作者
Hannah Theobald,David Alejandro Bejarano,Natalie Katzmarski,Jessica Haub,Jonas Schulte-Schrepping,Jiangyan Yu,Kevin Baßler,A. L. Ament,Collins Osei-Sarpong,Federica Piattini,Larsen Vornholz,Wouter T’Jonck,Andrea‐Hermina Györfi,Hannah Hayer,Xiang Yu,Sonia Sheoran,Amirah Al Jawazneh,Svetoslav Chakarov,Kristian Haendler,Gordon D. Brown,David L. Williams,Lidia Bosurgi,Jörg H. W. Distler,Florent Ginhoux,Jürgen Ruland,Marc Beyer,Melanie Greter,Calum C. Bain,Ana Ivonne Vazquez‐Armendariz,Manfred Köpf,Joachim L. Schultze,Andreas Schlitzer
摘要
The lung is constantly exposed to the outside world and optimal adaptation of immune responses is crucial for efficient pathogen clearance. However, mechanisms that lead to lung-associated macrophages' functional and developmental adaptation remain elusive. To reveal such mechanisms, we developed a reductionist model of environmental intranasal β-glucan exposure, allowing for the detailed interrogation of molecular mechanisms of pulmonary macrophage adaptation. Employing single-cell transcriptomics, high-dimensional imaging and flow cytometric characterization paired with in vivo and ex vivo challenge models, we reveal that pulmonary low-grade inflammation results in the development of apolipoprotein E (ApoE)-dependent monocyte-derived alveolar macrophages (ApoE