Columbia Center for Translational Immunology, Department of Medicine, Columbia University, New York, NY, United States.
Department of Surgery and Department of Microbiology & Immunology, Columbia University, New York, NY, United States.
Front Immunol. 2023 May 12;14:1159341. doi: 10.3389/fimmu.2023.1159341. eCollection 2023.
Robust human immune system (HIS) mice are created using human fetal thymus tissue and hematopoietic stem cells (HSCs). A HIS mouse model using neonatal human thymus tissue and umbilical cord blood (CB) HSCs (NeoHu) was recently described. We improved the model by removing the native murine thymus, which can also generate human T cells, and demonstrated definitively the capacity of human T cells to develop in a grafted neonatal human thymus. Human T cells derived from the neonatal thymus tissue appeared in peripheral blood early post-transplantation and CB-derived T cells appeared later. Naïve T cells were demonstrated in peripheral blood but effector memory and T peripheral helper phenotypes predominated later, in association with development of autoimmunity in some animals. Treatment of thymus grafts with 2-deoxyglucose (2-DG) increased the proportion of stem cells derived from injected HSCs, delayed onset of autoimmune disease, reduced early T cell reconstitution, and reduced effector/memory T cell conversion. Younger neonatal human thymus tissue was associated with improved T cell reconstitution. While the NeoHu model bypasses the need for fetal tissue, it has yet to demonstrate equivalent reconstitution to fetal tissue, though 2-DG can improve results by removing native thymocytes prior to transplantation.
使用人胎胸腺组织和造血干细胞(HSCs)创建了强大的人类免疫系统(HIS)小鼠。最近描述了一种使用新生人类胸腺组织和脐带血(CB)HSCs(NeoHu)的 HIS 小鼠模型。我们通过去除也可以产生人类 T 细胞的天然鼠胸腺来改进该模型,并明确证明了人 T 细胞在移植的新生人类胸腺中发育的能力。源自新生胸腺组织的人 T 细胞在移植后早期出现在外周血中,而 CB 衍生的 T 细胞出现较晚。在外周血中证明了幼稚 T 细胞的存在,但效应记忆和 T 外周辅助表型后来占主导地位,与一些动物的自身免疫发展有关。用 2-脱氧葡萄糖(2-DG)处理胸腺移植物可增加来自注射 HSCs 的干细胞的比例,延迟自身免疫性疾病的发作,减少早期 T 细胞重建,并减少效应/记忆 T 细胞的转化。较年轻的新生人类胸腺组织与改善 T 细胞重建有关。虽然 NeoHu 模型避免了对胎儿组织的需求,但它尚未证明与胎儿组织等效的重建,尽管 2-DG 可以通过在移植前去除天然胸腺细胞来改善结果。