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铁过载减少了大鼠肝脏胆汁酸的合成和消除。

Iron overload reduces synthesis and elimination of bile acids in rat liver.

机构信息

Department of Pharmacology, Charles University, Faculty of Medicine in Hradec Kralove, Hradec Kralove, Czech Republic.

Department of Biological and Medical Sciences, Charles University, Faculty of Pharmacy in Hradec Kralove, Hradec Kralove, Czech Republic.

出版信息

Sci Rep. 2019 Jul 5;9(1):9780. doi: 10.1038/s41598-019-46150-7.

Abstract

Excessive iron accumulation in the liver, which accompanies certain genetic or metabolic diseases, impairs bile acids (BA) synthesis, but the influence of iron on the complex process of BA homeostasis is unknown. Thus, we evaluated the effect of iron overload (IO) on BA turnover in rats. Compared with control rats, IO (8 intraperitoneal doses of 100 mg/kg every other day) significantly decreased bile flow as a consequence of decreased biliary BA secretion. This decrease was associated with reduced expression of Cyp7a1, the rate limiting enzyme in the conversion of cholesterol to BA, and decreased expression of Bsep, the transporter responsible for BA efflux into bile. However, IO did not change net BA content in faeces in response to increased intestinal conversion of BA into hyodeoxycholic acid. In addition, IO increased plasma cholesterol concentrations, which corresponded with reduced Cyp7a1 expression and increased expression of Hmgcr, the rate-limiting enzyme in de novo cholesterol synthesis. In summary, this study describes the mechanisms impairing synthesis, biliary secretion and intestinal processing of BA during IO. Altered elimination pathways for BA and cholesterol may interfere with the pathophysiology of liver damage accompanying liver diseases with excessive iron deposition.

摘要

肝脏中铁元素的过度积累会伴随某些遗传或代谢疾病,从而损害胆汁酸(BA)的合成,但铁对 BA 动态平衡这一复杂过程的影响尚不清楚。因此,我们评估了铁过载(IO)对大鼠 BA 周转率的影响。与对照组大鼠相比,IO(每隔一天腹腔内注射 100mg/kg 的 8 次)显著降低了胆汁流量,这是由于胆汁 BA 分泌减少所致。这种减少与限速酶 Cyp7a1 的表达减少有关,Cyp7a1 负责胆固醇转化为 BA,同时也与负责 BA 排入胆汁的转运体 Bsep 的表达减少有关。然而,IO 并没有改变粪便中 BA 的净含量,因为肠道中 BA 向 hyodeoxycholic acid 的转化增加。此外,IO 增加了血浆胆固醇浓度,这与 Cyp7a1 表达减少和 de novo 胆固醇合成的限速酶 Hmgcr 表达增加有关。总之,本研究描述了 IO 期间 BA 合成、胆汁分泌和肠道处理受损的机制。BA 和胆固醇的消除途径改变可能会干扰伴随过量铁沉积的肝脏疾病的病理生理学。

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