挑战。在这里,我们专注于从临床样本中获得的人类 Tregs,并强调了在进行 Tregs 抑制和迁移检测时应注意的注意事项。我们特别阐述了样本处理、试剂和设备选择、优化和其他实验条件等因素如何会给检测带来偏差,随后提出了增强结果可靠性和可重复性的建议。希望优先考虑这些因素将减少产生错误和误导性结果的倾向,从而有助于提高我们对 Tregs 功能研究的理解和解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31db/7072784/632e06b04867/cells-09-00487-g001.jpg

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