Literature DB >> 10996508

Oxidative stress and apoptosis.

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Abstract

Apoptosis or programmed cell death, is essential for the normal functioning and survival of most multi-cellular organisms. The morphological and biochemical characteristics of apoptosis, however, are highly conserved during the evolution. It is currently believed that apoptosis can be divided into at least three functionally distinct phases, i.e. induction, effector and execution phase. Recent studies have demonstrated that reactive oxygen species (ROS) and the resulting oxidative stress play a pivotal role in apoptosis. Antioxidants and thiol reductants, such as N-acetylcysteine, and overexpression of manganese superoxide (MnSOD) can block or delay apoptosis. Bcl-2, an endogenously produced protein, has been shown to prevent cells from dying of apoptosis apparently by an antioxidative mechanism. Taken together ROS, and the resulting cellular redox change, can be part of signal transduction pathway during apoptosis. It is now established that mitochondria play a prominent role in apoptosis. During mitochondrial dysfunction, several essential players of apoptosis, including pro-caspases, cytochrome C, apoptosis-inducing factor (AIF), and apoptotic protease-activating factor-1 (APAF-1) are released into the cytosol. The multimeric complex formation of cytochrome C, APAF-1 and caspase 9 activates downstream caspases leading to apoptotic cell death. All the three functional phases of apoptosis are under the influence of regulatory controls. Thus, increasing evidences provide support that oxidative stress and apoptosis are closely linked physiological phenomena and are implicated in pathophysiology of some of the chronic diseases including AIDS, autoimmunity, cancer, diabetes mellitus, Alzheimer's and Parkinson's and ischemia of heart and brain.

Entities:  

Year:  2000        PMID: 10996508     DOI: 10.1016/s0928-4680(00)00053-5

Source DB:  PubMed          Journal:  Pathophysiology        ISSN: 0928-4680


  244 in total

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Journal:  Fish Physiol Biochem       Date:  2010-10-07       Impact factor: 2.794

Review 3.  Pancreatic ductal adenocarcinoma: a review of immunologic aspects.

Authors:  Megan B Wachsmann; Laurentiu M Pop; Ellen S Vitetta
Journal:  J Investig Med       Date:  2012-04       Impact factor: 2.895

Review 4.  Oxidative stress, cell cycle, and neurodegeneration.

Authors:  Jeffrey A Klein; Susan L Ackerman
Journal:  J Clin Invest       Date:  2003-03       Impact factor: 14.808

5.  The mitochondrial antioxidants thioredoxin-2 and Mn-superoxide dismutase are involved in the mechanisms of brain hypoxic tolerance.

Authors:  M O Samoilov; E A Rybnikova; E I Tjulkova; G Spyrou; M Pelto-Huikko
Journal:  Dokl Biol Sci       Date:  2002 Nov-Dec

Review 6.  Neuroprotective effects of ischemic preconditioning in brain mitochondria following cerebral ischemia.

Authors:  Miguel A Pérez-Pinzón
Journal:  J Bioenerg Biomembr       Date:  2004-08       Impact factor: 2.945

7.  Antioxidants rescue stressed embryos at a rate comparable with co-culturing of embryos with human umbilical cord mesenchymal cells.

Authors:  Ghazaleh Moshkdanian; Seyed Noureddin Nematollahi-Mahani; Fatemeh Pouya; Amirmahdi Nematollahi-Mahani
Journal:  J Assist Reprod Genet       Date:  2011-01-05       Impact factor: 3.412

8.  Apoptosis induction by interleukin-2-activated cytotoxic lymphocytes in a squamous cell carcinoma cell line and Daudi cells - involvement of reactive oxygen species-dependent cytochrome c and reactive oxygen species-independent apoptosis-inducing factors.

Authors:  Tetsuya Yamamoto; Eisaku Ueta; Tokio Osaki
Journal:  Immunology       Date:  2003-10       Impact factor: 7.397

9.  Association of heme oxygenase 1 with the restoration of liver function after damage in murine malaria by Plasmodium yoelii.

Authors:  Sumanta Dey; Somnath Mazumder; Asim Azhar Siddiqui; M Shameel Iqbal; Chinmoy Banerjee; Souvik Sarkar; Rudranil De; Manish Goyal; Samik Bindu; Uday Bandyopadhyay
Journal:  Infect Immun       Date:  2014-05-12       Impact factor: 3.441

10.  Homocysteine-induced brain lipid peroxidation: effects of NMDA receptor blockade, antioxidant treatment, and nitric oxide synthase inhibition.

Authors:  Aurelio Jara-Prado; Alberto Ortega-Vazquez; Leticia Martinez-Ruano; Camilo Rios; Abel Santamaria
Journal:  Neurotox Res       Date:  2003       Impact factor: 3.911

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