Soós Ádám, Szőcs Emőke, Halasy Viktória, Jurenka Csenge, Nagy Nándor
Department of Anatomy, Histology and Embryology, Faculty of Medicine, Semmelweis University, Budapest, Hungary.
Front Immunol. 2025 Sep 4;16:1636140. doi: 10.3389/fimmu.2025.1636140. eCollection 2025.
The bursa of Fabricius (BF) is a unique primary lymphoid organ critical for B cell development in its specialized follicular microenvironment. Although the role of the follicular medulla required for B cell maturation is well characterized, the cellular components and function of the ontogenetically later emerging cortex remain less understood. Here, we combined immunocytochemistry, RNAscope, cell culture, and embryo manipulation techniques to investigate the origin and structure of the cortical compartment. Immunostaining of adult BF revealed a heterogeneous B cell distribution in the cortex, with chB6+/CXCR4 cells in the outer region and CXCR4 cells adjacent to the cortico-medullary border. The cortex is supported by CXCL12+/desmin+/vimentin+ mesenchymal reticular cells producing extracellular matrix (ECM), including tenascin-C, which is enriched in the CXCR4 region. Embryonic expression of tenascin-C coincides with the accumulation of CXCR4+ B cell precursors in the presumptive cortical compartment. Functional studies demonstrate that tenascin-C inhibits embryonic CXCR4+ B cell migration, with overexpression disrupting follicle formation. These findings highlight tenascin-C as a key regulator of B cell migration in the embryonic BF and emphasize the importance of a tenascin-C-free mesenchymal environment for the homing of CXCR4 B cell precursors during development. In adults, the complementary expression patterns of tenascin-C and CXCR4 molecules suggest that downregulation of CXCR4 is required for B cell migration through the CXCL12-tenascin-C-rich cortex before exiting the BF.
法氏囊(BF)是一个独特的初级淋巴器官,在其特殊的滤泡微环境中对B细胞发育至关重要。尽管B细胞成熟所需的滤泡髓质的作用已得到充分表征,但个体发育后期出现的皮质的细胞成分和功能仍了解较少。在这里,我们结合免疫细胞化学、RNAscope、细胞培养和胚胎操作技术来研究皮质区室的起源和结构。成年BF的免疫染色显示皮质中B细胞分布不均,外层区域有chB6+/CXCR4细胞,皮质-髓质边界附近有CXCR4细胞。皮质由产生细胞外基质(ECM)的CXCL12+/结蛋白+/波形蛋白+间充质网状细胞支持,包括在CXCR4区域富集的肌腱蛋白-C。肌腱蛋白-C的胚胎表达与推定皮质区室中CXCR4+B细胞前体的积累一致。功能研究表明,肌腱蛋白-C抑制胚胎CXCR4+B细胞迁移,过表达会破坏滤泡形成。这些发现突出了肌腱蛋白-C作为胚胎BF中B细胞迁移的关键调节因子,并强调了在发育过程中无肌腱蛋白-C的间充质环境对CXCR4 B细胞前体归巢的重要性。在成体中,肌腱蛋白-C和CXCR4分子的互补表达模式表明,B细胞在离开BF之前通过富含CXCL12-肌腱蛋白-C的皮质迁移需要CXCR4的下调。