Deconvolution of monocyte responses in inflammatory bowel disease reveals an IL-1 cytokine network that regulates IL-23 in genetic and acquired IL-10 resistance

被引:57
作者
Aschenbrenner, Dominik [1 ]
Quaranta, Maria [1 ,2 ]
Banerjee, Soumya [1 ,3 ]
Ilott, Nicholas [4 ]
Jansen, Joanneke [1 ,5 ]
Steere, Boyd [6 ]
Chen, Yin-Huai [1 ]
Ho, Stephen [6 ]
Cox, Karen [6 ]
Arancibia-Carcamo, Carolina V. [1 ]
Coles, Mark [4 ]
Gaffney, Eamonn [5 ]
Travis, Simon Pl [1 ]
Denson, Lee [7 ]
Kugathasan, Subra [8 ]
Schmitz, Jochen [6 ]
Powrie, Fiona [4 ]
Sansom, Stephen N. [4 ]
Uhlig, Holm H. [1 ,9 ]
机构
[1] Univ Oxford, John Radcliffe Hosp, Translat Gastroenterol Unit, NIHR Oxford Biomed Res Ctr, Oxford OX3 9DU, England
[2] Humanitas Clin & Res Ctr, IBD Ctr, Lab Gastrointestinal Immunopathol, Milan, Italy
[3] Univ Cambridge, Dept Psychol, Cambridge, England
[4] Univ Oxford, Kennedy Inst Rheumatol, Oxford, England
[5] Univ Oxford, Wolfson Ctr Math Biol, Oxford, England
[6] Eli Lilly & Co, Immunol Translat Sci, Indianapolis, IN 46285 USA
[7] Cincinnati Childrens Hosp Med Ctr, Pediat Gastroenterol, Cincinnati, OH 45229 USA
[8] Emory Univ, Sch Med, Pediat, Atlanta, GA USA
[9] Univ Oxford, Dept Paediat, Oxford, England
关键词
GENOME-WIDE ASSOCIATION; CROHNS-DISEASE; INTESTINAL INFLAMMATION; DENDRITIC CELLS; T(H)17 CELLS; COLITIS; MACROPHAGES; ACTIVATION; INNATE; PROGNOSIS;
D O I
10.1136/gutjnl-2020-321731
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Objective Dysregulated immune responses are the cause of IBDs. Studies in mice and humans suggest a central role of interleukin (IL)-23-producing mononuclear phagocytes in disease pathogenesis. Mechanistic insights into the regulation of IL-23 are prerequisite for selective IL-23 targeting therapies as part of personalised medicine. Design We performed transcriptomic analysis to investigate IL-23 expression in human mononuclear phagocytes and peripheral blood mononuclear cells. We investigated the regulation of IL-23 expression and used single-cell RNA sequencing to derive a transcriptomic signature of hyperinflammatory monocytes. Using gene network correlation analysis, we deconvolved this signature into components associated with homeostasis and inflammation in patient biopsy samples. Results We characterised monocyte subsets of healthy individuals and patients with IBD that express IL-23. We identified autosensing and paracrine sensing of IL-1 alpha/IL-1 beta and IL-10 as key cytokines that control IL-23-producing monocytes. Whereas Mendelian genetic defects in IL-10 receptor signalling induced IL-23 secretion after lipopolysaccharide stimulation, whole bacteria exposure induced IL-23 production in controls via acquired IL-10 signalling resistance. We found a transcriptional signature of IL-23--producing inflammatory monocytes that predicted both disease and resistance to antitumour necrosis factor (TNF) therapy and differentiated that from an IL-23-associated lymphocyte differentiation signature that was present in homeostasis and in disease. Conclusion Our work identifies IL-10 and IL-1 as critical regulators of monocyte IL-23 production. We differentiate homeostatic IL-23 production from hyperinflammation-associated IL-23 production in patients with severe ulcerating active Crohn's disease and anti-TNF treatment non-responsiveness. Altogether, we identify subgroups of patients with IBD that might benefit from IL-23p19 and/or IL-1 alpha/IL-1 beta-targeting therapies upstream of IL-23.
引用
收藏
页码:1023 / 1036
页数:14
相关论文
共 54 条
[1]   Diversification of human plasmacytoid predendritic cells in response to a single stimulus [J].
Alculumbre, Solana G. ;
Saint-Andre, Violaine ;
Di Domizio, Jeremy ;
Vargas, Pablo ;
Sirven, Philemon ;
Bost, Pierre ;
Maurin, Mathieu ;
Maiuri, Paolo ;
Wery, Maxime ;
San Roman, Mabel ;
Savey, Lea ;
Touzot, Maxime ;
Terrier, Benjamin ;
Saadoun, David ;
Conrad, Curdin ;
Gilliet, Michel ;
Morillon, Antonin ;
Soumelis, Vassili .
NATURE IMMUNOLOGY, 2018, 19 (01) :63-+
[2]   Mucosal gene signatures to predict response to infliximab in patients with ulcerative colitis [J].
Arijs, I. ;
Li, K. ;
Toedter, G. ;
Quintens, R. ;
Van Lommel, L. ;
Van Steen, K. ;
Leemans, P. ;
De Hertogh, G. ;
Lemaire, K. ;
Ferrante, M. ;
Schnitzler, F. ;
Thorrez, L. ;
Ma, K. ;
Song, X. -Y R. ;
Marano, C. ;
Van Assche, G. ;
Vermeire, S. ;
Geboes, K. ;
Schuit, F. ;
Baribaud, F. ;
Rutgeerts, P. .
GUT, 2009, 58 (12) :1612-1619
[3]   An immunoregulatory and tissue-residency program modulated by c-MAF in human TH17 cells [J].
Aschenbrenner, Dominik ;
Foglierini, Mathilde ;
Jarrossay, David ;
Hu, Dan ;
Weiner, Howard L. ;
Kuchroo, Vijay K. ;
Lanzavecchia, Antonio ;
Notarbartolo, Samuele ;
Sallusto, Federica .
NATURE IMMUNOLOGY, 2018, 19 (10) :1126-+
[4]   Analysis of the human monocyte-derived macrophage transcriptome and response to lipopolysaccharide provides new insights into genetic aetiology of inflammatory bowel disease [J].
Baillie, J. Kenneth ;
Arner, Erik ;
Daub, Carsten ;
De Hoon, Michiel ;
Itoh, Masayoshi ;
Kawaji, Hideya ;
Lassmann, Timo ;
Carninci, Piero ;
Forrest, Alistair R. R. ;
Hayashizaki, Yoshihide ;
Consortium, Fantom ;
Faulkner, Geoffrey J. ;
Wells, Christine A. ;
Rehli, Michael ;
Pavli, Paul ;
Summers, Kim M. ;
Hume, David A. .
PLOS GENETICS, 2017, 13 (03)
[5]   A blood-based prognostic biomarker in IBD [J].
Biasci, Daniele ;
Lee, James C. ;
Noor, Nurulamin M. ;
Pombal, Diana R. ;
Hou, Monica ;
Lewis, Nina ;
Ahmad, Tariq ;
Hart, Ailsa ;
Parkes, Miles ;
McKinney, Eoin F. ;
Lyons, Paul A. ;
Smith, Kenneth G. C. .
GUT, 2019, 68 (08) :1386-1395
[6]   Transcriptional and functional profiling defines human small intestinal macrophage subsets [J].
Bujko, Anna ;
Atlasy, Nader ;
Landsverk, Ole J. B. ;
Richter, Lisa ;
Yaqub, Sheraz ;
Horneland, Rune ;
Oyen, Ole ;
Aandahl, Einar Martin ;
Aabakken, Lars ;
Stunnenberg, Hendrik G. ;
Baekkevold, Espen S. ;
Jahnsen, Frode L. .
JOURNAL OF EXPERIMENTAL MEDICINE, 2018, 215 (02) :441-458
[7]   Molecular classification of Crohn's disease and ulcerative colitis patients using transcriptional profiles in peripheral blood mononuclear cells [J].
Burczynski, ME ;
Peterson, RL ;
Twine, NC ;
Zuberek, KA ;
Brodeur, BJ ;
Casciotti, L ;
Maganti, V ;
Reddy, PS ;
Strahs, A ;
Immermann, F ;
Spinelli, W ;
Schwertschlag, U ;
Slager, AM ;
Cotreau, MM ;
Dorner, AJ .
JOURNAL OF MOLECULAR DIAGNOSTICS, 2006, 8 (01) :51-61
[8]   Anti-commensal IgG Drives Intestinal Inflammation and Type 17 Immunity in Ulcerative Colitis [J].
Castro-Dopico, Tomas ;
Dennison, Thomas W. ;
Ferdinand, John R. ;
Mathews, Rebeccah J. ;
Fleming, Aaron ;
Clift, Dean ;
Stewart, Benjamin J. ;
Jing, Chenzhi ;
Strongili, Konstantina ;
Labzin, Larisa I. ;
Monk, Edward J. M. ;
Saeb-Parsy, Kourosh ;
Bryant, Clare E. ;
Clare, Simon ;
Parkes, Miles ;
Clatworthy, Menna R. .
IMMUNITY, 2019, 50 (04) :1099-+
[9]   Inherited determinants of Crohn's disease and ulcerative colitis phenotypes: a genetic association study [J].
Cleynen, Isabelle ;
Boucher, Gabrielle ;
Jostins, Luke ;
Schumm, L. Philip ;
Zeissig, Sebastian ;
Ahmad, Tariq ;
Andersen, Vibeke ;
Andrews, Jane M. ;
Annese, Vito ;
Brand, Stephan ;
Brant, Steven R. ;
Cho, Judy H. ;
Daly, Mark J. ;
Dubinsky, Marla ;
Duerr, Richard H. ;
Ferguson, Lynnette R. ;
Franke, Andre ;
Gearry, Richard B. ;
Goyette, Philippe ;
Hakonarson, Hakon ;
Halfvarson, Jonas ;
Hov, Johannes R. ;
Huang, Hailang ;
Kennedy, Nicholas A. ;
Kupcinskas, Limas ;
Lawrance, Ian C. ;
Lee, James C. ;
Satsangi, Jack ;
Schreiber, Stephan ;
Theatre, Emilie ;
van der Meulen-de Jong, Andrea E. ;
Weersma, Rinse K. ;
Wilson, David C. ;
Parkes, Miles ;
Vermeire, Severine ;
Rioux, John D. ;
Mansfield, John ;
Silverberg, Mark S. ;
Radford-Smith, Graham ;
McGovern, Dermot P. B. ;
Barrett, Jeffrey C. ;
Lees, Charlie W. .
LANCET, 2016, 387 (10014) :156-167
[10]   Lung Single-Cell Signaling Interaction Map Reveals Basophil Role in Macrophage Imprinting [J].
Cohen, Merav ;
Giladi, Amir ;
Gorki, Anna-Dorothea ;
Solodkin, Dikla Gelbard ;
Zada, Mor ;
Hladik, Anastasiya ;
Miklosi, Andras ;
Salame, Tomer-Meir ;
Halpern, Keren Bahar ;
David, Eyal ;
Itzkovitz, Shalev ;
Harkany, Tibor ;
Knapp, Sylvia ;
Amit, Ido .
CELL, 2018, 175 (04) :1031-+