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ascorbate glutathione cycle plants The impact of engineered nickel oxide nanoparticles on in Allium cepa L. | Physiology and Molecular Biology of Impact of Ascorbate—Glutathione Cycle Components

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In contrast, cells in the lens nucleus have lost their capacity to synthesise GSH [49], and rely on anaerobic metabolism to produce their energy requirements [50]

ascorbate glutathione cycle plants The impact of engineered nickel oxide nanoparticles on in Allium cepa L. | Physiology and Molecular Biology of Impact of AscorbateGlutathione Cycle Components

Extremophiles (2012)

ascorbate glutathione cycle plants The impact of engineered nickel oxide nanoparticles on in Allium cepa L. | Physiology and Molecular Biology of Impact of AscorbateGlutathione Cycle Components

6a) and found that 8 of them were solubilised in ZIL and/or ZIL aqueous solution (ZIL aq.) (50, 25, or 5%, w/v), including zoledronic acid monohydrate, which is soluble in neither water nor DMSO (Supplementary Fig

ascorbate glutathione cycle plants The impact of engineered nickel oxide nanoparticles on in Allium cepa L. | Physiology and Molecular Biology of Impact of AscorbateGlutathione Cycle Components

Nomura, D

ascorbate glutathione cycle plants The impact of engineered nickel oxide nanoparticles on in Allium cepa L. | Physiology and Molecular Biology of Impact of AscorbateGlutathione Cycle Components

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