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三级淋巴组织是衰老肾脏中免疫细胞与促炎实质细胞之间密集相互作用的微环境。

Tertiary Lymphoid Tissues Are Microenvironments with Intensive Interactions between Immune Cells and Proinflammatory Parenchymal Cells in Aged Kidneys.

机构信息

Department of Nephrology, Graduate School of Medicine, Kyoto University, Kyoto, Japan.

RIKEN Center for Integrative Medical Sciences, Yokohama, Kanagawa, Japan.

出版信息

J Am Soc Nephrol. 2023 Oct 1;34(10):1687-1708. doi: 10.1681/ASN.0000000000000202. Epub 2023 Aug 7.

Abstract

SIGNIFICANCE STATEMENT

Ectopic lymphoid structures called tertiary lymphoid tissues (TLTs) develop in several kidney diseases and are associated with poor renal prognosis. However, the mechanisms underlying TLT expansion and their effect on renal regeneration remain unclear. The authors report that single-nucleus RNA sequencing and validation experiments demonstrate that TLTs potentially amplify inflammation in aged injured kidneys. Lymphocytes within TLTs promote proinflammatory phenotypes of the surrounding proximal tubules and fibroblasts within the TLTs via proinflammatory cytokine production. These proinflammatory parenchymal cells then interact with immune cells by chemokine or cytokine production. Such cell-cell interactions potentially increase inflammation, expand TLTs, and exacerbate kidney injury. These findings help illuminate renal TLT pathology and suggest potential therapeutic targets.

BACKGROUND

Ectopic lymphoid structures called tertiary lymphoid tissues (TLTs) develop in several kidney diseases and are associated with poor renal prognosis. However, the mechanisms that expand TLTs and underlie exacerbation of kidney injury remain unclear.

METHODS

We performed single-nucleus RNA sequencing (snRNA-seq) on aged mouse kidneys with TLTs after ischemia-reperfusion injury. The results were validated using immunostaining, in situ hybridization of murine and human kidneys, and in vitro experiments.

RESULTS

Using snRNA-seq, we identified proinflammatory and profibrotic Vcam1+ injured proximal tubules (PTs) with NF κ B and IFN-inducible transcription factor activation. VCAM1 + PTs were preferentially localized around TLTs and drove inflammation and fibrosis via the production of multiple chemokines or cytokines. Lymphocytes within TLTs expressed Tnf and Ifng at high levels, which synergistically upregulated VCAM1 and chemokine expression in cultured PT cells. In addition, snRNA-seq also identified proinflammatory and profibrotic fibroblasts, which resided within and outside TLTs, respectively. Proinflammatory fibroblasts exhibited STAT1 activation and various chemokine or cytokine production, including CXCL9/CXCL10 and B cell-activating factor, contributing to lymphocyte recruitment and survival. IFN γ upregulated the expression of these molecules in cultured fibroblasts in a STAT1-dependent manner, indicating potential bidirectional interactions between IFN γ -producing CXCR3 + T cells and proinflammatory fibroblasts within TLTs. The cellular and molecular components described in this study were confirmed in human kidneys with TLTs.

CONCLUSIONS

These findings suggest that TLTs potentially amplify inflammation by providing a microenvironment that allows intense interactions between renal parenchymal and immune cells. These interactions may serve as novel therapeutic targets in kidney diseases involving TLT formation.

摘要

意义陈述

在几种肾脏疾病中形成了称为三级淋巴组织(TLT)的异位淋巴结构,并且与不良的肾脏预后相关。然而,TLT 扩张的机制及其对肾脏再生的影响仍不清楚。作者报告说,单细胞 RNA 测序和验证实验表明,TLT 可能在衰老受伤的肾脏中放大炎症。TLT 内的淋巴细胞通过产生促炎细胞因子促进周围近端肾小管和 TLT 内成纤维细胞的促炎表型。这些促炎实质细胞然后通过趋化因子或细胞因子的产生与免疫细胞相互作用。这种细胞-细胞相互作用可能会增加炎症,扩大 TLT,并加重肾脏损伤。这些发现有助于阐明肾脏 TLT 病理学,并提示潜在的治疗靶标。

背景

在几种肾脏疾病中形成了称为三级淋巴组织(TLT)的异位淋巴结构,并且与不良的肾脏预后相关。然而,TLT 扩张的机制及其导致肾脏损伤加重的基础仍不清楚。

方法

我们对缺血再灌注损伤后具有 TLT 的老年小鼠肾脏进行了单细胞 RNA 测序(snRNA-seq)。使用免疫染色,对鼠和人肾脏的原位杂交以及体外实验验证了结果。

结果

使用 snRNA-seq,我们鉴定了具有 NFκB 和 IFN 诱导的转录因子激活的促炎和促纤维化的 VCAM1+损伤近端肾小管(PT)。VCAM1+PT 优先定位于 TLT 周围,并通过产生多种趋化因子或细胞因子来驱动炎症和纤维化。TLT 内的淋巴细胞高水平表达 Tnf 和 Ifng,它们协同上调培养的 PT 细胞中的 VCAM1 和趋化因子表达。此外,snRNA-seq 还鉴定了位于 TLT 内和外的促炎和成纤维细胞。促炎成纤维细胞表现出 STAT1 激活和各种趋化因子或细胞因子的产生,包括 CXCL9/CXCL10 和 B 细胞激活因子,有助于淋巴细胞的募集和存活。IFNγ以 STAT1 依赖性方式上调培养的成纤维细胞中这些分子的表达,表明 IFNγ 产生的 CXCR3+T 细胞与 TLT 内的促炎成纤维细胞之间存在潜在的双向相互作用。在具有 TLT 的人类肾脏中证实了本研究中描述的细胞和分子成分。

结论

这些发现表明,TLT 通过提供允许肾实质细胞和免疫细胞之间强烈相互作用的微环境,可能放大炎症。这些相互作用可能成为涉及 TLT 形成的肾脏疾病的新的治疗靶标。

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