医学
关闭
肾
肾移植
肾移植
移植物排斥
免疫学
移植肾
移植
内科学
核工程
工程类
作者
Elisabet Van Loon,Baptiste Lamarthée,Jasper Callemeyn,Imane Farhat,Priyanka Koshy,Dany Anglicheau,Pietro E. Cippà,Amelie Franken,Wilfried Gwinner,Dirk Kuypers,Pierre Marquet,Anna Maria Rinaldi,Claire Tinel,Thomas Van Brussel,Amaryllis H. Van Craenenbroeck,Alexis Varin,Thibaut Vaulet,Diether Lambrechts,Maarten Naesens
标识
DOI:10.1016/j.ajt.2024.10.015
摘要
Contrary to immune cells, the response of the kidney structural cells in rejection is less established. We performed single-cell RNA sequencing on 18 kidney transplant biopsies from 14 recipients. Single-cell RNA sequencing identified cells from the major compartments of the kidney, next to infiltrated immune cells. Endothelial cells from the glomerulus, peritubular capillaries and vasa recta showed upregulation of class I and II HLA genes, adhesion molecules and cytokines and chemokines, suggesting an active participation in the alloimmune process, with compartment-specific differences. Epithelial cells including proximal tubular, loop of Henle and collecting duct cells, also showed increased expression of immune genes. Strikingly, in proximal tubule cells a strong downregulation of energy metabolism upon inflammation was observed. There was a large overlap between the cell-specific expression changes upon alloimmune inflammation and those observed in two large micro-array biopsy cohorts. In conclusion, the kidney structural cells, being the main target of the alloimmune process, appear to actively contribute herein, enhancing the damaging effects of the infiltrating immune cells. In epithelial cells, a profound shutdown of metabolism was seen upon inflammation, which associated with poor kidney function. These observations highlight the critical role of the graft in triggering and sustaining rejection after transplantation.
科研通智能强力驱动
Strongly Powered by AbleSci AI