Literature DB >> 17205008

Hypertonic saline reverses stiffness in a Sprague-Dawley rat model of acute intestinal edema, leading to improved intestinal function.

Ravi S Radhakrishnan1, Hari R Radhakrishnan, Hasen Xue, Stacey D Moore-Olufemi, Anshu B Mathur, Norman W Weisbrodt, Frederick A Moore, Steven J Allen, Glen A Laine, Charles S Cox.   

Abstract

INTRODUCTION: Acute edema induced by resuscitation and mesenteric venous hypertension impairs intestinal transit and contractility and reduces intestinal stiffness. Pretreatment with hypertonic saline (HS) can prevent these changes. Changes in tissue stiffness have been shown to trigger signaling cascades via stress fiber formation. We proposed that acute intestinal edema leads to a decrease in intestinal transit that may be mediated by changes in stiffness, leading to stress fiber formation and decreased intestinal transit. Furthermore, HS administration will abolish these detrimental effects of edema.
RESULTS: Intestinal edema causes a significant increase in tissue water and a significant decrease in intestinal transit and stiffness compared with sham. HS reversed these changes to sham levels. In addition, tissue edema led to significant stress fiber formation and decreased numbers of focal contacts. HS preserved tissue stiffness, prevented stress fiber formation, and was associated with improved intestinal function.
CONCLUSION: HS eliminates intestinal tissue edema formation and improves intestinal transit. In addition, the action of HS may be mediated through its preservation of tissue stiffness, which leads to prevention of signaling via stress fiber formation, leading to preserved intestinal function. Finally, intestinal edema may provide a novel physiologic model for examining stiffness and stress fiber signaling.

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Year:  2007        PMID: 17205008     DOI: 10.1097/01.CCM.0000254330.39804.9C

Source DB:  PubMed          Journal:  Crit Care Med        ISSN: 0090-3493            Impact factor:   7.598


  16 in total

1.  The impact of standardized protocol implementation for surgical damage control and temporary abdominal closure after emergent laparotomy.

Authors:  Tyler J Loftus; Philip A Efron; Trina M Bala; Martin D Rosenthal; Chasen A Croft; Michael S Walters; R Stephen Smith; Frederick A Moore; Alicia M Mohr; Scott C Brakenridge
Journal:  J Trauma Acute Care Surg       Date:  2019-04       Impact factor: 3.313

2.  A murine model for the study of edema induced intestinal contractile dysfunction.

Authors:  S K Shah; S D Moore-Olufemi; K S Uray; F Jimenez; P A Walker; H Xue; R H Stewart; G A Laine; C S Cox
Journal:  Neurogastroenterol Motil       Date:  2010-06-28       Impact factor: 3.598

3.  Hypertonic saline resuscitation after emergent laparotomy and temporary abdominal closure.

Authors:  Tyler J Loftus; Philip A Efron; Trina M Bala; Martin D Rosenthal; Chasen A Croft; R Stephen Smith; Frederick A Moore; Alicia M Mohr; Scott C Brakenridge
Journal:  J Trauma Acute Care Surg       Date:  2018-02       Impact factor: 3.313

4.  Lymph transport in rat mesenteric lymphatics experiencing edemagenic stress.

Authors:  Elaheh Rahbar; Tony Akl; Gerard L Coté; James E Moore; David C Zawieja
Journal:  Microcirculation       Date:  2014-07       Impact factor: 2.628

5.  Decreased myosin phosphatase target subunit 1(MYPT1) phosphorylation via attenuated rho kinase and zipper-interacting kinase activities in edematous intestinal smooth muscle.

Authors:  J Chu; C T Miller; K Kislitsyna; G A Laine; R H Stewart; C S Cox; K S Uray
Journal:  Neurogastroenterol Motil       Date:  2012-01-11       Impact factor: 3.598

6.  Hypertonic saline alters hydraulic conductivity and up-regulates mucosal/submucosal aquaporin 4 in resuscitation-induced intestinal edema.

Authors:  Ravi S Radhakrishnan; Shinil K Shah; Samuel H Lance; Hari R Radhakrishnan; Hasen Xue; Geetha L Radhakrishnan; Uma S Ramaswamy; Peter A Walker; Karen S Uray; Glen A Laine; Randolph H Stewart; Charles S Cox
Journal:  Crit Care Med       Date:  2009-11       Impact factor: 7.598

Review 7.  Resuscitation-induced intestinal edema and related dysfunction: state of the science.

Authors:  Shinil K Shah; Karen S Uray; Randolph H Stewart; Glen A Laine; Charles S Cox
Journal:  J Surg Res       Date:  2009-09-29       Impact factor: 2.192

8.  Intestinal injury can be reduced by intra-arterial postischemic perfusion with hypertonic saline.

Authors:  Oleg Kornyushin; Michael Galagudza; Anna Kotslova; Gelfia Nutfullina; Nina Shved; Alexey Nevorotin; Valeriy Sedov; Timur Vlasov
Journal:  World J Gastroenterol       Date:  2013-01-14       Impact factor: 5.742

9.  Hydrostatic intestinal edema induced signaling pathways: potential role of mechanical forces.

Authors:  Shinil K Shah; Lindsey N Fogle; Kevin R Aroom; Brijesh S Gill; Stacey D Moore-Olufemi; Fernando Jimenez; Karen S Uray; Peter A Walker; Randolph H Stewart; Glen A Laine; Charles S Cox
Journal:  Surgery       Date:  2010-01-25       Impact factor: 3.982

10.  Intestinal edema: effect of enteral feeding on motility and gene expression.

Authors:  Stacey D Moore-Olufemi; Jeff Padalecki; Shodimu E Olufemi; Hasen Xue; Dwight H Oliver; Ravi S Radhakrishnan; Steve J Allen; Fred A Moore; Randy Stewart; Glen A Laine; Charles S Cox
Journal:  J Surg Res       Date:  2008-10-24       Impact factor: 2.192

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