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June 6, 2015The Journal of Immunology186 citationsOpen Access

Attenuation of Cardiac Dysfunction in Polymicrobial Sepsis by MicroRNA-146a Is Mediated via Targeting of IRAK1 and TRAF6 Expression

MGMing GaoXWXiaohui WangXZXia Zhang

Structured PICO

Does lentivirus-mediated delivery of miR-146a attenuate cardiac dysfunction in a mouse model of polymicrobial sepsis?

P
Population
Mice subjected to cecal ligation and puncture (CLP)-induced sepsis, and in vitro H9C2 cardiomyocytes and J774 macrophages
I
Intervention
Lentivirus-expressing miR-146a (LmiR-146a) delivered into the myocardium via the right carotid artery 7 days prior to CLP
C
Comparator
Lentivirus-expressing scrambled miR (LmiR-control) and untransfected mice subjected to CLP
O
Outcome
Cardiac function (percent ejection fraction and percent fractional shortening) examined by echocardiography 6 h after CLPsurrogate

MicroRNA-146a protects against sepsis-induced cardiac dysfunction by targeting IRAK and TRAF6 to reduce inflammatory responses.

Abstract

Cardiac dysfunction is a major consequence of sepsis/septic shock and contributes to the high mortality of sepsis. Innate and inflammatory responses mediated by TLRs play a critical role in sepsis-induced cardiac dysfunction. MicroRNA-146 (miR-146) was first identified as a negative regulator in innate immune and inflammatory responses induced by LPS. This study examined whether miR-146a will have a protective effect on sepsis-induced cardiac dysfunction. Lentivirus-expressing miR-146a (LmiR-146a) or lentivirus-expressing scrambled miR (LmiR-control) was delivered into the myocardium via the right carotid artery. Seven days after transfection, mice were subjected to cecal ligation and puncture (CLP). Untransfected mice were also subjected to CLP-induced sepsis. Cardiac function was examined by echocardiography before and 6 h after CLP. In vitro studies showed that increased miR-146a levels suppress LPS-induced IκBα phosphorylation and inflammatory cytokine production in both H9C2 cardiomyocytes and J774 macrophages. In vivo transfection of LmiR-146a attenuated sepsis-induced cardiac dysfunction. The values for percent ejection fraction and percent fractional shortening in LmiR-146a-transfected CLP mice were significantly greater than in untransfected CLP control. LmiR-146a transfection prevented sepsis-induced NF-κB activity, suppressed IRAK and TRAF6 expression in the myocardium, and attenuated sepsis-induced inflammatory cytokine production in both plasma and peritoneal fluid. In addition, LmiR-146a transfection decreased sepsis-induced infiltration of neutrophils and macrophages into the myocardium. LmiR-146a can also transfect macrophages in the periphery. We conclude that miR-146a attenuates sepsis-induced cardiac dysfunction by preventing NF-κB activation, inflammatory cell infiltration, and inflammatory cytokine production via targeting of IRAK and TRAF6 in both cardiomyocytes and inflammatory monocytic cells.

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Cite This Study

Gao et al. (2015) studied this question.

synapsesocial.com/papers/69d7e04cf39344339dd18b9ahttps://doi.org/10.4049/jimmunol.1403155
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