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Published on: May 21, 2019
Irisin deficiency exacerbates cardiac dysfunction and enhances hemorrhage injury in hemorrhage/resuscitation
Supaporn Kulthinee1,2, Lijiang Wang1,2, John Slate-Rmano1,2
1Department of Surgery, Rhode Island Hospital, The Warren and Alpert Medical School of Brown University, Providence, Rhode Island, United States.
Insights
Irisin deficiency worsens cardiac function and inflammation during hemorrhagic injury. Supplementing irisin rescues these negative effects, highlighting its critical protective role in hemorrhage and resuscitation.
Area of Science:
- Metabolic regulation
- Cardiovascular physiology
- Injury response
Background:
- Irisin modulates metabolism and tissue survival.
- The role of irisin in hemorrhagic injury is unknown.
Purpose of the Study:
- To determine the function of irisin in hemorrhage and resuscitation (H/R).
- To investigate if irisin deficiency impacts H/R outcomes.
Main Methods:
- Used irisin knockout mice and pharmacological approaches in a mouse H/R model.
- Induced hemorrhage to a mean arterial blood pressure of 35-45 mmHg for 60 min, followed by 2 h resuscitation.
- Assessed cardiac function, serum cytokines, inflammation, apoptosis, and oxidative phosphorylation.
Main Results:
- Irisin deficiency exacerbated cardiac dysfunction, increased inflammation (interleukin-6, inflammatory cell infiltration), apoptosis (caspase-3), and reduced oxidative phosphorylation and ATPase activity during H/R.
- Infusion of irisin rescued the detrimental effects of irisin deletion on H/R outcomes.
- Deletion of irisin worsened H/R injury, while irisin administration attenuated it.
Conclusions:
- Irisin plays a critical role in regulating the response to hemorrhage and resuscitation.
- Irisin exhibits protective effects against H/R-induced cardiac depression and inflammation.
Abstract:
Irisin contributes critically to modulating metabolism and tissue survival in muscles and adipocytes. Whether deficiency of irisin impacts the hemorrhagic injury and/or whether the effect of irisin deficiency on hemorrhagic injury primarily relies on irisin, which is currently unknown. We use an irisin knockout mouse to eliminate irisin and pharmacological approaches in a mouse hemorrhagic model to determine the function of irisin on hemorrhage and resuscitation (H/R). Hemorrhage was induced by achieving a mean arterial blood pressure of 35-45 mmHg for 60 min, followed by 2 h of resuscitation in mice. Experimental groups were divided as follows (n = 6-8 per group): sham groups I and II: wild-type (WT) mice and irisin-knockout (KO) mice were subjected to femoral catheterization without H/R; groups III and IV: WT mice and irisin-KO mice were subjected to H/R, respectively; groups V and VI: irisin (50 μg/kg, iv) was infused into WT and irisin-KO H/R mice during resuscitation. Mean blood pressure, myocardial function, serum cytokine, inflammatory cell infiltration, terminal deoxynucleotidyl transferase dUTP nick end labeling-positive apoptosis, active caspase 3, components of oxidative phosphorylation, and mitochondrial ATPase activity in muscles were determined. Irisin deficiency exacerbated cardiac dysfunction in H/R in association with increases in interleukin 6, the infiltration of inflammatory cells, active caspase-3, and reduced oxidative phosphorylation and ATPase activities. The effects of irisin deletion on H/R were rescued by irisin. Deletion of irisin exacerbated injury of H/R, which was rescued by infusion of irisin, suggesting a key role of irisin in the regulation of hemorrhage/resuscitation.NEW & NOTEWORTHY Deletion of irisin resulted in a reduction in cardiac function and hemodynamics and exacerbated inflammation and tissue injury in response to hemorrhagic injury. Irisin rescued the hemorrhage-induced cardiac depression and attenuated the inflammatory response induced by irisin deficiency in hemorrhagic injury, suggesting that irisin contributes critically to the protective role in hemorrhage/resuscitation.
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