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glutathione sperm improves testicular spermatogenesis through inhibiting oxidative stress, mitochondrial damage, and apoptosis induced by copper deposition in mice with Wilson disease Oxidative stress and antioxidant mechanisms

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Quorum sensing during maturation regulates EPS maintenance and enzyme release for dispersion

glutathione sperm improves testicular spermatogenesis through inhibiting oxidative stress, mitochondrial damage, and apoptosis induced by copper deposition in mice with Wilson disease Oxidative stress and antioxidant mechanisms

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glutathione sperm improves testicular spermatogenesis through inhibiting oxidative stress, mitochondrial damage, and apoptosis induced by copper deposition in mice with Wilson disease Oxidative stress and antioxidant mechanisms

Sublingual B12, which bypasses the gastrointestinal tract, is the least invasive and potentially most cost-effective option, especially for individuals with impaired absorption, making it an attractive alternative for long-term and patient-friendly management (Vidal-Alaball et al., 2006)

glutathione sperm improves testicular spermatogenesis through inhibiting oxidative stress, mitochondrial damage, and apoptosis induced by copper deposition in mice with Wilson disease Oxidative stress and antioxidant mechanisms

The KCNJ11 encoded protein forms a hetero-octomeric transporter with the protein encoded by the ABCC8 gene

glutathione sperm improves testicular spermatogenesis through inhibiting oxidative stress, mitochondrial damage, and apoptosis induced by copper deposition in mice with Wilson disease Oxidative stress and antioxidant mechanisms

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