Alternatively activated macrophages determine repair of the infarcted adult murine heart. 2016

Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki

Alternatively activated (also known as M2) macrophages are involved in the repair of various types of organs. However, the contribution of M2 macrophages to cardiac repair after myocardial infarction (MI) remains to be fully characterized. Here, we identified CD206+F4/80+CD11b+ M2-like macrophages in the murine heart and demonstrated that this cell population predominantly increases in the infarct area and exhibits strengthened reparative abilities after MI. We evaluated mice lacking the kinase TRIB1 (Trib1-/-), which exhibit a selective depletion of M2 macrophages after MI. Compared with control animals, Trib1-/- mice had a catastrophic prognosis, with frequent cardiac rupture, as the result of markedly reduced collagen fibril formation in the infarct area due to impaired fibroblast activation. The decreased tissue repair observed in Trib1-/- mice was entirely rescued by an external supply of M2-like macrophages. Furthermore, IL-1α and osteopontin were suggested to be mediators of M2-like macrophage-induced fibroblast activation. In addition, IL-4 administration achieved a targeted increase in the number of M2-like macrophages and enhanced the post-MI prognosis of WT mice, corresponding with amplified fibroblast activation and formation of more supportive fibrous tissues in the infarcts. Together, these data demonstrate that M2-like macrophages critically determine the repair of infarcted adult murine heart by regulating fibroblast activation and suggest that IL-4 is a potential biological drug for treating MI.

UI MeSH Term Description Entries
D008262 Macrophage Activation The process of altering the morphology and functional activity of macrophages so that they become avidly phagocytic. It is initiated by lymphokines, such as the macrophage activation factor (MAF) and the macrophage migration-inhibitory factor (MMIF), immune complexes, C3b, and various peptides, polysaccharides, and immunologic adjuvants. Activation, Macrophage,Activations, Macrophage,Macrophage Activations
D008264 Macrophages The relatively long-lived phagocytic cell of mammalian tissues that are derived from blood MONOCYTES. Main types are PERITONEAL MACROPHAGES; ALVEOLAR MACROPHAGES; HISTIOCYTES; KUPFFER CELLS of the liver; and OSTEOCLASTS. They may further differentiate within chronic inflammatory lesions to EPITHELIOID CELLS or may fuse to form FOREIGN BODY GIANT CELLS or LANGHANS GIANT CELLS. (from The Dictionary of Cell Biology, Lackie and Dow, 3rd ed.) Bone Marrow-Derived Macrophages,Monocyte-Derived Macrophages,Macrophage,Macrophages, Monocyte-Derived,Bone Marrow Derived Macrophages,Bone Marrow-Derived Macrophage,Macrophage, Bone Marrow-Derived,Macrophage, Monocyte-Derived,Macrophages, Bone Marrow-Derived,Macrophages, Monocyte Derived,Monocyte Derived Macrophages,Monocyte-Derived Macrophage
D008810 Mice, Inbred C57BL One of the first INBRED MOUSE STRAINS to be sequenced. This strain is commonly used as genetic background for transgenic mouse models. Refractory to many tumors, this strain is also preferred model for studying role of genetic variations in development of diseases. Mice, C57BL,Mouse, C57BL,Mouse, Inbred C57BL,C57BL Mice,C57BL Mice, Inbred,C57BL Mouse,C57BL Mouse, Inbred,Inbred C57BL Mice,Inbred C57BL Mouse
D009203 Myocardial Infarction NECROSIS of the MYOCARDIUM caused by an obstruction of the blood supply to the heart (CORONARY CIRCULATION). Cardiovascular Stroke,Heart Attack,Myocardial Infarct,Cardiovascular Strokes,Heart Attacks,Infarct, Myocardial,Infarction, Myocardial,Infarctions, Myocardial,Infarcts, Myocardial,Myocardial Infarctions,Myocardial Infarcts,Stroke, Cardiovascular,Strokes, Cardiovascular
D009206 Myocardium The muscle tissue of the HEART. It is composed of striated, involuntary muscle cells (MYOCYTES, CARDIAC) connected to form the contractile pump to generate blood flow. Muscle, Cardiac,Muscle, Heart,Cardiac Muscle,Myocardia,Cardiac Muscles,Heart Muscle,Heart Muscles,Muscles, Cardiac,Muscles, Heart
D012038 Regeneration The physiological renewal, repair, or replacement of tissue. Endogenous Regeneration,Regeneration, Endogenous,Regenerations
D003238 Connective Tissue Tissue that supports and binds other tissues. It consists of CONNECTIVE TISSUE CELLS embedded in a large amount of EXTRACELLULAR MATRIX. Connective Tissues,Tissue, Connective,Tissues, Connective
D005347 Fibroblasts Connective tissue cells which secrete an extracellular matrix rich in collagen and other macromolecules. Fibroblast
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D015847 Interleukin-4 A soluble factor produced by activated T-LYMPHOCYTES that induces the expression of MHC CLASS II GENES and FC RECEPTORS on B-LYMPHOCYTES and causes their proliferation and differentiation. It also acts on T-lymphocytes, MAST CELLS, and several other hematopoietic lineage cells. B-Cell Growth Factor-I,B-Cell Stimulatory Factor-1,Binetrakin,IL-4,Mast Cell Growth Factor-2,B Cell Stimulatory Factor-1,B-Cell Growth Factor-1,B-Cell Proliferating Factor,B-Cell Stimulating Factor-1,B-Cell Stimulatory Factor 1,BCGF-1,BSF-1,IL4,MCGF-2,B Cell Growth Factor 1,B Cell Growth Factor I,B Cell Proliferating Factor,B Cell Stimulating Factor 1,B Cell Stimulatory Factor 1,Interleukin 4,Mast Cell Growth Factor 2

Related Publications

Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
January 2013, Methods in molecular biology (Clifton, N.J.),
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
January 2009, Methods in molecular biology (Clifton, N.J.),
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
July 2008, Journal of leukocyte biology,
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
May 2019, Life sciences,
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
January 2012, PloS one,
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
August 2007, Current opinion in immunology,
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
July 2015, Nature reviews. Gastroenterology & hepatology,
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
September 2011, Chest,
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
August 2007, Current opinion in immunology,
Manabu Shiraishi, and Yasunori Shintani, and Yusuke Shintani, and Hidekazu Ishida, and Rie Saba, and Atsushi Yamaguchi, and Hideo Adachi, and Kenta Yashiro, and Ken Suzuki
June 2011, Zhongguo ji sheng chong xue yu ji sheng chong bing za zhi = Chinese journal of parasitology & parasitic diseases,
Copied contents to your clipboard!