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Obesity Decreases Hepatic 25-Hydroxylase Activity Causing Low Serum 25-Hydroxyvitamin D

机译:肥胖导致低血清25-羟维生素D降低肝25-羟化酶活性

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摘要

Normal vitamin D homeostasis is critical for optimal health; nevertheless, vitamin D deficiency is a worldwide public health problem. Vitamin D insufficiency is most commonly due to inadequate cutaneous synthesis of cholecalciferol and/or insufficient intake of vitamin D, but can also arise as a consequence of pathological states such as obesity. Serum concentrations of 25(OH)D (calcidiol) are low in obesity, and fail to increase appropriately after vitamin D supplementation. Although sequestration of vitamin D in adipose tissues or dilution of ingested or cutaneously synthesized vitamin D in the large fat mass of obese patients has been proposed to explain these findings, here we investigate the alternative mechanism that reduced capacity to convert parent vitamin D to 25(OH)D due to decreased expression of CYP2R1, the principal hepatic vitamin D 25-hydroxylase. To test this hypothesis, we isolated livers from female mice of 6 to 24 weeks of age, weaned onto either a normal chow diet or a high-fat diet, and determined the abundance of Cyp2r1 mRNA using digital droplet-quantitative PCR. We observed a significant (p < 0.001) decrease in Cyp2r1 mRNA in the liver of high-fat diet–fed mice relative to lean-chow–fed female mice. Moreover, there was a significant (p < 0.01) relationship between levels of Cyp2r1 mRNA and serum 25(OH)D concentrations as well as between Cyp2R1 mRNA and the ratio of circulating 25(OH)D3 to cholecalciferol (p < 0.0001). Using linear regression we determined a curve with 25(OH)D3/cholecalciferol versus normalized Cyp2R1 mRNA abundance with an R2 value of 0.85. Finally, we performed ex vivo activity assays of isolated livers and found that obese mice generated significantly less 25(OH)D3 than lean mice (p < 0.05). Our findings indicate that expression of CYP2R1 is reduced in obesity and accounts in part for the decreased circulating 25(OH)D.
机译:正常的维生素D稳态对获得最佳健康至关重要。然而,维生素D缺乏症是世界范围内的公共卫生问题。维生素D功能不全最常见是由于胆钙化固醇的皮肤合成不足和/或维生素D摄入不足,但也可能由于诸如肥胖症等病理状态而引起。肥胖症患者的血清25(OH)D(骨化二醇)浓度低,补充维生素D后不能适当增加。尽管有人提出在脂肪组织中螯合维生素D或在肥胖患者的大量脂肪中稀释摄入的或皮肤合成的维生素D来解释这些发现,但在此我们研究了降低将母体维生素D转化为25( OH)D是由于CYP2R1(主要的肝脏维生素D 25-羟化酶)的表达下降所致。为了验证这一假设,我们从6至24周龄的雌性小鼠中分离了肝脏,断奶了普通的饮食或高脂饮食,并使用数字液滴定量PCR测定了Cyp2r1 mRNA的丰度。我们观察到,高脂饮食喂养小鼠的肝脏中Cyp2r1 mRNA显着(p <0.001)降低,而低脂饮食喂养的雌性小鼠则是如此。此外,Cyp2r1 mRNA水平与血清​​25(OH)D浓度之间以及Cyp2R1 mRNA与循环25(OH)D3与胆钙化醇之比之间存在显着(p <0.01)关系(p <0.0001)。使用线性回归,我们确定了25(OH)D3 /胆钙化固醇与归一化Cyp2R1 mRNA丰度的关系曲线,R2值为0.85。最后,我们进行了离体肝脏的离体活性测定,发现肥胖小鼠产生的25(OH)D3明显少于瘦小鼠(p <0.05)。我们的发现表明,CYP2R1的表达在肥胖症中降低,部分归因于循环中25(OH)D的降低。

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