儿童的维生素 D 状态、维生素 D 受体、CYP2R1 和 CYP24A1 图谱

A. Iriani, Andhika Rachman, Marsya Kaila Fatina, R. K. Gemilang, Andi Trisnandi, Fiona Valerie Muskananfola, Media Fitri Isma Nugraha
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引用次数: 0

摘要

维生素 D 在肌肉骨骼和免疫系统中发挥着重要作用。了解维生素 D 受体以及维生素 D 诱导酶(CYP2R1)和抑制酶(CYP24A1)在其代谢过程中的综合机制非常有意义。本研究旨在了解印尼儿科,特别是日照充足的雅加达儿科的维生素 D 代谢情况。本研究对 46 名无已知疾病的儿童进行了横断面研究,对维生素 D、维生素 D 受体、CYP2R1 和 CYP24A1 水平进行了比较、相关和多变量分析。年龄与维生素 D 水平呈负相关(p 2 年(OR 42.092,95% CI [4.532-390.914],p = 0.001)。维生素 D 水平不足组的 VDR 水平明显低于维生素 D 水平充足组(p = 0.018)。维生素 DDR 与维生素 D 状态呈正相关(OR 7.023,95% CI [1.864-26.453],p = 0.004)。维生素 D 受体水平与维生素 D 水平呈线性相关。CYP2R1 和 CYP24A1 呈正比关系。建议对 2 岁以上儿童进行维生素 D 筛查和补充。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vitamin D status, vitamin D receptor, CYP2R1, and CYP24A1 profiles in children
Vitamin D plays a major role in the musculoskeletal and immune system. Understanding the comprehensive mechanism of vitamin D receptors and the enzyme of vitamin D induction (CYP2R1) and inhibition (CYP24A1) in its metabolism is interesting. This study aims to understand vitamin D metabolism in Indonesian pediatrics, specifically in Jakarta, which has abundant sun exposure.A cross-sectional study with comparative, correlative, and multivariate analysis on vitamin D, vitamin D receptor, CYP2R1, and CYP24A1 levels was conducted on 46 children with no known morbidity.Subjects were mostly male (52.2%), age group of 2–6 years (34.8%), and had sufficient vitamin D status (43.5%, median 27.55 ng/mL). Age was found to have a negative correlation with vitamin D levels (p < 0.001; r = −0.625) and CYP2R1 (p = 0.035; r = −0.311). Significant positive associations were found between CYP24A1 and CYP2R1 (p = 0.046; r = 0.296). Participants aged 0–2 are more likely to have a higher level of vitamin D status compared to those aged >2 years (OR 42.092, 95% CI [4.532–390.914], p = 0.001). VDR levels were significantly lower in insufficient vitamin D levels than in the sufficient group (p = 0.018). VDR and vitamin D status had a positive relation (OR 7.023, 95% CI [1.864–26.453], p = 0.004).Vitamin D levels decrease with the increase in age. Vitamin D receptor level has an inline-level progression with vitamin D level. CYP2R1 and CYP24A1 suggest a directly proportional relationship. Vitamin D screening and supplementation in children older than 2 years old are suggested.
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