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1.
Braz. j. med. biol. res ; 52(9): e8935, 2019. graf
Article Dans Anglais | LILACS | ID: biblio-1019568

Résumé

The scientific publication landscape is changing quickly, with an enormous increase in options and models. Articles can be published in a complex variety of journals that differ in their presentation format (online-only or in-print), editorial organizations that maintain them (commercial and/or society-based), editorial handling (academic or professional editors), editorial board composition (academic or professional), payment options to cover editorial costs (open access or pay-to-read), indexation, visibility, branding, and other aspects. Additionally, online submissions of non-revised versions of manuscripts prior to seeking publication in a peer-reviewed journal (a practice known as pre-printing) are a growing trend in biological sciences. In this changing landscape, researchers in biochemistry and molecular biology must re-think their priorities in terms of scientific output dissemination. The evaluation processes and institutional funding for scientific publications should also be revised accordingly. This article presents the results of discussions within the Department of Biochemistry, University of São Paulo, on this subject.


Sujets)
Humains , Périodiques comme sujet/statistiques et données numériques , Édition/tendances , Recherche , Biochimie , Biologie moléculaire , Périodiques comme sujet/normes , Périodiques comme sujet/tendances , Brésil
2.
Braz. j. med. biol. res ; 38(3): 345-352, mar. 2005. ilus
Article Dans Anglais | LILACS | ID: lil-394809

Résumé

Mitochondrial ion transport, oxidative phosphorylation, redox balance, and physical integrity are key factors in tissue survival following potentially damaging conditions such as ischemia/reperfusion. Recent research has demonstrated that pharmacologically activated inner mitochondrial membrane ATP-sensitive K+ channels (mitoK ATP) are strongly cardioprotective under these conditions. Furthermore, mitoK ATP are physiologically activated during ischemic preconditioning, a procedure which protects against ischemic damage. In this review, we discuss mechanisms by which mitoK ATP may be activated during preconditioning and the mitochondrial and cellular consequences of this activation, focusing on end-effects which may promote ischemic protection. These effects include decreased loss of tissue ATP through reverse activity of ATP synthase due to increased mitochondrial matrix volumes and lower transport of adenine nucleotides into the matrix. MitoK ATP also decreases the release of mitochondrial reactive oxygen species by promoting mild uncoupling in concert with K+/H+ exchange. Finally, mitoK ATP activity may inhibit mitochondrial Ca2+ uptake during ischemia, which, together with decreased reactive oxygen release, can prevent mitochondrial permeability transition, loss of organelle function, and loss of physical integrity. We discuss how mitochondrial redox status, K+ transport, Ca2+ transport, and permeability transitions are interrelated during ischemia/reperfusion and are determinant factors regarding the extent of tissue damage.


Sujets)
Humains , Mitochondries du myocarde/métabolisme , Lésion de reperfusion myocardique/métabolisme , Canaux potassiques/physiologie , Transport biologique , Préconditionnement ischémique myocardique , Potentiels de membrane/physiologie , Ischémie myocardique/métabolisme , Stress oxydatif , Phosphorylation , Canaux potassiques/métabolisme , Potassium/métabolisme
3.
Braz. j. med. biol. res ; 33(2): 241-50, Feb. 2000.
Article Dans Anglais | LILACS | ID: lil-252302

Résumé

It is well known that mitochondria are the main site for ATP generation within most tissues. However, mitochondria also participate in a surprising number of alternative activities, including intracellular Ca2+ regulation, thermogenesis and the control of apoptosis. In addition, mitochondria are the main cellular generators of reactive oxygen species, and may trigger necrotic cell death under conditions of oxidative stress. This review concentrates on these alternative mitochondrial functions, and their role in cell physiopathology


Sujets)
Adénosine triphosphate/biosynthèse , Apoptose/physiologie , Calcium/métabolisme , Mitochondries/physiologie , Espèces réactives de l'oxygène/physiologie , Température du corps , Mort cellulaire/physiologie , Homéostasie , Stress oxydatif/physiologie
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