Objectives: Sepsis and septic shock are the common complications in ICUs. Vital organ function disorder contributes a critical role in high mortality after severe sepsis or septic shock, in which endoplasmic reticulum stress plays an important role. Whether anti-endoplasmic reticulum stress with 4-phenylbutyric acid is beneficial to sepsis and the underlying mechanisms are not known. Design: Laboratory investigation. Setting: State Key Laboratory of Trauma, Burns and Combined Injury. Subjects: Sprague-Dawley rats. Interventions: Using cecal ligation and puncture-induced septic shock rats, lipopolysaccharide-treated vascular smooth muscle cells, and cardiomyocytes, effects of 4-phenylbutyric acid on vital organ function and the relationship with endoplasmic reticulum stress and endoplasmic reticulum stress-mediated inflammation, apoptosis, and oxidative stress were observed. Measurements and Main Results: Conventional treatment, including fluid resuscitation, vasopressin, and antibiotic, only slightly improved the hemodynamic variable, such as mean arterial blood pressure and cardiac output, and slightly improved the vital organ function and the animal survival of septic shock rats. Supplementation of 4-phenylbutyric acid (5 mg/kg; anti-endoplasmic reticulum stress), especially administered at early stage, significantly improved the hemodynamic variables, vital organ function, such as liver, renal, and intestinal barrier function, and animal survival in septic shock rats. 4-Phenylbutyric acid application inhibited the endoplasmic reticulum stress and endoplasmic reticulum stress-related proteins, such as CCAAT/enhancer-binding protein homologous protein in vital organs, such as heart and superior mesenteric artery after severe sepsis. Further studies showed that 4-phenylbutyric acid inhibited endoplasmic reticulum stress-mediated cytokine release, apoptosis, and oxidative stress via inhibition of nuclear factor-[kappa]B, caspase-3 and caspase-9, and increasing glutathione peroxidase and superoxide dismutase expression, respectively. Conclusions: Anti-endoplasmic reticulum stress with 4-phenylbutyric acid is beneficial to septic shock. This beneficial effect of 4-phenylbutyric acid is closely related to the inhibition of endoplasmic reticulum stress-mediated oxidative stress, apoptosis, and cytokine release. This finding provides a potential therapeutic measure for clinical critical conditions, such as severe sepsis. Copyright (C) by 2016 by the Society of Critical Care Medicine and Wolters Kluwer Health, Inc. All Rights Reserved.
from Emergency Medicine via xlomafota13 on Inoreader http://ift.tt/1YAfpUG
Εγγραφή σε:
Σχόλια ανάρτησης (Atom)
Δημοφιλείς αναρτήσεις
-
Archives of Physical Medicine and Rehabilitation from Emergency Medicine via xlomafota13 on Inoreader http://ift.tt/2s8OJAu
-
Looking for a gift, a weekend read, or a resource? Check out our recent favorites. from EMS via xlomafota13 on Inoreader http://ift.tt/2g0...
-
Abstract Background Routine preoperative staging in pancreas cancer is controversial. We sought to evaluate the rates of diagnostic lapa...
-
Journal of the American Geriatrics Society from Emergency Medicine via xlomafota13 on Inoreader http://ift.tt/2jXwFbF
-
Abstract Myxofibrosarcoma (MFS) is an aggressive sarcoma that requires novel therapeutic approaches to improve its clinical outcome. Cell ...
-
Abstract Deep learning has caused a third boom of artificial intelligence and great changes of diagnostic medical imaging systems such as ...
-
Successful airway management is the culmination of preparation, practice and technique mastery from EMS via xlomafota13 on Inoreader http:...
-
Abstract Background It is generally accepted that all arthroplasty patients should receive venous thromboembolism (VTE) and bleeding ris...
Δεν υπάρχουν σχόλια:
Δημοσίευση σχολίου