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首页> 外文期刊>The Journal of Nutritional Biochemistry >Glucose acts as a regulator of serum iron by increasing serum hepcidin concentrations.
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Glucose acts as a regulator of serum iron by increasing serum hepcidin concentrations.

机译:葡萄糖通过增加血清铁调素的浓度来调节血清铁。

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Mutual clinical and molecular interactions between iron and glucose metabolism have been reported. We aimed to investigate a potential effect of glucose on iron homeostasis. We found that serum iron concentrations gradually decreased over 180 min after the administration of 75 g of glucose from 109.8+or-45.4 mg/L to 94.4+or-40.4 mg/L (P<.001; N=40) but remained unchanged in control subjects receiving tap water (N=21). Serum hepcidin, the key iron regulatory hormone which is mainly derived from hepatocytes but also expressed in pancreatic beta-cells, increased within 120 min after glucose ingestion from 19.7+or-9.9 nmol/L to 31.4+or-21.0 nmol/L (P<.001). In cell culture, glucose induced the secretion of hepcidin and insulin into the supernatant of INS-1E cultures, but did not change the amount of hepcidin detectable in the hepatocyte cell culture HepG2. We additionally confirmed the expression of hepcidin in a human islet cell preparation. These results suggest that glucose acts as a regulator of serum iron concentrations, most likely by triggering the release of hepcidin from beta-cells. All rights reserved, Elsevier.
机译:已经报道了铁和葡萄糖代谢之间的相互临床和分子相互作用。我们旨在研究葡萄糖对铁稳态的潜在影响。我们发现,在施用75 g葡萄糖后180分钟内,血清铁浓度逐渐从109.8+或-45.4 mg / L降至94.4+或-40.4 mg / L(P <.001; N = 40),但保持不变在接受自来水的对照组中(N = 21)。血清铁调素是主要的铁调节激素,主要来源于肝细胞,但也在胰腺β细胞中表达,在葡萄糖摄入后120分钟内从19.7+或-9.9 nmol / L增加到31.4+或-21.0 nmol / L(P <.001)。在细胞培养中,葡萄糖诱导Hepcidin和胰岛素分泌到INS-1E培养物的上清液中,但没有改变肝细胞培养物HepG2中可检测到的hepcidin量。我们还证实了铁调素在人胰岛细胞制备物中的表达。这些结果表明,葡萄糖起着血清铁浓度的调节剂的作用,最有可能是触发了铁调素从β细胞的释放。保留所有权利,Elsevier。

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