Full text 2026

Blood vessels as primary site of rejection in murine lung transplantation

Kaes J, Hooft C, Jin X, et al.

Full text

Loading PDF… Expand reader Download

Abstract

Survival after lung transplantation lags that of other solid organ transplants. Long-term survival is hampered primarily due to chronic lung allograft dysfunction (CLAD) development. It remains elusive how (chronic) rejection is organized within the lung graft over time post-transplant. Using a model of orthotopic left lung transplantation in major mismatched mouse strains with daily immunosuppression, we aimed to study the spatiotemporal dynamics of (chronic) rejection, using micro-computed tomography imaging, flow cytometric analyses and spatial proteomics. Endothelial cells demonstrated early activation and destruction (day 7 post-transplant). The accompanying early inflammation at the vascular compartment, progressed towards aberrant tissue repair resulting in irreversible bronchovascular fibrosis and chronic graft dysfunction. We provide new insights in the spatiotemporal dynamics of (chronic) rejection with a vascular-oriented onset that may have future implications for diagnosis and treatment in clinical lung transplantation.

Keywords

Blood vessels Flow cytometry Chronic rejection Lung transplantation Spatial Proteomics Chronic Lung Allograft Dysfunction (Clad) Murine Orthotopic Left Lung Transplantation