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IL-4/CXCL12 循环是滤泡性淋巴瘤中淋巴样基质功能的关键调节因子。

IL-4/CXCL12 loop is a key regulator of lymphoid stroma function in follicular lymphoma.

机构信息

UMR U1236, INSERM, Université Rennes 1, Etablissement Français du Sang Bretagne, Equipe Labellisée Ligue Contre le Cancer, Rennes, France.

Centre Hospitalier Universitaire (CHU) de Rennes, Service d'Hématologie Clinique, Rennes, France.

出版信息

Blood. 2017 May 4;129(18):2507-2518. doi: 10.1182/blood-2016-08-737239. Epub 2017 Feb 15.

Abstract

Follicular lymphoma (FL) is the most frequent indolent lymphoma and is characterized by the accumulation of germinal center-derived malignant B cells engaged in a bidirectional crosstalk with their supportive microenvironment in invaded lymph nodes (LNs) and bone marrow (BM). T follicular helper (T) cells and infiltrating stromal cells have been shown to favor FL B-cell growth, but the mechanisms of their protumoral effect and how the LN/BM microenvironment is converted into a lymphoma-permissive cell niche remain poorly understood. We demonstrated here that FL-infiltrating LN and BM stromal cells overexpressed CXCL12 in situ. Interleukin-4 high (IL-4) FL-T cells, unlike FL B cells themselves, triggered CXCL12 upregulation in human stromal cell precursors. In agreement, expression of CXCL12 was associated with IL-4 expression and signaling within the FL BM and LN niches. This IL-4/CXCL12 axis was amplified in activated lymphoid stromal cells as shown in our in vitro model of human lymphoid stroma differentiation and in an inducible mouse model of ectopic lymphoid organ formation. Finally, CXCL12 triggered primary FL B-cell activation, migration, and adhesion, a process antagonized by BTK and PI3K inhibitors. These data identified the IL-4/CXCL12 loop as a previously unrecognized pathway involved in lymphoid stroma polarization and as a potential therapeutic target in FL patients.

摘要

滤泡性淋巴瘤(FL)是最常见的惰性淋巴瘤,其特征是生发中心来源的恶性 B 细胞在浸润的淋巴结(LN)和骨髓(BM)中与其支持性微环境发生双向交流而积累。已经表明滤泡辅助 T(Tfh)细胞和浸润的基质细胞有利于 FL B 细胞的生长,但它们促进肿瘤的机制以及 LN/BM 微环境如何转化为淋巴瘤允许的细胞龛仍知之甚少。我们在这里证明,FL 浸润的 LN 和 BM 基质细胞原位过表达 CXCL12。与 FL B 细胞本身不同,高白细胞介素 4(IL-4)FL-T 细胞在人基质细胞前体中触发 CXCL12 的上调。一致地,CXCL12 的表达与 FL BM 和 LN 龛中的 IL-4 表达和信号相关。如我们的体外人类淋巴样基质分化模型和异位淋巴样器官形成的诱导性小鼠模型所示,这种 IL-4/CXCL12 轴在激活的淋巴样基质细胞中被放大。最后,CXCL12 触发原发性 FL B 细胞的激活、迁移和黏附,BTK 和 PI3K 抑制剂拮抗该过程。这些数据确定了 IL-4/CXCL12 环作为参与淋巴样基质极化的先前未被识别的途径,并作为 FL 患者的潜在治疗靶点。

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