Department of Surgery.
Department of Pharmacology and Therapeutics.
JCI Insight. 2024 Aug 22;9(19):e179876. doi: 10.1172/jci.insight.179876.
Lung transplantation (LTx) outcomes are impeded by ischemia/reperfusion injury (IRI) and subsequent chronic lung allograft dysfunction (CLAD). We examined the undefined role of receptor Mer tyrosine kinase (MerTK) on monocytic myeloid-derived suppressor cells (M-MDSCs) in efferocytosis to facilitate resolution of lung IRI. Single-cell RNA sequencing of lung tissue and bronchoalveolar lavage (BAL) from patients after LTx were analyzed. Murine lung hilar ligation and allogeneic orthotopic LTx models of IRI were used with BALB/c (WT), Cebpb-/- (MDSC-deficient), Mertk-/-, or MerTK-cleavage-resistant mice. A significant downregulation in MerTK-related efferocytosis genes in M-MDSC populations of patients with CLAD was observed compared with healthy individuals. In the murine IRI model, a significant increase in M-MDSCs, MerTK expression, and efferocytosis and attenuation of lung dysfunction was observed in WT mice during injury resolution that was absent in Cebpb-/- and Mertk-/- mice. Adoptive transfer of M-MDSCs in Cebpb-/- mice significantly attenuated lung dysfunction and inflammation. Additionally, in a murine orthotopic LTx model, increases in M-MDSCs were associated with resolution of lung IRI in the transplant recipients. In vitro studies demonstrated the ability of M-MDSCs to efferocytose apoptotic neutrophils in a MerTK-dependent manner. Our results suggest that MerTK-dependent efferocytosis by M-MDSCs can substantially contribute to the resolution of post-LTx IRI.
肺移植 (LTx) 结果受到缺血/再灌注损伤 (IRI) 和随后的慢性肺移植物功能障碍 (CLAD) 的阻碍。我们研究了受体 Mer 酪氨酸激酶 (MerTK) 在单核细胞髓样来源的抑制细胞 (M-MDSC) 吞噬作用中的未定义作用,以促进肺 IRI 的解决。对 LTx 后患者的肺组织和支气管肺泡灌洗液 (BAL) 进行了单细胞 RNA 测序分析。使用 BALB/c (WT)、Cebpb-/- (MDSC 缺陷)、Mertk-/- 或 MerTK 切割抗性小鼠进行肺门结扎和同种异体原位 LTx IRI 模型。与健康个体相比,CLAD 患者的 M-MDSC 群体中观察到 MerTK 相关吞噬作用基因的显著下调。在小鼠 IRI 模型中,WT 小鼠在损伤缓解期间观察到 M-MDSCs、MerTK 表达和吞噬作用显著增加,肺功能障碍减弱,而 Cebpb-/- 和 Mertk-/- 小鼠则没有。在 Cebpb-/- 小鼠中过继转移 M-MDSCs 可显著减轻肺功能障碍和炎症。此外,在小鼠原位 LTx 模型中,M-MDSC 的增加与移植受者肺 IRI 的缓解相关。体外研究表明 M-MDSC 以 MerTK 依赖的方式吞噬凋亡中性粒细胞的能力。我们的结果表明,M-MDSC 依赖 MerTK 的吞噬作用可以为 LTx 后 IRI 的解决做出重大贡献。