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首页> 外文期刊>American Journal of Physiology >Sepiapterin alleviates impaired gastric nNOS function in spontaneous diabetic female rodents through NRF2 rnRNA turnover and miRNA biogenesis pathway
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Sepiapterin alleviates impaired gastric nNOS function in spontaneous diabetic female rodents through NRF2 rnRNA turnover and miRNA biogenesis pathway

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An impaired nitrergic system and altered redox signaling contribute to gastric dysmotility in diabetics. Our earlier studies show that NF-E2-related factor 2 (NRF2) and phase II antioxidant enzymes play a vital role in gastric neuronal nitric oxide synthase (nNOS) function. This study aims to investigate whether supplementation of sepiapterin (SEP), a precursor for tetrahydrobiopterin (BH4) (a cofactor of NOS) via the salvage pathway, restores altered nitrergic systems and redox balance in spontaneous diabetic (DB) female rats. Twelve-week spontaneous DB and age-matched, non-DB rats, with and without dietary SEP (daily 20 mg/kg body wt for 10 days) treatment, were used in this study. Gastric antrum muscular tissues were excised to investigate the effects of SEP in nitrergic relaxation and the nNOS-nitric oxide (NO)-NRF2 pathway(s).

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