Group 2 innate lymphoid cells protect mouse heart from myocardial infarction injury via interleukin 5, eosinophils, and dendritic cells

Author:

Liu Tianxiao123ORCID,Meng Zhaojie2,Liu Jing23ORCID,Li Jie2,Zhang Yuanyuan24,Deng Zhiyong2,Luo Songyuan2ORCID,Wang Minjie2,Huang Qin2,Zhang Shuya24,Fendt Pauline2,Devouassoux Julie2,Li Dazhu3,McKenzie Andrew Neil James5,Nahrendorf Matthias6ORCID,Libby Peter2ORCID,Guo Junli24ORCID,Shi Guo-Ping2ORCID

Affiliation:

1. Guangdong Provincial Geriatrics Institute, Guangdong Provincial People’s Hospital, Guangdong Academy of Medical Sciences , Guangzhou 510080 , China

2. Department of Medicine, Brigham and Women’s Hospital and Harvard Medical School , Boston, MA 02115 , USA

3. Laboratory of Cardiovascular Immunology, Institute of Cardiology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology , Wuhan 430022 , China

4. Institute of Cardiovascular Research, Key Laboratory of Emergency and Trauma of Ministry of Education, Hainan Medical University , Haikou 570100 , China

5. Medical Research Council Laboratory of Molecular Biology , Cambridge , UK

6. Center for Systems Biology, Massachusetts General Hospital, Harvard Medical School , Boston, MA 02114 , USA

Abstract

Abstract Aims Group 2 innate lymphoid cells (ILC2s) regulate adaptive and innate immunities. In mouse heart, production of myocardial infarction (MI) increased ILC2 accumulation, suggesting a role for ILC2 in cardiac dysfunction post-MI. Methods and results We produced MI in ILC2-deficeint Rorafl/flIl7rCre/+ mice and in Icosfl-DTR-fl/+Cd4Cre/+ mice that allowed diphtheria toxin-induced ILC2 depletion. Genetic or induced deficiency of ILC2 in mice exacerbated cardiac dysfunction post-MI injury along with increased myocardial accumulation of neutrophils, CD11b+Ly6Chi monocytes, and CD4+ T cells but deficiency of eosinophils (EOS) and dendritic cells (DC). Post-MI hearts from genetic and induced ILC2-deficient mice contained many more apoptotic cells than those of control mice, and Rorafl/flIl7rCre/+ mice showed thinner and larger infarcts and more collagen-I depositions than the Il7rCre/+ mice only at early time points post-MI. Mechanistic studies revealed elevated blood IL5 in Il7rCre/+ mice at 1, 7, and 28 days post-MI. Such increase was blunted in Rorafl/flIl7rCre/+ mice. Administration of recombinant IL5 reversed EOS losses in Rorafl/flIl7rCre/+ mice, but IL5 did not correct the DC loss in these mice. Adoptive transfer of ILC2, EOS, or DC from wild-type mice, but not ILC2 from Il5−/− mice improved post-MI cardiac functions in Rorafl/flIl7rCre/+ recipient mice. EOS are known to protect cardiomyocytes from apoptosis. Here we showed that DC acted like EOS in blocking cardiomyocyte apoptosis. Yet, ILC2 or IL5 alone did not directly affect cardiomyocyte apoptosis or TGF-β (transforming growth factor-β)-induced cardiac fibroblast Smad signalling. Conclusion This study revealed an indirect cardiac reparative role of ILC2 in post-MI hearts via the IL5, EOS, and DC mechanism.

Funder

Hainan Province Science and Technology

National Science Fund for Distinguished Young Scholars of Hainan Medical University

the Key Laboratory of Emergency and Trauma

Hainan Medical University

Ministry of Education

National Heart, Lung, and Blood Institute

National Institute of Neurological Disorders and Stroke

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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