hemorrhagic shock
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2022 ◽  
Vol Publish Ahead of Print ◽  
Author(s):  
Laura Grau-Mercier ◽  
Fabien Coisy ◽  
Thibaut Markarian ◽  
Laurent Muller ◽  
Claire Roger ◽  
...  

2022 ◽  
Author(s):  
Nikita M Patel ◽  
Debora Collotta ◽  
Eleonora Aimaretti ◽  
Gustavo Ferreira Alves ◽  
Sarah Kröller ◽  
...  

Objective: The aim of this study was to investigate (a) the effects of the Janus kinase (JAK)/signal transducer and activator of transcription (STAT) pathway inhibitor (baricitinib) on the multiple organ dysfunction syndrome (MODS) in a rat model of hemorrhagic shock (HS) and (b) whether treatment with baricitinib attenuates the activation of JAK/STAT, NF-κB and NLRP3 caused by HS. Background: Post-traumatic MODS, which is in part due to excessive systemic inflammation, is associated with high morbidity and mortality. The JAK/STAT pathway is a regulator of numerous growth factor and cytokine receptors and, hence, is considered a potential master regulator of many inflammatory signaling processes. However, its role in trauma-hemorrhage is unknown. Methods: An acute HS rat model was performed to determine the effect of baricitinib on MODS. The activation of JAK/STAT, NF-κB and NLRP3 pathways were analyzed by western blotting in the kidney and liver. Results: We demonstrate here for the first time that treatment with baricitinib (during resuscitation following severe hemorrhage) attenuates the organ injury and dysfunction and the activation of JAK/STAT, NF-κB and NLRP3 pathways caused by HS in the rat. Conclusions: Our results point to a role of the JAK/STAT pathway in the pathophysiology of the organ injury and dysfunction caused by trauma/hemorrhage and indicate that JAK inhibitors, such as baricitinib, may be repurposed for the treatment of the MODS after trauma and/or hemorrhage.


2022 ◽  
Vol 12 ◽  
Author(s):  
Yunwei Zhang ◽  
Xiaofei Zhang ◽  
Hongji Zhang ◽  
Peng Song ◽  
Wenming Pan ◽  
...  

Traumatic hemorrhagic shock (THS) is a major cause of mortality and morbidity worldwide in severely injured patients. Mesenchymal stem cells (MSCs) possess immunomodulatory properties and tissue repair potential mainly through a paracrine pathway mediated by MSC-derived extracellular vesicles (MSC-EVs). Interleukin 10 (IL-10) is a potent anti-inflammatory cytokine that plays a crucial role during the inflammatory response, with a broad range of effects on innate and adaptive immunity, preventing damage to the host and maintaining normal tissue homeostasis. However, the function and mechanism of IL-10 in MSC-mediated protective effect in THS remain obscure. Here, we show that MSCs significantly attenuate hepatic injury and inflammation from THS in mice. Notably, these beneficial effects of MSCs disappeared when IL-10 was knocked out in EVs or when recombinant IL-10 was administered to mice. Mechanistically, MSC-EVs function to carry and deliver IL-10 as cargo. WT MSC-EVs restored the function of IL-10 KO MSCs during THS injury. We further demonstrated that EVs containing IL-10 mainly accumulated in the liver during THS, where they were captured by Kupffer cells and induced the expression of PTPN22. These effects subsequently shifted Kupffer cells to an anti-inflammatory phenotype and mitigated liver inflammation and injury. Therefore, our study indicates that MSC-EVs containing IL-10 alleviate THS-induced hepatic injury and may serve as a cell-free therapeutic approach for THS.


2022 ◽  
Author(s):  
Leticia Urbano Cardoso Castro ◽  
Denise Aya Otsuki ◽  
Talita Rojas Sanches ◽  
Felipe Lima Souza ◽  
Mirela Aparecida Rodrigues Santinho ◽  
...  

Abstract Hemorrhagic shock (HS), a major cause of trauma-related mortality, is mainly treated by crystalloid fluid administration, typically with lactated Ringer’s (LR). Despite beneficial hemodynamic effects, such as the restoration of mean arterial pressure (MAP), LR administration has major side effects, including organ damage due to edema. One strategy to avoid such effects is pre-hospitalization intravenous administration of the potent vasoconstrictor terlipressin, which can restore hemodynamic stability/homeostasis and has anti-inflammatory effects. Wistar rats were subjected to HS for 60 min, at a target MAP of 30–40 mmHg, thereafter being allocated to receive LR infusion at 3 times the volume of the blood withdrawn; at 2 times the volume, plus terlipressin (10 µg/100 g body weight); and at an equal volume, plus terlipressin (10 µg/100 g body weight). A control group comprised rats not subjected to HS and receiving no fluid resuscitation or treatment. At 15 min after fluid resuscitation/treatment, the blood previously withdrawn was reinfused. At 24 h after HS, MAP was higher among the terlipressin-treated animals. Terlipressin also improved post-HS survival and provided significant improvements in glomerular/tubular function (creatinine clearance), neutrophil gelatinase-associated lipocalin expression, fractional excretion of sodium, aquaporin 2 expression, tubular injury, macrophage infiltration, IL-6 levels, IL-18 levels, and NF-κB expression. In terlipressin-treated animals, there was also significantly higher ANG II type 1 receptor expression and normalization of AVP 1a receptor expression. Terlipressin could be a viable therapy for HS-induced acute kidney injury, likely attenuating such injury by modulating the inflammatory response via the AVP 1a receptor.


Cells ◽  
2021 ◽  
Vol 11 (1) ◽  
pp. 112
Author(s):  
Jonathan M. Preuss ◽  
Ute Burret ◽  
Michael Gröger ◽  
Sandra Kress ◽  
Angelika Scheuerle ◽  
...  

We previously showed that attenuated lung injury after hemorrhagic shock (HS) coincided with enhanced levels of the glucocorticoid (GC) receptor (GR) in lung tissue of swine. Here, we investigated the effects of impaired GR signaling on the lung during resuscitated HS using a dysfunctional GR mouse model (GRdim/dim). In a mouse intensive care unit, HS led to impaired lung mechanics and aggravated lung inflammation in GRdim/dim mice compared to wildtype mice (GR+/+). After HS, high levels of the pro-inflammatory and pro-apoptotic transcription factor STAT1/pSTAT1 were found in lung samples from GRdim/dim mice. Lungs of GRdim/dim mice revealed apoptosis, most likely as consequence of reduced expression of the lung-protective Angpt1 compared to GR+/+ after HS. RNA-sequencing revealed increased expression of pro-apoptotic and cytokine-signaling associated genes in lung tissue of GRdim/dim mice. Furthermore, high levels of pro-inflammatory cytokines and iNOS were found in lungs of GRdim/dim mice. Our results indicate impaired repression of STAT1/pSTAT1 due to dysfunctional GR signaling in GRdim/dim mice, which leads to increased inflammation and apoptosis in the lungs. These data highlight the crucial role of functional GR signaling to attenuate HS-induced lung damage.


2021 ◽  
Author(s):  
Fateme Khodadadi ◽  
Farzaneh Ketabchi ◽  
Zahra Khodabandeh ◽  
Alireza Tavassoli ◽  
Gregory F. Lewis ◽  
...  

Abstract Background The role of the sub-diaphragmatic branch of the vagus nerve in mediating heart rate variability (HRV) and inflammatory reaction to long term hemorrhagic shock has not been determined prior to this study. Methods Male Sprague-Dawley rats were divided into four groups of Sham, sub-diaphragmatic vagotomized (Vag), long term (130±2 minutes) hemorrhagic shock (LHS), and sub-diaphragmatic vagotomized with LHS (Vag+LHS). Hemodynamic parameters were recorded and HRV calculated during multiple phases of hemorrhagic shock. The expressions of TNF-α and iNOS were measured in the spleen and lung tissues at the conclusion of the protocol. Results Decreases in blood pressure during blood withdrawal were identical in the LHS and Vag+LHS groups. However, heart rate only decreased in the Nadir-1 phase of the LHS group. HRV indicated increased power in the very-low, low, and high (VLF, LF, and HF) frequency bands during the Nadir-1 phase of the LHS group and decreased power in the Vag+LHS group. There was metabolic acidosis partially compensated with respiratory system in the LHS and Vag+LHS groups. Increases of TNF-α and iNOS expression in the spleen and lung of the LHS group were reversed in the Vag+LHS group. Conclusion This study indicates that sub-diapragmatic vagotomy increases lung inflammatory reactions and blunts the cardiac vagal tone surge in response to severe hemorrhagic shock.


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