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骨髓间充质干细胞的预处理极大地增强了其促进 IL-6 依赖性 M2b 极化的潜力。

Preconditioning of bone marrow-derived mesenchymal stem cells highly strengthens their potential to promote IL-6-dependent M2b polarization.

机构信息

Department of Cardiothoracic Surgery, Heart Center of the University of Cologne, Cologne, Germany.

出版信息

Stem Cell Res Ther. 2018 Oct 25;9(1):286. doi: 10.1186/s13287-018-1039-2.

Abstract

BACKGROUND

During the last decade, mesenchymal stem cells (MSCs) have gained much attention in the field of regenerative medicine due to their capacity to differentiate into different cell types and to promote immunosuppressive effects. However, the underlying mechanism of MSC-mediated immunoregulation is not fully understood so far. Macrophages are distinguished in classical activated, pro-inflammatory M1 and alternatively activated M2 cells, which possess different functions and transcriptional profiles with respect to inflammatory responses. As polarization is not fixed, macrophage functional plasticity might be modulated by the microenvironment allowing them to rapidly react to danger signals and maintaining tissue homeostasis.

METHODS

Murine MSCs were preconditioned with IL-1ß and IFN-ɣ to enhance their immunosuppressive capacity regarding macrophage polarization under M1- and M2a-polarizing conditions. Macrophage polarization was analyzed by real-time PCR, flow cytometry, and cytokine detection in culture supernatants. The role of MSC-derived nitric oxide (NO), prostaglandin E2 (PGE2), and IL-6 in this process has been evaluated using siRNA transfection and IL-6 receptor-deficient macrophages, respectively.

RESULTS

Preconditioned, but not unprimed, MSCs secreted high levels of NO, IL-6, and PGE2. Co-culture with macrophages (M0) in the presence of M1 inducers (LPS + IFN-ɣ) led to significant reduction of CD86 and iNOS protein in macrophages and diminished TNF-α secretion. Additionally, CD86 and iNOS protein expression as well as NO and IL-10 secretion were markedly increased under M2a-polarizing culture conditions (IL-4). MSC-dependent macrophage polarization did not depend on direct cell-cell contact. Co-culturing in the presence of LPS and IFN-ɣ resulted in the upregulation of M2a, M2b, and M2c marker genes, whereas in the presence of IL-4 only M2b markers were significantly increased. In turn, IL-10-producing regulatory M2b cells significantly inhibited IFN-ɣ expression in CD4 T lymphocytes. Finally, we show that MSC-mediated macrophage polarization strongly depends on IL-6, whereas a minor role for NO and PGE2 was found.

CONCLUSIONS

Preconditioning of MSCs highly strengthens their capacity to regulate macrophage features and to promote immunosuppression. Repression of M1 polarization during inflammation and M2b polarization under anti-inflammatory conditions strongly depend on functional IL-6 signaling in macrophages. The potential benefit of preconditioned MSCs and IL-6 should be considered for future clinical treatment.

摘要

背景

在过去的十年中,间充质干细胞(MSCs)因其能够分化为不同的细胞类型并促进免疫抑制作用而在再生医学领域受到广泛关注。然而,MSC 介导的免疫调节的潜在机制至今尚未完全了解。巨噬细胞分为经典激活的促炎 M1 型和替代激活的 M2 型细胞,它们在炎症反应方面具有不同的功能和转录谱。由于极化不是固定的,因此巨噬细胞功能的可塑性可能会受到微环境的调节,使其能够快速对危险信号做出反应并维持组织内稳态。

方法

用白细胞介素 1β(IL-1β)和干扰素 γ(IFN-γ)预处理小鼠 MSCs,以增强其在 M1 和 M2a 极化条件下对巨噬细胞极化的免疫抑制能力。通过实时 PCR、流式细胞术和细胞培养上清液中的细胞因子检测分析巨噬细胞的极化。使用 siRNA 转染和 IL-6 受体缺陷型巨噬细胞分别评估 MSC 衍生的一氧化氮(NO)、前列腺素 E2(PGE2)和白细胞介素 6(IL-6)在该过程中的作用。

结果

预处理而非未预处理的 MSC 分泌高水平的 NO、IL-6 和 PGE2。在存在 M1 诱导剂(LPS+IFN-γ)的情况下与巨噬细胞(M0)共培养导致巨噬细胞中 CD86 和诱导型一氧化氮合酶(iNOS)蛋白的显著减少和 TNF-α 的分泌减少。此外,在 M2a 极化培养条件(IL-4)下,CD86 和 iNOS 蛋白表达以及 NO 和 IL-10 分泌明显增加。MSC 依赖性巨噬细胞极化不依赖于直接的细胞-细胞接触。在 LPS 和 IFN-γ 的存在下共培养导致 M2a、M2b 和 M2c 标记基因的上调,而在 IL-4 的存在下仅 M2b 标记物显著增加。反过来,产生白细胞介素 10 的调节性 M2b 细胞显著抑制 CD4 T 淋巴细胞中 IFN-γ 的表达。最后,我们表明 MSC 介导的巨噬细胞极化强烈依赖于 IL-6,而 NO 和 PGE2 则发挥次要作用。

结论

MSC 的预处理极大地增强了其调节巨噬细胞特征和促进免疫抑制的能力。在炎症过程中抑制 M1 极化和在抗炎条件下诱导 M2b 极化强烈依赖于巨噬细胞中功能性 IL-6 信号传导。预处理的 MSC 和 IL-6 的潜在益处应在未来的临床治疗中考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7fa/6202843/63d3353bf9ca/13287_2018_1039_Fig1_HTML.jpg

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