bioRxiv Science⌕ Search

Biology subjects

Bei, K. F.

Publications and source records attributed to Bei, K. F..

2 recordsLinked to original sources

Identification and characterization of inflammatory LILR and fibrotic SPP1 macrophages in chronic lung allograft dysfunction

Chronic lung allograft dysfunction (CLAD) is a major cause of death after lung transplantation and manifests principally as bronchiolitis obliterans syndrome (BOS) or restrictive allograft syndrome (RAS). Although pulmonary macrophages are key regulators of lung injury and repair, their contributions to CLAD pathogenesis remain under-examined. We performed single-cell RNA sequencing-based transcriptomic analysis of CLAD (7 BOS, 7 RAS) and control lung tissue (n = 6), complemented by comparative and functional analyses. Two distinct macrophage populations were identified in CLAD: inflammatory macrophages expressing leukocyte immunoglobulin-like receptors (LILR), and fibrotic macrophages characterized by expression of osteopontin (SPP1). LILR macrophages were present in both BOS and RAS, whereas SPP1 macrophages were selectively enriched in RAS. Both populations were identified in idiopathic pulmonary fibrosis and cross-tissue comparisons. Surface marker-based sorting strategies were developed to isolate both populations. Functional studies demonstrated that LILR macrophages exhibited enhanced phagocytic activity, promoted T cell chemotaxis and secreted inflammatory mediators, whereas SPP1 macrophages produced soluble factors that drove fibroblast activation and contraction. These findings identify distinct inflammatory and fibrotic macrophage programs associated with CLAD, link RAS to conserved fibrotic macrophage states observed in pulmonary fibrosis and highlight macrophage populations as potential therapeutic targets for inflammatory and fibrotic allograft injury.

immunology↗

Emergence of a senescent and inflammatory pulmonary CD4+ T cell population prior to lung allograft failure

Lung transplantation is a life-saving therapy for end-stage pulmonary disease, but its long-term outlook is poor due to a high incidence of chronic lung allograft dysfunction (CLAD). CLAD results from alloimmune-mediated progressive fibrosis and culminates in death or the need for re-transplantation after a median of 6 years. Existing immunosuppression fails to prevent CLAD, suggesting the existence of alloimmune pathways resistant to these drugs. Here, we used mass cytometry to identify cell populations enriched in the bronchoalveolar lavage (BAL) of patients with subsequent allograft dysfunction. We show that CD4+CD57+PD1+ T cells emerge in stable lung transplant recipients in the first year post-transplant, conferring heightened risks for CLAD and death or re-transplantation. CD4+CD57+PD1+ T cells display features of senescence and secrete inflammatory cytokines. Cellular indexing by transcriptomes and epitopes (CITE-Seq) on BAL CD4+ T cells revealed the existence of 2 oligoclonal CD57+ subsets with putative cytotoxic and follicular helper functions. Finally, we observed that CD4+CD57+PD1+ T cells are associated with lung allograft fibrosis in a mouse model and in human explanted CLAD lungs, where they localize near airway epithelium and B cells. Together, our findings reveal the existence of an inflammatory T cell population that predicts future lung allograft dysfunction and may represent a rational therapeutic target in lung transplant recipients.

immunology↗