Mesenchymal Stromal Cell (MSC) Functional Analysis-Macrophage Activation and Polarization Assays.

IF 1 Q3 BIOLOGY Bio-protocol Pub Date : 2024-03-20 DOI:10.21769/BioProtoc.4957
Hazel Y Stevens, Angela C Jimenez, Bryan Wang, Ye Li, Shivaram Selvam, Annie C Bowles-Welch
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Abstract

Stem cell-based therapies have evolved to become a key component of regenerative medicine approaches to human pathologies. Exogenous stem cell transplantation takes advantage of the potential of stem cells to self-renew, differentiate, home to sites of injury, and sufficiently evade the immune system to remain viable for the release of anti-inflammatory cytokines, chemokines, and growth factors. Common to many pathologies is the exacerbation of inflammation at the injury site by proinflammatory macrophages. An increasing body of evidence has demonstrated that mesenchymal stromal cells (MSCs) can influence the immunophenotype and function of myeloid lineage cells to promote therapeutic effects. Understanding the degree to which MSCs can modulate the phenotype of macrophages within an inflammatory environment is of interest when considering strategies for targeted cell therapies. There is a critical need for potency assays to elucidate these intercellular interactions in vitro and provide insight into potential mechanisms of action attributable to the immunomodulatory and polarizing capacities of MSCs, as well as other cells with immunomodulatory potential. However, the complexity of the responses, in terms of cell phenotypes and characteristics, timing of these interactions, and the degree to which cell contact is involved, have made the study of these interactions challenging. To provide a research tool to study the direct interactions between MSCs and macrophages, we developed a potency assay that directly co-cultures MSCs with naïve macrophages under proinflammatory conditions. Using this assay, we demonstrated changes in the macrophage secretome and phenotype, which can be used to evaluate the abilities of the cell samples to influence the cell microenvironment. These results suggest the immunomodulatory effects of MSCs on macrophages while revealing key cytokines and phenotypic changes that may inform their efficacy as potential cellular therapies. Key features • The protocol uses monocytes differentiated into naïve macrophages, which are loosely adherent, have a relatively homogeneous genetic background, and resemble peripheral blood mononuclear cells-derived macrophages. • The protocol requires a plate reader and a flow cytometer with the ability to detect six fluorophores. • The protocol provides a quantitative measurement of co-culture conditions by the addition of a fixed number of freshly thawed or culture-rescued MSCs to macrophages. • This protocol uses assessment of the secretome and cell harvest to independently verify the nature of the interactions between macrophages and MSCs.

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间充质干细胞(MSC)功能分析--巨噬细胞活化和极化试验。
以干细胞为基础的疗法已发展成为再生医学治疗人类病症的关键组成部分。外源干细胞移植利用了干细胞自我更新、分化、在损伤部位存活的潜能,并充分避开免疫系统,保持活力,释放抗炎细胞因子、趋化因子和生长因子。许多病症的共同点是促炎巨噬细胞加剧了损伤部位的炎症。越来越多的证据表明,间充质基质细胞(MSCs)可以影响髓系细胞的免疫表型和功能,从而促进治疗效果。了解间充质干细胞能在多大程度上调节炎症环境中巨噬细胞的表型,是考虑靶向细胞疗法策略时所关注的问题。目前亟需进行效力测定,以阐明体外的这些细胞间相互作用,并深入了解间叶干细胞以及其他具有免疫调节潜力的细胞的免疫调节和极化能力的潜在作用机制。然而,由于细胞表型和特征、这些相互作用的时间以及细胞接触的程度等方面的复杂性,这些相互作用的研究具有挑战性。为了提供一种研究间充质干细胞与巨噬细胞直接相互作用的研究工具,我们开发了一种在促炎条件下直接将间充质干细胞与天真巨噬细胞共培养的效力试验。利用该试验,我们证实了巨噬细胞分泌组和表型的变化,这可用于评估细胞样本影响细胞微环境的能力。这些结果表明了间充质干细胞对巨噬细胞的免疫调节作用,同时揭示了关键的细胞因子和表型变化,这些变化可能会影响间充质干细胞作为潜在细胞疗法的疗效。主要特点 - 该方案使用分化为天真巨噬细胞的单核细胞,它们具有松散的粘附性,遗传背景相对单一,类似于外周血单核细胞衍生的巨噬细胞。- 该方案需要一台平板阅读器和一台能检测六种荧光团的流式细胞仪。- 该方案通过向巨噬细胞中加入固定数量的新鲜解冻或培养回收的间充质干细胞,对共培养条件进行定量测量。- 该方案通过评估分泌组和细胞收获量来独立验证巨噬细胞和间充质干细胞之间相互作用的性质。
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