Diverse macrophage populations contribute to distinct manifestations of human cutaneous graft-versus-host disease

Author:

Strobl Johanna123ORCID,Gail Laura M13ORCID,Krecu Laura1ORCID,Madad Shaista24ORCID,Kleissl Lisa13ORCID,Unterluggauer Luisa1ORCID,Redl Anna13ORCID,Brazdilova Kveta13ORCID,Saluzzo Simona1ORCID,Wohlfarth Philipp5ORCID,Knaus Hanna A5ORCID,Mitterbauer Margit5ORCID,Rabitsch Werner5ORCID,Haniffa Muzlifah26ORCID,Stary Georg13ORCID

Affiliation:

1. Department of Dermatology, Medical University of Vienna , 1090 Vienna , Austria

2. Wellcome Sanger Institute , Wellcome Genome Campus, Hinxton, Cambridge , UK

3. CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences , 1090 Vienna , Austria

4. University of Cambridge , Cambridge , UK

5. Department of Internal Medicine I, Bone Marrow Transplantation Unit, Medical University of Vienna , 1090 Vienna , Austria

6. Department of Dermatology and NIHR Newcastle Biomedical Research Centre, Newcastle Hospitals NHS Foundation Trust , Newcastle upon Tyne , UK

Abstract

Abstract Background Graft-versus-host disease (GvHD) is a major life-threatening complication of allogeneic haematopoietic stem cell transplantation (HSCT), limiting the broad application of HSCT for haematological malignancies. Cutaneous GvHD is described as a post-transplant inflammatory reaction by skin-infiltrating donor T cells and remaining recipient tissue-resident memory T cells. Despite the major influence of lymphocytes on GvHD pathogenesis, the complex role of mononuclear phagocytes (MNPs) in tissues affected by GvHD is increasingly appreciated. Objectives To characterize the identity, origin and functions of MNPs in patients with acute cutaneous GvHD. Methods Using single-cell RNA sequencing and multiplex tissue immunofluorescence, we identified an increased abundance of MNPs in skin and blood from 36 patients with acute cutaneous GvHD. In cases of sex-mismatched transplantation, we used expression of X-linked genes to detect rapid tissue adaptation of newly recruited donor MNPs resulting in similar transcriptional states of host- and donor-derived macrophages within GvHD skin lesions. Results We showed that cutaneous GvHD lesions harbour expanded CD163+ tissue-resident macrophage populations with anti-inflammatory and tissue-remodelling properties including interleukin-10 cytokine production. Cell–cell interaction analyses revealed putative signalling to strengthen regulatory T-cell responses. Notably, macrophage polarization in chronic cutaneous GvHD types was proinflammatory and drastically differed from acute GvHD, supporting the notion of distinct cellular players in different clinical GvHD subtypes. Conclusions Overall, our data reveal a surprisingly dynamic role of MNPs after HSCT. Specific and time-resolved targeting to repolarize this cell subset may present a promising therapeutic strategy in combatting GvHD skin inflammation.

Funder

Medical University of Vienna

Wellcome Trust

Austrian Science Fund

Publisher

Oxford University Press (OUP)

Subject

Dermatology

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