Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Activation of Toll‐like receptor 7 provides cardioprotection in septic cardiomyopathy‐induced systolic dysfunction

View through CrossRef
ABSTRACTBackgroundAs a pattern recognition receptor, Toll‐like receptor 7 (TLR7) widely presented in the endosomal membrane of various cells. However, the precise role and mechanism of TLR7 in septic cardiomyopathy remain unknown. This study aims to determine the role of TLR7 in cardiac dysfunction during sepsis and explore the mechanism of TLR7 in septic cardiomyopathy.MethodsWe generated a mouse model of septic cardiomyopathy by challenging with lipopolysaccharide (LPS). TLR7‐knockout (TLR7−/−), wild‐type (WT) mice, cardiac‐specific TLR7‐transgenic (cTG‐TLR7) overexpression, and littermates WT (LWT) mice were subjected to septic model. Additionally, to verify the role and mechanism of TLR7 in vitro, we transfected neonatal rat ventricular myocytes (NRVMs) with Ad‐TLR7 and TLR7 siRNA before LPS administration. The effects of TLR7 were assessed by Ca2+ imaging, western blotting, immunostaining, and quantitative real‐time polymerase chain reaction (qPCR).ResultsWe found that TLR7 knockout markedly exacerbated sepsis‐induced systolic dysfunction. Moreover, cardiomyocytes isolated from TLR7−/− mice displayed weaker Ca2+ handling than that in WT mice in response to LPS. Conversely, TLR7 overexpression alleviated LPS‐induced systolic dysfunction, and loxoribine (TLR7‐specific agonist) improved LPS‐induced cardiac dysfunction. Mechanistically, these optimized effects were associated with enhanced the adenosine (cAMP)‐protein kinase A (PKA) pathway, which upregulated phosphorylate‐phospholamban (p‐PLN) (Ser16) and promoted sarco/endoplasmic reticulum Ca2+ ATPase (Serca) and Ryanodine Receptor 2 (RyR2) expression in the sarcoplasmic reticulum (SR), and ultimately restored Ca2+ handling in response to sepsis. While improved Ca2+ handling was abrogated after H89 (a specific PKA inhibitor) pretreatment in cardiomyocytes isolated from cTG‐TLR7 mice. Consistently, TLR7 overexpression improved LPS‐induced Ca2+‐handling decrement in NRVMs. Nevertheless, TLR7 knockdown showed a deteriorative phenotype.ConclusionsOur data demonstrated that activation of TLR7 protected against sepsis‐induced cardiac dysfunction through promoting cAMP‐PKA‐PLN pathway, and we revealed that TLR7 might be a novel therapeutic target to block the septic cardiomyopathy and support systolic function during sepsis.
Title: Activation of Toll‐like receptor 7 provides cardioprotection in septic cardiomyopathy‐induced systolic dysfunction
Description:
ABSTRACTBackgroundAs a pattern recognition receptor, Toll‐like receptor 7 (TLR7) widely presented in the endosomal membrane of various cells.
However, the precise role and mechanism of TLR7 in septic cardiomyopathy remain unknown.
This study aims to determine the role of TLR7 in cardiac dysfunction during sepsis and explore the mechanism of TLR7 in septic cardiomyopathy.
MethodsWe generated a mouse model of septic cardiomyopathy by challenging with lipopolysaccharide (LPS).
TLR7‐knockout (TLR7−/−), wild‐type (WT) mice, cardiac‐specific TLR7‐transgenic (cTG‐TLR7) overexpression, and littermates WT (LWT) mice were subjected to septic model.
Additionally, to verify the role and mechanism of TLR7 in vitro, we transfected neonatal rat ventricular myocytes (NRVMs) with Ad‐TLR7 and TLR7 siRNA before LPS administration.
The effects of TLR7 were assessed by Ca2+ imaging, western blotting, immunostaining, and quantitative real‐time polymerase chain reaction (qPCR).
ResultsWe found that TLR7 knockout markedly exacerbated sepsis‐induced systolic dysfunction.
Moreover, cardiomyocytes isolated from TLR7−/− mice displayed weaker Ca2+ handling than that in WT mice in response to LPS.
Conversely, TLR7 overexpression alleviated LPS‐induced systolic dysfunction, and loxoribine (TLR7‐specific agonist) improved LPS‐induced cardiac dysfunction.
Mechanistically, these optimized effects were associated with enhanced the adenosine (cAMP)‐protein kinase A (PKA) pathway, which upregulated phosphorylate‐phospholamban (p‐PLN) (Ser16) and promoted sarco/endoplasmic reticulum Ca2+ ATPase (Serca) and Ryanodine Receptor 2 (RyR2) expression in the sarcoplasmic reticulum (SR), and ultimately restored Ca2+ handling in response to sepsis.
While improved Ca2+ handling was abrogated after H89 (a specific PKA inhibitor) pretreatment in cardiomyocytes isolated from cTG‐TLR7 mice.
Consistently, TLR7 overexpression improved LPS‐induced Ca2+‐handling decrement in NRVMs.
Nevertheless, TLR7 knockdown showed a deteriorative phenotype.
ConclusionsOur data demonstrated that activation of TLR7 protected against sepsis‐induced cardiac dysfunction through promoting cAMP‐PKA‐PLN pathway, and we revealed that TLR7 might be a novel therapeutic target to block the septic cardiomyopathy and support systolic function during sepsis.

Related Results

ANALISA WAKTU PELAYANAN GARDU TOL CENGKARENG 2 DENGAN PTV VISSIM
ANALISA WAKTU PELAYANAN GARDU TOL CENGKARENG 2 DENGAN PTV VISSIM
Toll roads are affected by the service time on toll roads which have been stipulated by the Regulation of the Minister of Public Works No. 16 concerning Minimum Service Standards f...
Loss of Cysteine Rich domain was critical for evolution of heterodimerization in Toll proteins
Loss of Cysteine Rich domain was critical for evolution of heterodimerization in Toll proteins
AbstractToll proteins play roles in immunity/development which have largely remained conserved. However, there are differences in Toll biology as mammalian TLRs recognise pathogen ...
DJ-1 overexpression restores ischaemic post-conditioning-mediated cardioprotection in diabetic rats: role of autophagy
DJ-1 overexpression restores ischaemic post-conditioning-mediated cardioprotection in diabetic rats: role of autophagy
IPO (ischaemic post-conditioning) is a promising method of alleviating myocardial IR (ischaemia-reperfusion) injury; however, IPO-mediated cardioprotection is lost in diabetic hear...
Neutrophil Activation During Septic Shock
Neutrophil Activation During Septic Shock
ABSTRACT In addition to their well-known role as the cellular mediators of immunity, key other roles have been identified for neutrophils during septic shock. Important...
Septic Shock and Myocardial Dysfunction
Septic Shock and Myocardial Dysfunction
Cardiac dysfunction in sepsis is strongly linked to increased mortality. The pathophysiology of sepsis-induced Myocardial dysfunction is multifaceted, involving impaired myocardial...
Calpain induces TNFα expression and cardiac dysfunction by IκB/NF-κB system in septic mice
Calpain induces TNFα expression and cardiac dysfunction by IκB/NF-κB system in septic mice
Objective In septic models, recent studies showed that both myocardial calpain activity and TNFα expression increased, and inhibition of calpain downregulated myo...

Back to Top