Literature DB >> 24359147

Relationship between redox status and cell fate in immunity and autoimmunity.

Elena Ortona1, Angela Maselli, Federica Delunardo, Tania Colasanti, Antonello Giovannetti, Marina Pierdominici.   

Abstract

SIGNIFICANCE: The signaling function of redox molecules is essential for an efficient and proper execution of a large number of cellular processes, contributing to the maintenance of cell homeostasis. Excessive oxidative stress is considered as playing an important role in the pathogenesis of autoimmune diseases by enhancing inflammation and breaking down the immunological tolerance through protein structural modifications that induce the appearance of neo/cryptic epitopes. RECENT ADVANCES: There is a complex reciprocal relationship between oxidative stress and both apoptosis and autophagy, which is essential to determine cell fate. This is especially relevant in the context of autoimmune disorders in which apoptosis and autophagy play a crucial pathogenic role. CRITICAL ISSUES: In this review, we describe the latest developments with regard to the involvement of redox molecules in the initiation and progression of autoimmune disorders, focusing on their role in cell fate regulation. We also discuss new therapeutic approaches that target oxidative stress in the treatment of these disorders. The administration of antioxidants is scarcely studied in autoimmunity, and future analyses are needed to assess its beneficial effects in preventing or ameliorating these diseases. FUTURE DIRECTIONS: Deciphering the intricate relationships between oxidative stress and both apoptosis and autophagy in the context of autoimmunity could be critical in elucidating key pathogenic mechanisms and could lead to novel interventions for the clinical management of autoimmune diseases.

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Year:  2014        PMID: 24359147     DOI: 10.1089/ars.2013.5752

Source DB:  PubMed          Journal:  Antioxid Redox Signal        ISSN: 1523-0864            Impact factor:   8.401


  10 in total

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2.  Environmental Agents, Oxidative Stress and Autoimmunity.

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Review 4.  NPGPx (GPx7): a novel oxidative stress sensor/transmitter with multiple roles in redox homeostasis.

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Review 5.  Crosstalk of mitochondria with NADPH oxidase via reactive oxygen and nitrogen species signalling and its role for vascular function.

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Review 6.  Targeting mitochondrial dysfunction and oxidative stress in heart failure: Challenges and opportunities.

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10.  Belimumab Decreases Autophagy and Citrullination in Peripheral Blood Mononuclear Cells from Patients with Systemic Lupus Erythematosus.

Authors:  Tania Colasanti; Francesca Romana Spinelli; Cristiana Barbati; Fulvia Ceccarelli; Susanna Scarpa; Marta Vomero; Cristiano Alessandri; Guido Valesini; Fabrizio Conti
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  10 in total

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