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间充质细胞上的 CD40 活性负调控 OX40L,以维持应激条件下骨髓免疫内稳态。

CD40 Activity on Mesenchymal Cells Negatively Regulates OX40L to Maintain Bone Marrow Immune Homeostasis Under Stress Conditions.

机构信息

Department of Research, Fondazione IRCCS Istituto Nazionale Tumori, Milan, Italy.

University of Palermo School of Medicine, Palermo, Italy.

出版信息

Front Immunol. 2021 May 18;12:662048. doi: 10.3389/fimmu.2021.662048. eCollection 2021.

Abstract

BACKGROUND

Within the bone marrow (BM), mature T cells are maintained under homeostatic conditions to facilitate proper hematopoietic development. This homeostasis depends upon a peculiar elevated frequency of regulatory T cells (Tregs) and immune regulatory activities from BM-mesenchymal stem cells (BM-MSCs). In response to BM transplantation (BMT), the conditioning regimen exposes the BM to a dramatic induction of inflammatory cytokines and causes an unbalanced T-effector (Teff) and Treg ratio. This imbalance negatively impacts hematopoiesis, particularly in regard to B-cell lymphopoiesis that requires an intact cross-talk between BM-MSCs and Tregs. The mechanisms underlying the ability of BM-MSCs to restore Treg homeostasis and proper B-cell development are currently unknown.

METHODS

We studied the role of host radio-resistant cell-derived CD40 in restoring Teff/Treg homeostasis and proper B-cell development in a murine model of BMT. We characterized the host cellular source of CD40 and performed radiation chimera analyses by transplanting WT or with WT BM in the presence of T-reg and co-infusing WT or - BM-MSCs. Residual host and donor T cell expansion and activation (cytokine production) and also the expression of Treg fitness markers and conversion to Th17 were analyzed. The presence of BM-MSCs was analyzed in a human setting in correlation with the frequency of B-cell precursors in patients who underwent HSCT and variably developed acute graft-versus-host (aGVDH) disease.

RESULTS

CD40 expression is nearly undetectable in the BM, yet a recipient of WT donor chimera exhibited impaired B-cell lymphopoiesis and Treg development. Lethal irradiation promotes CD40 and OX40L expression in radio-resistant BM-MSCs through the induction of pro-inflammatory cytokines. OX40L favors Teff expansion and activation at the expense of Tregs; however, the expression of CD40 dampens OX40L expression and restores Treg homeostasis, thus facilitating proper B-cell development. Indeed, in contrast to dendritic cells in secondary lymphoid organs that require CD40 triggers to express OX40L, BM-MSCs require CD40 to inhibit OX40L expression.

CONCLUSIONS

CD40+ BM-MSCs are immune regulatory elements within BM. Loss of CD40 results in uncontrolled T cell activation due to a reduced number of Tregs, and B-cell development is consequently impaired. GVHD provides an example of how a loss of CD40+ BM-MSCs and a reduction in B-cell precursors may occur in a human setting.

摘要

背景

在骨髓(BM)中,成熟 T 细胞在维持体内平衡的条件下得以维持,从而促进适当的造血发育。这种体内平衡依赖于调节性 T 细胞(Tregs)的独特高频率和 BM 间充质干细胞(BM-MSCs)的免疫调节活性。在骨髓移植(BMT)后,预处理方案使 BM 暴露于炎症细胞因子的剧烈诱导下,并导致效应 T 细胞(Teff)和 Treg 比例失衡。这种失衡对造血产生负面影响,特别是对 B 细胞淋巴生成,这需要 BM-MSCs 和 Tregs 之间的完整交叉对话。目前尚不清楚 BM-MSCs 恢复 Treg 体内平衡和适当 B 细胞发育的能力的机制。

方法

我们研究了宿主放射性抗性细胞衍生的 CD40 在 BMT 小鼠模型中恢复 Teff/Treg 体内平衡和适当 B 细胞发育中的作用。我们描述了宿主细胞来源的 CD40,并通过在 T-reg 存在下移植 WT 或 并共同输注 WT 或 - 骨髓间充质干细胞,进行了辐射嵌合体分析。分析了残留的宿主和供体 T 细胞的扩增和激活(细胞因子产生),以及 Treg 适应性标记物的表达和向 Th17 的转化。在与接受 HSCT 并不同程度发生急性移植物抗宿主病(aGVDH)的患者的 B 细胞前体频率相关的情况下,在人类环境中分析了 骨髓间充质干细胞的存在。

结果

CD40 在 BM 中的表达几乎检测不到,但 WT 供体嵌合体的受体表现出 B 细胞淋巴生成和 Treg 发育受损。致死性照射通过诱导促炎细胞因子促进放射性抗性 BM-MSCs 中 CD40 和 OX40L 的表达。OX40L 有利于 Teff 的扩增和激活,而牺牲了 Tregs;然而,CD40 的表达抑制了 OX40L 的表达,恢复了 Treg 的体内平衡,从而促进了适当的 B 细胞发育。事实上,与二级淋巴器官中的树突状细胞不同,后者需要 CD40 触发来表达 OX40L,BM-MSCs 需要 CD40 来抑制 OX40L 的表达。

结论

CD40+ BM-MSCs 是 BM 中的免疫调节因子。由于 Tregs 数量减少,CD40 的缺失导致 T 细胞失控激活,因此 B 细胞发育受到损害。GVHD 提供了一个例子,说明在人类环境中,CD40+BM-MSCs 的缺失和 B 细胞前体的减少是如何发生的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e1b/8168593/a033adbc964a/fimmu-12-662048-g001.jpg

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