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March 9, 2020Circulation Journal59 citationsOpen Access

M2b Macrophages Regulate Cardiac Fibroblast Activation and Alleviate Cardiac Fibrosis After Reperfusion Injury

YYYue YuanSHSuiqing HuangLWLexun Wang

Key Result

Transplantation of M2b macrophages significantly improved cardiac function and reduced cardiac fibrosis after myocardial ischemia/reperfusion injury in rats.

Structured PICO

Does intramyocardial transplantation of M2b macrophages improve cardiac function and alleviate fibrosis after myocardial ischemia/reperfusion injury in rats?

P
Population
42 rats subjected to a myocardial ischemia/reperfusion injury model to evaluate the effects of M2b macrophage transplantation on cardiac fibrosis and function.
I
Intervention
M2b macrophages (1x10^6 cells) administered intramyocardially to the ischemic zone.
C
Comparator
Normal saline alone (I/R injury group) and sham operation (without ligation of the coronary artery).
O
Outcome
Cardiac function (LVEF and LVIDd via echocardiography) and cardiac fibrosis (collagen deposition via Sirius red staining, COL-1 and α-SMA via IHC) at day 14 after injury.surrogate

M2b macrophages act as anti-fibrotic cells that inhibit cardiac fibroblast activation and improve cardiac function after ischemia/reperfusion injury.

Main Result

p-value: p=<0.05

Limitations

  • No other macrophage subsets were used as controls in vivo to demonstrate the specificity of the beneficial effects of M2b macrophages.
  • Did not study the fate of M2b macrophages after transplantation.
  • Low clinical feasibility of macrophage transplantation due to it being time-consuming and difficult to maintain activated M2b macrophages.

Abstract

BACKGROUND: Macrophages play an important role in the development of cardiac fibrosis. However, the roles of different macrophage subtypes in cardiac fibroblast (CF) activation and cardiac fibrosis are unknown. METHODS AND RESULTS: Bone marrow-derived macrophages (BMDMs) were treated with different stimuli to induce differentiation into M1, M2a, M2b, and M2c macrophage subtypes. CFs were co-cultured with different subtypes of macrophages or cultured with macrophage supernatants. Results revealed that M2b macrophages significantly suppressed the proliferation and migration of CFs, the expression of fibrosis-related proteins (collagen I COL-1 and α-smooth muscle actin α-SMA), and differentiation into cardiac myofibroblasts (MFs). The opposite effects were observed with M2a macrophages. A rat model of cardiac ischemia/reperfusion (I/R) injury was used to determine the effect of M2b macrophages transplantation. After cardiac I/R injury, transplantation of M2b macrophages improved cardiac function and reduced cardiac fibrosis. The effect of macrophage subtypes on p-ERK, ERK, p-p38, and p38 phosphorylation was examined by Western blotting. The results showed that M2b macrophages significantly inhibited the mitogen-activated protein kinase (MAPK) signaling pathway. CONCLUSIONS: These study results demonstrate for the first time that different subtypes of macrophages have different roles in regulating CF activation. M2b macrophages inhibit CF activation, and thus can be considered anti-fibrotic macrophages. M2a macrophages promote CF activation, and thus are pro-fibrotic macrophages.

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Cite This Study

Yuan et al. (2020) studied Myocardial ischemia/reperfusion injury (n=42). M2b macrophage transplantation vs. Normal saline (I/R injury group) was evaluated on Cardiac function and cardiac fibrosis (p=<0.05). Transplantation of M2b macrophages significantly improved cardiac function and reduced cardiac fibrosis after myocardial ischemia/reperfusion injury in rats.

synapsesocial.com/papers/6a1ff6203224f8dacd0dafeahttps://doi.org/10.1253/circj.cj-19-0959
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