Program in Immunology, Clinical Research Division, and.
Immunotherapy Integrated Research Center, Fred Hutchinson Cancer Research Center, Seattle, WA.
Blood. 2022 Jun 23;139(25):3655-3666. doi: 10.1182/blood.2021013950.
Prolonged lymphopenia represents a major clinical problem after cytoreductive therapies such as chemotherapy and the conditioning required for hematopoietic stem cell transplant (HCT), contributing to the risk of infections and malignant relapse. Restoration of T-cell immunity depends on tissue regeneration in the thymus, the primary site of T-cell development, although the capacity of the thymus to repair itself diminishes over its lifespan. However, although boosting thymic function and T-cell reconstitution is of considerable clinical importance, there are currently no approved therapies for treating lymphopenia. Here we found that zinc (Zn) is critically important for both normal T-cell development and repair after acute damage. Accumulated Zn in thymocytes during development was released into the extracellular milieu after HCT conditioning, where it triggered regeneration by stimulating endothelial cell production of BMP4 via the cell surface receptor GPR39. Dietary supplementation of Zn was sufficient to promote thymic function in a mouse model of allogeneic HCT, including enhancing the number of recent thymic emigrants in circulation although direct targeting of GPR39 with a small molecule agonist enhanced thymic function without the need for prior Zn accumulation in thymocytes. Together, these findings not only define an important pathway underlying tissue regeneration but also offer an innovative preclinical approach to treat lymphopenia in HCT recipients.
淋巴细胞减少症是细胞减灭治疗(如化疗)和造血干细胞移植(HCT)所需的条件后出现的一个主要临床问题,会增加感染和恶性复发的风险。T 细胞免疫的恢复依赖于胸腺中的组织再生,胸腺是 T 细胞发育的主要部位,尽管胸腺自身修复的能力会随着其寿命的衰减而降低。然而,尽管增强胸腺功能和 T 细胞重建具有重要的临床意义,但目前尚无治疗淋巴细胞减少症的批准疗法。在这里,我们发现锌(Zn)对于正常 T 细胞的发育和急性损伤后的修复都至关重要。在 HCT 条件处理过程中,胸腺细胞中积累的 Zn 被释放到细胞外环境中,在那里通过细胞表面受体 GPR39 刺激内皮细胞产生 BMP4 来触发再生。在同种异体 HCT 的小鼠模型中,膳食补充 Zn 足以促进胸腺功能,包括增加循环中近期胸腺迁出细胞的数量,尽管用小分子激动剂直接靶向 GPR39 增强了胸腺功能,而无需预先在胸腺细胞中积累 Zn。这些发现不仅定义了组织再生的重要途径,而且为治疗 HCT 受者的淋巴细胞减少症提供了一种创新的临床前方法。