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  • Bioscientifica  (1)
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  • Bioscientifica  (1)
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    Online Resource
    Bioscientifica ; 2021
    In:  Journal of Endocrinology Vol. 248, No. 2 ( 2021-02), p. 119-131
    In: Journal of Endocrinology, Bioscientifica, Vol. 248, No. 2 ( 2021-02), p. 119-131
    Abstract: Oxidative stress is proposed to be involved in nonalcoholic fatty liver disease (NAFLD). However, antioxidant therapy results in controversial outcomes. Therefore, we generated a new antioxidant/NAFLD mouse model, Lias High/High Lepr db/db mice, by crossbreeding Lepr db/db mice, an obesity mouse model, with Lias High/High mice, generated by overexpression of lipoic acid synthase gene ( Lias ) and having increased endogenous antioxidant capacity, to investigate whether the new model could block the development of NAFLD. We have systemically characterized the novel model based on the main features of human NAFLD, determined the impact of enhanced endogenous antioxidant capacity on the retardation of NAFLD and elucidated the underlying mechanisms using various biological and pathological methods. We found that Lias High/High Lepr db/db mice ameliorated many pathological changes of NAFLD compared with the control. In particular, Lias High/High Lepr db/db mice displayed the improved liver mitochondrial function, reflecting the decline of mitochondrial microvesicular steatosis, and reduced oxidative stress, which mainly contributes to the alleviation of pathologic alterations of the NAFLD progression. Our new model shows that mitochondrial dysfunction is a major pathogenesis for liver steatosis. Overexpression of Lias gene effectively reduces oxidative stress and protects mitochondria, and consequently attenuates NAFLD/NASH.
    Type of Medium: Online Resource
    ISSN: 0022-0795 , 1479-6805
    Language: Unknown
    Publisher: Bioscientifica
    Publication Date: 2021
    detail.hit.zdb_id: 1474892-7
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