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文化密度影响人类巨噬细胞的功能表型。

Culture density influences the functional phenotype of human macrophages.

机构信息

Cardiovascular Research Institute Maastricht (CARIM), Department of Pathology, Maastricht University Medical Center (UMC), Maastricht, Netherlands.

BHF Centre for Cardiovascular Science, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

Front Immunol. 2023 Mar 10;14:1078591. doi: 10.3389/fimmu.2023.1078591. eCollection 2023.

Abstract

Macrophages (MΦ) are commonly cultured as a model of their biology and functions in tissues. Recent evidence suggests MΦ to engage in quorum sensing, adapting their functions in response to cues about the proximity of neighboring cells. However, culture density is frequently overlooked in the standardization of culture protocols as well as the interpretation of results obtained . In this study, we investigated how the functional phenotype of MΦ was influenced by culture density. We assessed 10 core functions of human MΦ derived from the THP-1 cell line as well as primary monocyte-derived MΦ. THP-1 MΦ showed increasing phagocytic activity and proliferation with increasing density but decreasing lipid uptake, inflammasome activation, mitochondrial stress, and secretion of cytokines IL-10, IL-6, IL-1β, IL-8, and TNF-α. For THP-1 MΦ, the functional profile displayed a consistent trajectory with increasing density when exceeding a threshold (of 0.2 x 10 cells/mm), as visualized by principal component analysis. Culture density was also found to affect monocyte-derived MΦ, with functional implications that were distinct from those observed in THP-1 MΦ, suggesting particular relevance of density effects for cell lines. With increasing density, monocyte-derived MΦ exhibited progressively increased phagocytosis, increased inflammasome activation, and decreased mitochondrial stress, whereas lipid uptake was unaffected. These different findings in THP-1 MΦ and monocyte-derived MΦ could be attributed to the colony-forming growth pattern of THP-1 MΦ. At the lowest density, the distance to the closest neighboring cells showed greater influence on THP-1 MΦ than monocyte-derived MΦ. In addition, functional differences between monocyte-derived MΦ from different donors could at least partly be attributed to differences in culture density. Our findings demonstrate the importance of culture density for MΦ function and demand for awareness of culture density when conducting and interpreting experiments.

摘要

巨噬细胞(MΦ)通常被培养为其生物学和在组织中功能的模型。最近的证据表明,MΦ 参与群体感应,根据邻近细胞的接近程度来调整其功能。然而,在培养方案的标准化以及对获得的结果的解释中,培养密度经常被忽视。在这项研究中,我们研究了 MΦ 的功能表型如何受到培养密度的影响。我们评估了源自 THP-1 细胞系和原代单核细胞衍生的 MΦ 的 10 种核心功能。THP-1 MΦ 的吞噬活性和增殖随着密度的增加而增加,但脂质摄取、炎症小体激活、线粒体应激和细胞因子 IL-10、IL-6、IL-1β、IL-8 和 TNF-α的分泌减少。对于 THP-1 MΦ,当超过阈值(0.2 x 10 个细胞/mm)时,功能谱随着密度的增加呈现出一致的轨迹,这可以通过主成分分析来可视化。研究还发现培养密度会影响单核细胞衍生的 MΦ,其功能影响与 THP-1 MΦ 观察到的不同,表明密度效应对细胞系具有特殊意义。随着密度的增加,单核细胞衍生的 MΦ表现出逐渐增加的吞噬作用、增加的炎症小体激活和减少的线粒体应激,而脂质摄取不受影响。THP-1 MΦ 和单核细胞衍生的 MΦ 中的这些不同发现可以归因于 THP-1 MΦ 的集落形成生长模式。在最低密度下,与最近邻细胞的距离对 THP-1 MΦ 的影响大于单核细胞衍生的 MΦ。此外,来自不同供体的单核细胞衍生的 MΦ 之间的功能差异至少部分归因于培养密度的差异。我们的研究结果表明培养密度对 MΦ 功能的重要性,并呼吁在进行和解释实验时注意培养密度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1e8/10036771/07f2d8c21593/fimmu-14-1078591-g001.jpg

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