Literature DB >> 16870182

Hyperosmotic stress-dependent NFkappaB activation is regulated by reactive oxygen species and IGF-1 in cultured cardiomyocytes.

Verónica Eisner1, Alfredo Criollo, Clara Quiroga, Claudio Olea-Azar, Juan Francisco Santibañez, Rodrigo Troncoso, Mario Chiong, Guillermo Díaz-Araya, Rocío Foncea, Sergio Lavandero.   

Abstract

We have recently shown that hyperosmotic stress activates p65/RelB NFkappaB in cultured cardiomyocytes with dichotomic actions on caspase activation and cell death. It remains unexplored how NFkappaB is regulated in cultured rat cardiomyocytes exposed to hyperosmotic stress. We study here: (a) if hyperosmotic stress triggers reactive oxygen species (ROS) generation and in turn whether they regulate NFkappaB and (b) if insulin-like growth factor-1 (IGF-1) modulates ROS production and NFkappaB activation in hyperosmotically-stressed cardiomyocytes. The results showed that hyperosmotic stress generated ROS in cultured cardiac myocytes, in particular the hydroxyl and superoxide species, which were inhibited by N-acetylcysteine (NAC). Hyperosmotic stress-induced NFkappaB activation as determined by IkappaBalpha degradation and NFkappaB DNA binding. NFkappaB activation and procaspase-3 and -9 fragmentation were prevented by NAC and IGF-1. However, this growth factor did not decrease ROS generation induced by hyperosmotic stress, suggesting that its actions over NFkappaB and caspase activation may be due to modulation of events downstream of ROS generation. We conclude that hyperosmotic stress induces ROS, which in turn activates NFkappaB and caspases. IGF-1 prevents NFkappaB activation by a ROS-independent mechanism.

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Year:  2006        PMID: 16870182     DOI: 10.1016/j.febslet.2006.07.029

Source DB:  PubMed          Journal:  FEBS Lett        ISSN: 0014-5793            Impact factor:   4.124


  13 in total

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8.  Activation of the low molecular weight protein tyrosine phosphatase in keratinocytes exposed to hyperosmotic stress.

Authors:  Rodrigo A Silva; Marcelly V Palladino; Renan P Cavalheiro; Daisy Machado; Bread L G Cruz; Edgar J Paredes-Gamero; Maria C C Gomes-Marcondes; Willian F Zambuzzi; Luciana Vasques; Helena B Nader; Ana Carolina S Souza; Giselle Z Justo
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9.  Osmolality Selectively Offsets the Impact of Hyperthermia on Mouse Skeletal Muscle in vitro.

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10.  Effect of reactive oxygen species generation in rabbit corneal epithelial cells on inflammatory and apoptotic signaling pathways in the presence of high osmotic pressure.

Authors:  Yihui Chen; Min Li; Bing Li; Weifang Wang; Anjuan Lin; Minjie Sheng
Journal:  PLoS One       Date:  2013-08-15       Impact factor: 3.240

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