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glutathione plants Plant Peroxidases: Non-Heme Peroxidases with Large Functional Flexibility as a Core Component of ROS-Processing Mechanisms and Signalling Sulphate assimilation and glutathione synthesis

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Individuals with chronic obstructive pulmonary disease (COPD) experience long-term oxidative damage and lung tissue inflammation, leading to blocked airways, shortness of breath, and coughing

glutathione plants Plant Peroxidases: Non-Heme Peroxidases with Large Functional Flexibility as a Core Component of ROS-Processing Mechanisms and Signalling Sulphate assimilation and glutathione synthesis

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glutathione plants Plant Peroxidases: Non-Heme Peroxidases with Large Functional Flexibility as a Core Component of ROS-Processing Mechanisms and Signalling Sulphate assimilation and glutathione synthesis

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glutathione plants Plant Peroxidases: Non-Heme Peroxidases with Large Functional Flexibility as a Core Component of ROS-Processing Mechanisms and Signalling Sulphate assimilation and glutathione synthesis

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glutathione plants Plant Peroxidases: Non-Heme Peroxidases with Large Functional Flexibility as a Core Component of ROS-Processing Mechanisms and Signalling Sulphate assimilation and glutathione synthesis

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glutathione plants Plant Peroxidases: Non-Heme Peroxidases with Large Functional Flexibility as a Core Component of ROS-Processing Mechanisms and Signalling Sulphate assimilation and glutathione synthesis

10.1016/j.neulet.2004.05.046 176 SongS

glutathione plants Plant Peroxidases: Non-Heme Peroxidases with Large Functional Flexibility as a Core Component of ROS-Processing Mechanisms and Signalling Sulphate assimilation and glutathione synthesis

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