Division of Molecular Immunology, Department of Internal Medicine 3, Nikolaus-Fiebiger-Center, University Hospital Erlangen, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany.
Front Immunol. 2023 Feb 16;14:1114348. doi: 10.3389/fimmu.2023.1114348. eCollection 2023.
To achieve longevity, IgA plasma cells require a sophisticated anatomical microenvironment that provides cytokines, cell-cell contacts, and nutrients as well as metabolites. The intestinal epithelium harbors cells with distinct functions and represents an important defense line. Anti-microbial peptide-producing paneth cells, mucus-secreting goblet cells and antigen-transporting microfold (M) cells cooperate to build a protective barrier against pathogens. In addition, intestinal epithelial cells are instrumental in the transcytosis of IgA to the gut lumen, and support plasma cell survival by producing the cytokines APRIL and BAFF. Moreover, nutrients are sensed through specialized receptors such as the aryl hydrocarbon receptor (AhR) by both, intestinal epithelial cells and immune cells. However, the intestinal epithelium is highly dynamic with a high cellular turn-over rate and exposure to changing microbiota and nutritional factors. In this review, we discuss the spatial interplay of the intestinal epithelium with plasma cells and its potential contribution to IgA plasma cell generation, homing, and longevity. Moreover, we describe the impact of nutritional AhR ligands on intestinal epithelial cell-IgA plasma cell interaction. Finally, we introduce spatial transcriptomics as a new technology to address open questions in intestinal IgA plasma cell biology.
为了实现长寿,IgA 浆细胞需要一个复杂的解剖微环境,该微环境提供细胞因子、细胞间接触以及营养物质和代谢物。肠道上皮细胞包含具有不同功能的细胞,代表着重要的防御线。产生抗菌肽的 Paneth 细胞、分泌粘液的杯状细胞和抗原转运的微皱褶(M)细胞共同构建了对抗病原体的保护屏障。此外,肠道上皮细胞在将 IgA 转运到肠腔中起着重要作用,并通过产生 APRIL 和 BAFF 来支持浆细胞的存活。此外,营养物质通过肠道上皮细胞和免疫细胞的特殊受体(如芳香烃受体(AhR))进行感知。然而,肠道上皮细胞具有高度动态性,细胞周转率高,并且容易受到不断变化的微生物群和营养因素的影响。在这篇综述中,我们讨论了肠道上皮细胞与浆细胞的空间相互作用及其对 IgA 浆细胞生成、归巢和长寿的潜在贡献。此外,我们描述了营养型 AhR 配体对肠道上皮细胞-IgA 浆细胞相互作用的影响。最后,我们介绍了空间转录组学作为一种新技术,用于解决肠道 IgA 浆细胞生物学中的开放性问题。