Interleukin-4 and interleukin-13 induce different metabolic profiles in microglia and macrophages that relate with divergent outcomes after spinal cord injury

被引:33
作者
Amo-Aparicio, Jesus [1 ]
Garcia-Garcia, Joana [1 ]
Francos-Quijorna, Isaac [2 ]
Urpi, Andrea [1 ]
Esteve-Codina, Anna [3 ,4 ]
Gut, Marta [3 ,4 ]
Quintana, Albert [1 ]
Lopez-Vales, Ruben [1 ,5 ]
机构
[1] Univ Autonoma Barcelona, Inst Neurociencies, Dept Biol Cellular Fisiol & Immunol, Bellaterra 08193, Catalonia, Spain
[2] Kings Coll London, Wolfson Ctr Age Related Dis, IoPPN, Regenerat Grp, London SE1 1YR, England
[3] Barcelona Inst Sci & Technol BIST, Ctr Genom Regulat CRG, CNAG CRG, Baldiri & Reixac 4, Barcelona 08028, Catalonia, Spain
[4] Univ Pompeu Fabra UPF, Barcelona 08020, Catalonia, Spain
[5] Ctr Invest Biomed Red Enfermedades Neurodegenerat, Madrid, Spain
关键词
interleukin; 4; 13; immune metabolism; polarization; spinal cord injury; PHENOTYPE; MOUSE; POLARIZATION; ACTIVATION; RESPONSES; RECOVERY; HISTORY; DRIVES; CANCER; TOOLS;
D O I
10.7150/thno.65203
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Background: Microglia and macrophages adopt a pro-inflammatory phenotype after spinal cord injury (SCI), what is thought to contribute to secondary tissue degeneration. We previously reported that this is due, in part, to the low levels of anti-inflammatory cytokines, such as IL-4. Since IL-13 and IL-4 share receptors and both cytokines drive microglia and macrophages towards an anti-inflammatory phenotype in vitro, here we studied whether administration of IL-13 and IL-4 after SCI leads to beneficial effects. Methods: We injected mice with recombinant IL-13 or IL-4 at 48 h after SCI and assessed their effects on microglia and macrophage phenotype and functional outcomes. We also performed RNA sequencing analysis of macrophages and microglia sorted from the injured spinal cords of mice treated with IL-13 or IL-4 and evaluated the metabolic state of these cells by using Seahorse technology. Results: We observed that IL-13 induced the expression of anti-inflammatory markers in microglia and macrophages after SCI but, in contrast to IL-4, it failed to mediate functional recovery. We found that these two cytokines induced different gene signatures in microglia and macrophages after SCI and that IL-4, in contrast to IL-13, shifted microglia and macrophage metabolism from glycolytic to oxidative phosphorylation. These findings were further confirmed by measuring the metabolic profile of these cells. Importantly, we also revealed that macrophages stimulated with IL-4 or IL-13 are not deleterious to neurons, but they become cytotoxic when oxidative metabolism is blocked. This suggests that the metabolic shift, from glycolysis to oxidative phosphorylation, is required to minimize the cytotoxic responses of microglia and macrophages. Conclusions: These results reveal that the metabolic fitness of microglia and macrophages after SCI contributes to secondary damage and that strategies aimed at boosting oxidative phosphorylation might be a novel approach to minimize the deleterious actions of microglia and macrophages in neurotrauma.
引用
收藏
页码:9805 / 9820
页数:16
相关论文
共 53 条
[1]   iNOS-mediated nitric oxide production and its regulation [J].
Aktan, F .
LIFE SCIENCES, 2004, 75 (06) :639-653
[2]  
Amo-Aparicio Jesus, 2018, Curr Protoc Immunol, V123, pe57, DOI 10.1002/cpim.57
[3]   Granulocyte-macrophage colony-stimulating factor primes interleukin-13 production by macrophages via protease-activated receptor-2 [J].
Aoki, Manabu ;
Yamaguchi, Rui ;
Yamamoto, Takatoshi ;
Ishimaru, Yasuji ;
Ono, Tomomichi ;
Sakamoto, Arisa ;
Narahara, Shinji ;
Sugiuchi, Hiroyuki ;
Hirose, Eiji ;
Yamaguchi, Yasuo .
BLOOD CELLS MOLECULES AND DISEASES, 2015, 54 (04) :353-359
[4]   A Breakdown in Metabolic Reprogramming Causes Microglia Dysfunction in Alzheimer's Disease [J].
Baik, Sung Hoon ;
Kang, Seokjo ;
Lee, Woochan ;
Choi, Hayoung ;
Chung, Sunwoo ;
Kim, Jong-Il ;
Mook-Jung, Inhee .
CELL METABOLISM, 2019, 30 (03) :493-+
[5]   Basso mouse scale for locomotion detects differences in recovery after spinal cord in ury in five common mouse strains [J].
Basso, DM ;
Fisher, LC ;
Anderson, AJ ;
Jakeman, LB ;
McTigue, DM ;
Popovich, PG .
JOURNAL OF NEUROTRAUMA, 2006, 23 (05) :635-659
[6]   New tools for studying microglia in the mouse and human CNS [J].
Bennett, Mariko L. ;
Bennett, F. Chris ;
Liddelow, Shane A. ;
Ajami, Bahareh ;
Zamanian, Jennifer L. ;
Fernhoff, Nathaniel B. ;
Mulinyawe, Sara B. ;
Bohlen, Christopher J. ;
Adil, Aykezar ;
Tucker, Andrew ;
Weissman, Irving L. ;
Chang, Edward F. ;
Li, Gordon ;
Grant, Gerald A. ;
Gephart, Melanie G. Hayden ;
Barres, Ben A. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2016, 113 (12) :E1738-E1746
[7]  
BLIGHT AR, 1992, J NEUROTRAUM, V9, pS83
[8]   Identification of a unique TGF-β dependent molecular and functional signature in microglia [J].
Butovsky, Oleg ;
Jedrychowski, Mark P. ;
Moore, Craig S. ;
Cialic, Ron ;
Lanser, Amanda J. ;
Gabriely, Galina ;
Koeglsperger, Thomas ;
Dake, Ben ;
Wu, Pauline M. ;
Doykan, Camille E. ;
Fanek, Zain ;
Liu, LiPing ;
Chen, Zhuoxun ;
Rothstein, Jeffrey D. ;
Ransohoffl, Richard M. ;
Gygi, Steven P. ;
Antel, Jack P. ;
Weiner, Howard L. .
NATURE NEUROSCIENCE, 2014, 17 (01) :131-143
[9]   Resolution-phase macrophages possess a unique inflammatory phenotype that is controlled by cAMP [J].
Bystrom, Jonas ;
Evans, Ian ;
Newson, Justine ;
Stables, Melanie ;
Toor, Iqbal ;
van Rooijen, Nico ;
Crawford, Mark ;
Colville-Nash, Paul ;
Farrow, Stuart ;
Gilroy, Derek W. .
BLOOD, 2008, 112 (10) :4117-4127
[10]   The phenotype of peritoneal mouse macrophages depends on the mitochondria and ATP/ADP homeostasis [J].
Chen, Wei ;
Sandoval, Hector ;
Kubiak, Jacek Z. ;
Li, Xian C. ;
Ghobrial, Rafik M. ;
Kloc, Malgorzata .
CELLULAR IMMUNOLOGY, 2018, 324 :1-7