Increased motility of mesenchymal stem cells is correlated with inhibition of stimulated peripheral blood mononuclear cells in vitro.

IF 1.1 Q4 CELL & TISSUE ENGINEERING Journal of Stem Cells & Regenerative Medicine Pub Date : 2017-12-18 eCollection Date: 2017-01-01
Alessandro Bertolo, David Pavlicek, Armin Gemperli, Martin Baur, Tobias Pötzel, Jivko Stoyanov
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Abstract

Immunomodulatory properties of mesenchymal stem cells (MSC) are key components of their successful applications in clinical setting. However, treatments based on MSC immunomodulation need understanding of cell characteristics before cell transplantation. We used live-imaging to test the suitability of the MSC motility as a parameter for quick prediction of the immunomodulatory potential of human MSC in regulating the activity of stimulated peripheral blood mononuclear cells (PBMC) in vitro. Bone marrow MSC, from various donors and in vitro passages, were cultured with or without stimulated PBMC. After seven days, immunomodulation was assessed by measuring PBMC proliferation, IgG production and cytokine secretion in MSC and PBMC monocultures and co-cultures, and results were correlated to MSC motility. In co-culture, we observed that MSC successfully inhibited PBMC activity, reducing PBMC proliferation and IgG production compared to PBMC monoculture. MSC modulated PBMC to reduce the secretion of TNFα and IL-10, increase IL-6, G-CSF and MCP-1, while GM-CSF was not affected. By live-imaging tracking of cell trajectories, we observed that fast moving MSC were inhibiting more efficiently stimulated PBMC compared to slow ones. In co-culture, fast MSC were more effective in inhibiting IgG production (˜30% less IgG), and secreted higher levels of IL-10 (˜10% increase) and GM-CSF (˜20% increase) compared to slower cells. Furthermore, fast MSC in monocultures produced 2.3-fold more IL-6, 1.5-fold MCP-1 and 1.2-fold G-CSF in comparison to slower cells. In conclusion, live-imaging cell tracking allowed us to develop an indicative assay of the immune-regulatory potential of MSC prior to in vivo administration. Key Words: Human mesenchymal stem cells, Immunomodulatory potential, In vitro cell motility, Stem cell transplantation.

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在体外实验中,间充质干细胞的运动性增加与受刺激的外周血单核细胞的抑制有关。
间充质干细胞(MSC)的免疫调节特性是其成功应用于临床的关键组成部分。然而,基于间充质干细胞免疫调节的治疗需要在细胞移植前了解细胞特性。我们使用实时成像技术来测试骨髓间充质干细胞运动的适用性,作为快速预测人骨髓间充质干细胞在体外调节受刺激的外周血单核细胞(PBMC)活性方面的免疫调节潜力的参数。骨髓间充质干细胞,来自不同的供体和体外传代,有或没有刺激的PBMC培养。7天后,通过测量MSC、PBMC单培养和共培养的PBMC增殖、IgG产生和细胞因子分泌来评估免疫调节,结果与MSC运动性相关。在共培养中,我们观察到与PBMC单培养相比,MSC成功抑制了PBMC的活性,减少了PBMC的增殖和IgG的产生。MSC调节PBMC降低TNFα和IL-10的分泌,增加IL-6、G-CSF和MCP-1的分泌,而GM-CSF不受影响。通过对细胞轨迹的实时成像跟踪,我们观察到快速移动的间充质干细胞比缓慢移动的间充质干细胞更有效地抑制受刺激的PBMC。在共培养中,与较慢的细胞相比,快速的MSC更有效地抑制IgG的产生(减少约30%的IgG),并且分泌更高水平的IL-10(增加约10%)和GM-CSF(增加约20%)。此外,与慢速细胞相比,单培养快速MSC产生的IL-6多2.3倍,MCP-1多1.5倍,G-CSF多1.2倍。总之,活体成像细胞跟踪使我们能够在体内给药之前对MSC的免疫调节潜力进行指示性分析。关键词:人间充质干细胞,免疫调节潜能,体外细胞运动,干细胞移植
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来源期刊
CiteScore
3.40
自引率
0.00%
发文量
5
审稿时长
14 weeks
期刊最新文献
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