Watson Sara A, Javanmardi Yousef, Zanieri Luca, Shahreza Somayeh, Ragazzini Roberta, Bonfanti Paola, Moeendarbary Emad
Department of Mechanical Engineering UCL London UK.
Epithelial Stem Cell Biology and Regenerative Medicine Lab The Francis Crick Institute London UK.
Bioeng Transl Med. 2022 Nov 17;8(2):e10454. doi: 10.1002/btm2.10454. eCollection 2023 Mar.
The human thymus is the site of T-cell maturation and induction of central tolerance. Hematopoietic stem cell (HSC)-derived progenitors are recruited to the thymus from the fetal liver during early prenatal development and from bone marrow at later stages and postnatal life. The mechanism by which HSCs are recruited to the thymus is poorly understood in humans, though mouse models have indicated the critical role of thymic stromal cells (TSC). Here, we developed a 3D microfluidic assay based on human cells to model HSC extravasation across the endothelium into the extracellular matrix. We found that the presence of human TSC consisting of cultured thymic epithelial cells (TEC) and interstitial cells (TIC) increases the HSC extravasation rates by 3-fold. Strikingly, incorporating TEC or TIC alone is insufficient to perturb HSC extravasation rates. Furthermore, we identified complex gene expressions from interactions between endothelial cells, TEC and TIC modulates the HSCs extravasation. Our results suggest that comprehensive signaling from the complex thymic microenvironment is crucial for thymus seeding and that our system will allow manipulation of these signals with the potential to increase thymocyte migration in a therapeutic setting.
人类胸腺是T细胞成熟和中枢耐受诱导的场所。在产前早期发育过程中,造血干细胞(HSC)衍生的祖细胞从胎儿肝脏被招募到胸腺,在后期及出生后则从骨髓被招募到胸腺。尽管小鼠模型已表明胸腺基质细胞(TSC)的关键作用,但人类中HSC被招募到胸腺的机制仍知之甚少。在此,我们基于人类细胞开发了一种3D微流控分析方法,以模拟HSC穿过内皮细胞进入细胞外基质的外渗过程。我们发现,由培养的胸腺上皮细胞(TEC)和间质细胞(TIC)组成的人类TSC的存在使HSC外渗率提高了3倍。令人惊讶的是,单独加入TEC或TIC不足以扰乱HSC外渗率。此外,我们确定内皮细胞、TEC和TIC之间相互作用产生的复杂基因表达调节了HSC的外渗。我们的结果表明,来自复杂胸腺微环境的综合信号对于胸腺播种至关重要,并且我们的系统将允许对这些信号进行操控,有可能在治疗环境中增加胸腺细胞迁移。