M1 and M2 Macrophages Differentially Regulate Colonic Crypt Renewal

被引:0
作者
Raveenthiraraj, Sathuwarman [1 ]
Awanis, Griselda [1 ]
Chieppa, Marcello [2 ]
O'Connell, Amy E. [3 ,4 ]
Sobolewski, Anastasia [1 ]
机构
[1] Univ East Anglia, Sch Pharm, Norwich Res Pk, Norwich NR4 7TJ, Norfolk, England
[2] Univ Solento, Ctr Ecotekne, Dept Biol & Environm Sci & Technol, I-73043 Lecce, Italy
[3] Boston Childrens Hosp, Div Newborn Med, Boston, MA 02115 USA
[4] Harvard Med Sch, Dept Pediat, Boston, MA 02115 USA
关键词
stem cells; Lgr5; macrophages; colon; inflammation; HUMAN INTESTINAL MACROPHAGES; STEM-CELL; ULCERATIVE-COLITIS; MONOCYTE; BARRIER; NOTCH;
D O I
10.1093/ibd/izad270
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Background The colonic epithelium is the most rapidly renewing tissue in the body and is organized into a single cell layer of invaginations called crypts. Crypt renewal occurs through Lgr5 + gut stem cells situated at the crypt base, which divide, produce daughter cells that proliferate, migrate, differentiate into all the cells required for normal gut function, and are finally shed into the crypt lumen. In health, this rapid renewal helps maintain barrier function next to the hostile gut microbial luminal environment. Inflammation results in an influx of immune cells including inflammatory M1 macrophages into the gut mucosa next to the crypt epithelium, but the direct effect of macrophages on crypt regeneration and renewal are poorly understood.Methods Using an in vitro macrophage-crypt coculture model, we show that homeostatic M2 macrophages and inflammatory M1 macrophages confer different effects on the crypt epithelium.Results Both M1 and M2 increase crypt cell proliferation, with M2 macrophages requiring physical contact with the crypt epithelium, whereas M1 macrophages exert their effect through a secreted factor. Only M1 macrophages reduce goblet and Tuft cell numbers and increase Lgr5 + crypt stem cell numbers, all dependent on physical contact with the crypt epithelium. Further studies showed that M1 macrophages increase the Wnt signaling pathways cyclin D1 and LEF1 through physical contact rather than a secreted factor.Conclusions These findings highlight the importance of understanding distinct cellular interactions and direct dialogue between cells and increase our understanding of the contribution of different immune cell subtypes on crypt cell biology during inflammation. Inflammatory macrophages but not homeostatic macrophages modulate crypt epithelial cell differentiation. Direct physical contact between an inflammatory macrophage and the crypt epithelium is required for regulation of differentiation, but crypt proliferation is via a secreted factor.
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页码:1138 / 1150
页数:13
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共 41 条
[1]   Constant replenishment from circulating monocytes maintains the macrophage pool in the intestine of adult mice [J].
Bain, Calum C. ;
Bravo-Blas, Alberto ;
Scott, Charlotte L. ;
Perdiguero, Elisa Gomez ;
Geissmann, Frederic ;
Henri, Sandrine ;
Malissen, Bernard ;
Osborne, Lisa C. ;
Artis, David ;
Mowat, Allan Mci .
NATURE IMMUNOLOGY, 2014, 15 (10) :929-U236
[2]   Identification of stem cells in small intestine and colon by marker gene Lgr5 [J].
Barker, Nick ;
van Es, Johan H. ;
Kuipers, Jeroen ;
Kujala, Pekka ;
van den Born, Maaike ;
Cozijnsen, Miranda ;
Haegebarth, Andrea ;
Korving, Jeroen ;
Begthel, Harry ;
Peters, Peter J. ;
Clevers, Hans .
NATURE, 2007, 449 (7165) :1003-U1
[3]   Macrophages Maintain Epithelium Integrity by Limiting Fungal Product Absorption [J].
Chikina, Aleksandra S. ;
Nadalin, Francesca ;
Maurin, Mathieu ;
San-Roman, Mabel ;
Thomas-Bonafos, Thibault ;
Li, Xin, V ;
Lameiras, Sonia ;
Baulande, Sylvain ;
Henri, Sandrine ;
Malissen, Bernard ;
Mariano, Livia Lacerda ;
Barbazan, Jorge ;
Blander, J. Magarian ;
Iliev, Iliyan D. ;
Vignjevic, Danijela Matic ;
Lennon-Dumenil, Ana-Maria .
CELL, 2020, 183 (02) :411-+
[4]   Meta-Analysis of the Turnover of Intestinal Epithelia in Preclinical Animal Species and Humans [J].
Darwich, Adam S. ;
Aslam, Umair ;
Ashcroft, Darren M. ;
Rostami-Hodjegan, Amin .
DRUG METABOLISM AND DISPOSITION, 2014, 42 (12) :2016-2022
[5]   Alteration of colonic stem cell gene signatures during the regenerative response to injury [J].
Davidson, Laurie A. ;
Goldsby, Jennifer S. ;
Callaway, Evelyn S. ;
Shah, Manasvi S. ;
Barker, Nick ;
Chapkin, Robert S. .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2012, 1822 (10) :1600-1607
[6]   Self-Maintaining Gut Macrophages Are Essential for Intestinal Homeostasis [J].
De Schepper, Sebastiaan ;
Verheijden, Simon ;
Aguilera-Lizarraga, Javier ;
Viola, Maria Francesca ;
Boesmans, Werend ;
Stakenborg, Nathalie ;
Voytyuk, Iryna ;
Smidt, Inga ;
Boeckx, Bram ;
de Casterle, Isabelle Dierckx ;
Baekelandt, Veerle ;
Dominguez, Erika Gonzalez ;
Mack, Matthias ;
Depoortere, Inge ;
De Strooper, Bart ;
Sprangers, Ben ;
Himmelreich, Uwe ;
Soenen, Stefaan ;
Guilliams, Martin ;
Vanden Berghe, Pieter ;
Jones, Elizabeth ;
Lambrechts, Diether ;
Boeckxstaens, Guy .
CELL, 2018, 175 (02) :400-+
[7]   Human Intestinal Macrophages Are Involved in the Pathology of Both Ulcerative Colitis and Crohn Disease [J].
Dharmasiri, Suranga ;
Garrido-Martin, Eva M. ;
Harris, Richard J. ;
Bateman, Adrian C. ;
Collins, Jane E. ;
Cummings, J. R. Fraser ;
Sanchez-Elsner, Tilman .
INFLAMMATORY BOWEL DISEASES, 2021, 27 (10) :1641-1652
[8]   Visualization of a short-range Wnt gradient in the intestinal stem-cell niche [J].
Farin, Homier F. ;
Jordens, Ingrid ;
Mosa, Mohammed H. ;
Basak, Onur ;
Korving, Jeroen ;
Tauriello, Daniele V. F. ;
de Punder, Karin ;
Angers, Stephane ;
Peters, Peter J. ;
Maurice, Madelon M. ;
Clevers, Hans .
NATURE, 2016, 530 (7590) :340-+
[9]   Macrophage heterogeneity in tissues: phenotypic diversity and functions [J].
Gordon, Siamon ;
Plueddemann, Annette ;
Estrada, Fernando Martinez .
IMMUNOLOGICAL REVIEWS, 2014, 262 (01) :36-55
[10]   Unsupervised Trajectory Analysis of Single-Cell RNA-Seq and Imaging Data Reveals Alternative Tuft Cell Origins in the Gut [J].
Herring, Charles A. ;
Banerjee, Amrita ;
McKinley, Eliot T. ;
Simmons, Alan J. ;
Ping, Jie ;
Roland, Joseph T. ;
Franklin, Jeffrey L. ;
Liu, Qi ;
Gerdes, Michael J. ;
Coffey, Robert J. ;
Lau, Ken S. .
CELL SYSTEMS, 2018, 6 (01) :37-+