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人脐带血间充质干细胞通过激活 NOD2 信号通路对 COX2 的作用减轻结肠炎小鼠模型的炎症反应。

Human umbilical cord blood mesenchymal stem cells reduce colitis in mice by activating NOD2 signaling to COX2.

机构信息

Adult Stem Cell Research Center, College of Veterinary Medicine, Seoul National University, Seoul, South Korea.

出版信息

Gastroenterology. 2013 Dec;145(6):1392-403.e1-8. doi: 10.1053/j.gastro.2013.08.033. Epub 2013 Aug 21.

Abstract

BACKGROUND & AIMS: Decreased levels or function of nucleotide-binding oligomerization domain 2 (NOD2) are associated with Crohn's disease. NOD2 regulates intestinal inflammation, and also is expressed by human umbilical cord blood-derived mesenchymal stem cells (hUCB-MSCs), to regulate their differentiation. We investigated whether NOD2 is required for the anti-inflammatory activities of MSCs in mice with colitis.

METHODS

Colitis was induced in mice by administration of dextran sulfate sodium or trinitrobenzene sulfonic acid. Mice then were given intraperitoneal injections of NOD2-activated hUCB-MSCs; colon tissues and mesenteric lymph nodes were collected for histologic analyses. A bromodeoxyuridine assay was used to determine the ability of hUCB-MSCs to inhibit proliferation of human mononuclear cells in culture.

RESULTS

Administration of hUCB-MSCs reduced the severity of colitis in mice. The anti-inflammatory effects of hUCB-MSCs were greatly increased by activation of NOD2 by its ligand, muramyl dipeptide (MDP). Administration of NOD2-activated hUCB-MSCs increased anti-inflammatory responses in colons of mice, such as production of interleukin (IL)-10 and infiltration by T regulatory cells, and reduced production of inflammatory cytokines. Proliferation of mononuclear cells was inhibited significantly by co-culture with hUCB-MSCs that had been stimulated with MDP. MDP induced prolonged production of prostaglandin (PG)E2 in hUCB-MSCs via the NOD2-RIP2 pathway, which suppressed proliferation of mononuclear cells derived from hUCB. PGE2 produced by hUCB-MSCs in response to MDP increased production of IL-10 and T regulatory cells. In mice, production of PGE2 by MSCs and subsequent production of IL-10 were required to reduce the severity of colitis.

CONCLUSIONS

Activation of NOD2 is required for the ability of hUCB-MSCs to reduce the severity of colitis in mice. NOD2 signaling increases the ability of these cells to suppress mononuclear cell proliferation by inducing production of PGE2.

摘要

背景与目的

核苷酸结合寡聚化结构域 2(NOD2)水平或功能降低与克罗恩病有关。NOD2 调节肠道炎症,也由人脐血衍生的间充质干细胞(hUCB-MSCs)表达,以调节其分化。我们研究了 NOD2 是否是 MSCs 在结肠炎小鼠中发挥抗炎作用所必需的。

方法

通过给予葡聚糖硫酸钠或三硝基苯磺酸诱导小鼠结肠炎。然后给小鼠腹腔注射 NOD2 激活的 hUCB-MSCs;收集结肠组织和肠系膜淋巴结进行组织学分析。溴脱氧尿苷测定法用于测定 hUCB-MSCs 抑制人单核细胞在培养中增殖的能力。

结果

hUCB-MSCs 的给药减轻了小鼠结肠炎的严重程度。NOD2 配体 muramyl dipeptide(MDP)激活后,hUCB-MSCs 的抗炎作用大大增强。给予 NOD2 激活的 hUCB-MSCs 增加了小鼠结肠中的抗炎反应,如白细胞介素(IL)-10 的产生和 T 调节细胞的浸润,并减少了炎症细胞因子的产生。单核细胞的增殖明显受到与用 MDP 刺激的 hUCB-MSCs 共培养的抑制。MDP 通过 NOD2-RIP2 途径诱导 hUCB-MSCs 中前列腺素(PG)E2 的长期产生,从而抑制来自 hUCB 的单核细胞的增殖。hUCB-MSCs 对 MDP 的反应产生的 PGE2 增加了 IL-10 和 T 调节细胞的产生。在小鼠中,MSCs 产生的 PGE2 和随后产生的 IL-10 是减轻结肠炎严重程度所必需的。

结论

NOD2 的激活是 hUCB-MSCs 减轻小鼠结肠炎严重程度所必需的。NOD2 信号通过诱导 PGE2 的产生增加了这些细胞抑制单核细胞增殖的能力。

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