| Literature DB >> 30518680 |
Mary Canavan1, Alice M Walsh2, Vipul Bhargava3, Sarah M Wade1, Trudy McGarry1, Viviana Marzaioli1, Barry Moran4, Monika Biniecka5, Hannah Convery5, Siobhan Wade1, Carl Orr5, Ronan Mullan6, Jean M Fletcher7, Sunil Nagpal2, Douglas J Veale5, Ursula Fearon1.
Abstract
CD141+ DC are implicated in antiviral and antitumor immunity. However, mechanistic studies in autoimmune disease are limited. This is the first study to our knowledge examining CD141+ DC in autoimmune disease, specifically inflammatory arthritis (IA). We identified significant enrichment of CD141+ DC in the inflamed synovial joint, which were transcriptionally distinct from IA and healthy control (HC) blood CD141+ DC and significantly more activated, and they exhibited increased responsiveness to TLR3. Synovial CD141+ DC represent a bone fide CD141+ DC population that is distinct from CD1c+ DC. Synovial CD141+ DC induced higher levels of CD4+ and CD8+ T cell activation compared with their peripheral blood counterparts, as made evident by expression of IFN-γ, TNF-α, and granulocyte-macrophage CSF (GMCSF). Autologous synovial CD141+ DC cocultures also induce higher levels of these cytokines, further highlighting their contribution to synovial inflammation. Synovial CD141+ DC-T cell interactions had the ability to further activate synovial fibroblasts, inducing adhesive and invasive pathogenic mechanisms. Furthermore, we identify a mechanism in which synovial CD141+ DC are activated, via ligation of the hypoxia-inducible immune-amplification receptor TREM-1, which increased synovial CD141+ DC activation, migratory capacity, and proinflammatory cytokines. Thus, synovial CD141+ DC display unique mechanistic and transcriptomic signatures, which are distinguishable from blood CD141+ DC and can contribute to synovial joint inflammation.Entities:
Keywords: Autoimmunity; Dendritic cells; Immunology
Mesh:
Substances:
Year: 2018 PMID: 30518680 PMCID: PMC6328029 DOI: 10.1172/jci.insight.95228
Source DB: PubMed Journal: JCI Insight ISSN: 2379-3708