Mostrando 2,121 - 2,140 Resultados de 7,900 Para Buscar 'Redfoo~', tiempo de consulta: 3.23s Limitar resultados
  1. 2121
    “…Starting from mitochondria as the main sources and targets of ROS in ischemic/reperfused myocardium, a complex network of cellular and extracellular processes is discussed, including relationships with Ca(2+) homeostasis, thiol group redox balance, hydrogen sulfide modulation, cross-talk with NAPDH oxidases, exosomes, cytokines and growth factors. …”
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  2. 2122
    “…The adsorption capacity and overall efficiency of MNPs are influenced by redox state as well as surface charge, the latter of which is directly related to solution pH. …”
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  3. 2123
    “…In this study, we designed targeted and redox-responsive Melittin conjugates for cervical cancer and then tested them in vitro. …”
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  4. 2124
    por Cobley, James N.
    Publicado 2023
    “…Like primary colours, specific reactive oxygen species (ROS) and antioxidant inputs can be mixed to create unique “shades” of oxidative stress. Even a minimal redox module comprised of just 12 (ROS & antioxidant) inputs and 3 outputs (oxidative damage, cysteine-dependent redox-regulation, or both) yields over half a million “shades” of oxidative stress. …”
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  5. 2125
    “…The six subunits NqrA, B, C, D, E, and F of Na(+)-NQR harbor a unique set of cofactors that shuttle the electrons from NADH twice across the membrane to quinone. The redox state of a unique intramembranous [2Fe-2S] cluster orchestrates the movements of subunit NqrC, which acts as an electron transfer switch. …”
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  6. 2126
    por Mu, Kaiwen, Kitts, David D.
    Publicado 2023
    “…This is based on the fact that cell redox homeostasis is achieved by a balance between H(2)O(2) formation and subsequent outcomes of antioxidant systems function. …”
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  7. 2127
    “…A unique prospect of using halides as charge carriers is the possibility of the halides undergoing anodic redox behaviors when serving as charge carriers for the charge-neutrality compensation of electrodes. …”
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  8. 2128
    “…Studying enzyme expression and regulation between carbon sources will help decode the metabolic rewiring that stymies lignin to lipid conversion in these bacteria. Herein, a redox proteomics approach was applied to investigate a fundamental driver of carbon catabolism and lipid anabolism: redox balance. …”
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  9. 2129
    “…Our genomic evidence indicates that microbial carbon degradation is dominated by iron redox metabolism via an increase in gene abundance associated with Fe(III) reduction and Fe(II) oxidation during initial permafrost thaw, likely increasing microbial respiration while suppressing methanogenesis in wet sedge tundra.…”
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  10. 2130
  11. 2131
    “…We propose that TXNL1 acts as an effector of oxidants or a redox sensor by converting redox changes into changes of GDI capacity to capture Rab5, which in turn modulates fluid phase endocytosis.…”
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  12. 2132
    “…Antioxidants in plant cells mainly include glutathione, ascorbate, tocopherol, proline, betaine and others, which are also information-rich redox buffers and important redox signaling components that interact with cellular compartments. …”
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  13. 2133
    por Olive, P. L.
    Publicado 1989
    “…The fluorescent redox probe hydroethidine was accumulated and metabolised about five times faster in aerobic than in hypoxic mammalian cells. …”
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  14. 2134
    “…Since this imbalance in hepatic oxidant/antioxidant homeostasis could coexist with systemic changes of oxidant stress/antioxidant status, plasma oxidants and antioxidant redox status in plasma of portacaval shunted-rats were determined. …”
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  15. 2135
    “…We report that the proapoptotic activity of cytochrome c is influenced by its redox state and that increases in Reactive Oxygen Species (ROS) following an apoptotic insult lead to the oxidation and activation of cytochrome c. …”
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  16. 2136
  17. 2137
    “…AIMS: In this study, the effects of 0.1 mM Mn(2+) on thiol components (total thiols [TSH], glutathione reduced [GSH], glutathione oxidized [GSSG] and redox ratio [GSH/ GSSG]) have been determined in human spermatozoa. …”
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  18. 2138
    “…Our previous analyses demonstrated that the ER oxidoreductase protein disulfide isomerase (PDI) acts as a redox-dependent chaperone to unfold CTA1, a reaction postulated to initiate toxin retro-translocation. …”
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  19. 2139
    “…Here we describe inteins as redox-responsive switches in bacteria. Regulation was achieved by engineering a disulfide bond between the intein’s catalytic cysteine and the flanking polypeptide. …”
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  20. 2140
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