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  1. 3221
    “…The WO(3)/SnO(2) nanocomposite catalyzed the redox reactions of [Fe(CN)(6)](3)/[Fe(CN)(6)](4−) ions, and the [Fe(CN)(6)](3−)/[Fe(CN)(6)](4−) ions also promoted redox reactions of the WO(3)/SnO(2) nanocomposite. …”
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  2. 3222
  3. 3223
  4. 3224
    “…Although there is still a lack of information on the underlying mechanisms of redox homeostasis and molecular redox networks in hair cells, an imbalance in mitochondrial reactive oxygen species (ROS) levels that enhance oxidative stress has been suggested as a key pathological factor eventually causing acquired sensorineural hearing loss. …”
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  5. 3225
    “…Furthermore, the effects of complex redox stimuli (e.g., high-glucose-ingestion after exercise) on redox homeostasis remains unclear. …”
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  6. 3226
  7. 3227
    “…People with lower risk score would have better prognosis, lower expression of redox related genes, higher immunogenicity, and better effect on immunotherapy. …”
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  8. 3228
    “…We also observed that SCV emergence contributes to redox rebalancing, suggesting that it is involved in an adaptive strategy. …”
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  9. 3229
  10. 3230
    “…The evaluation of the redox activity of newly synthesized compounds was performed in vitro in the human serum pool using redox status tests. …”
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  11. 3231
    “…As key kinetically relevant reaction steps, the reaction intermediate Cu(II)(NH(3))(4) ion hydrolyzes to Cu(II)(OH)(NH(3))(3) ion to gain redox activity. The Cu(II)(OH)(NH(3))(3) ion also transfers between neighboring zeolite cages to form highly reactive reaction intermediates. …”
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  12. 3232
    por Himmelstrup, Jonas, Jensen, Vidar R.
    Publicado 2023
    “…Highly inaccurate relative energies of redox and proton-coupled electron transfer (PCET) reactions of Kagan’s reagent are predicted by pure and hybrid density functional approximations (DFAs) when only scalar relativistic effects are accounted for. …”
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  13. 3233
    “…Redox-sensitive transcription factors such as NFκB, STAT3, AP1 and Nrf2 have a leading role in mechanisms of the formation of low- and high-grade systemic inflammatory phenotypes as variants of SIR. …”
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  14. 3234
    “…The present study reveals that the PRAK-NF-E2-related factor 2(NRF2) axis is essential for maintaining the intracellular redox homeostasis of T helper 17(Th17) cells, thereby promoting Th17 cell differentiation and antitumor effects. …”
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  15. 3235
    “…Changes in the light conditions affect the formation of reactive oxygen species, the activity of the antioxidants, and, consequently, the redox environment in the plant tissues. Many metabolic processes, thus the biogenesis and function of miRNAs, are redox-responsive. …”
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  16. 3236
    por Abanades, Stéphane
    Publicado 2023
    “…Accordingly, these materials can be processed in two-step redox cycles for thermochemical fuel production from H(2)O and CO(2) splitting. …”
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  17. 3237
    por Watermann, Patrick, Dringen, Ralf
    Publicado 2023
    “…We have adapted this method to monitor by determining the extracellular WST1 formazan accumulation the cellular redox metabolism of cultured primary astrocytes via the NAD(P)H-dependent reduction of the electron cycler β-lapachone by cytosolic NAD(P)H:quinone oxidoreductase 1 (NQO1). …”
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  18. 3238
  19. 3239
  20. 3240
    “…[Image: see text] The redox properties of titania films grown by ALD on SBA-15, a silica-based mesoporous material, were characterized as a function of thickness (that is, the number of ALD cycles used). (29)Si CP/MAS NMR helped to identify the nature of the surface species that form in the initial stages of deposition, and infrared absorption spectroscopy was used to follow the transition from silica to titania surfaces. …”
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