Literature DB >> 24720571

Abnormal mitochondrial fusion-fission balance contributes to the progression of experimental sepsis.

A S Gonzalez1, M E Elguero, P Finocchietto, S Holod, L Romorini, S G Miriuka, J G Peralta, J J Poderoso, M C Carreras.   

Abstract

Sepsis-associated multiple organ failure is a major cause of mortality characterized by a massive increase of reactive oxygen and nitrogen species (ROS/RNS) and mitochondrial dysfunction. Despite intensive research, determining events in the progression or reversal of the disease are incompletely understood. Herein, we studied two prototype sepsis models: endotoxemia and cecal ligation and puncture (CLP)-which showed very different lethality rates (2.5% and 67%, respectively)-, evaluated iNOS, ROS and respiratory chain activity, and investigated mitochondrial biogenesis and dynamics, as possible processes involved in sepsis outcome. Endotoxemia and CLP showed different iNOS, ROS/RNS, and complex activities time-courses. Moreover, these alterations reverted after 24-h endotoxemia but not after CLP. Mitochondrial biogenesis was not elicited during the first 24 h in either model but instead, 50% mtDNA depletion was observed. Mitochondrial fusion and fission were evaluated using real-time PCR of mitofusin-2 (Mfn2), dynamin-related protein-1 (Drp1), and using electron microscopy. During endotoxemia, we observed a decrease of Mfn2-mRNA levels at 4-6 h, and an increase of mitochondrial fragmentation at 6 h. These parameters reverted at 24 h. In contrast, CLP showed not only decreased Mfn2-mRNA levels at 12-18 h but also increased Drp1-mRNA levels at 4 h, and enhanced and sustained mitochondrial fragmentation. The in vivo pretreatment with mdivi-1 (Drp1 inhibitor) significantly attenuated mitochondrial dysfunction and apoptosis in CLP. Therefore, abnormal fusion-to-fission balance, probably evoked by ROS/RNS secondary to iNOS induction, contributes to the progression of sepsis. Pharmacological targeting of Drp1 may be a potential novel therapeutic tool for sepsis.

Entities:  

Keywords:  iNOS; lipopolysaccharide; mitochondria; nitric oxide; reactive oxygen species

Mesh:

Substances:

Year:  2014        PMID: 24720571     DOI: 10.3109/10715762.2014.906592

Source DB:  PubMed          Journal:  Free Radic Res        ISSN: 1029-2470


  29 in total

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Review 7.  Mitochondrial quality control mechanisms as potential therapeutic targets in sepsis-induced multiple organ failure.

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Journal:  J Mol Med (Berl)       Date:  2019-02-21       Impact factor: 4.599

8.  The Pathophysiology of Sepsis-Associated AKI.

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Review 9.  An Overview on Mitochondrial-Based Therapies in Sepsis-Related Myocardial Dysfunction: Mitochondrial Transplantation as a Promising Approach.

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Review 10.  Infectious disease-associated encephalopathies.

Authors:  Maria C Barbosa-Silva; Maiara N Lima; Denise Battaglini; Chiara Robba; Paolo Pelosi; Patricia R M Rocco; Tatiana Maron-Gutierrez
Journal:  Crit Care       Date:  2021-07-06       Impact factor: 9.097

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