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评估钙结石形成患者尿镁排泄与其他成分排泄之间的关联。

Evaluating the associations between urinary excretion of magnesium and that of other components in calcium stone-forming patients.

作者信息

Tavasoli Sanaz, Taheri Maryam, Taheri Fatemeh, Basiri Abbas, Bagheri Amiri Fahimeh

机构信息

Urology and Nephrology Research Center, Department of Urology, Shahid Labbafinejad Medical Center, Shahid Beheshti University of Medical Sciences, No. 103, 9th Boostan Street, Pasdaran Avenue, Tehran, Iran.

School of Nutritional Sciences and Dietetics, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Int Urol Nephrol. 2019 Feb;51(2):279-284. doi: 10.1007/s11255-018-2036-1. Epub 2018 Dec 4.

DOI:10.1007/s11255-018-2036-1
PMID:30515733
Abstract

PURPOSE

Magnesium plays numerous vital roles in human's body. It is known as a protective factor in stone formation by binding to oxalate in the intestinal and urinary system, and decreasing its absorption and crystallization, respectively. Due to controversies about the association between the 24-h urine magnesium and other urine metabolites in different studies, this study was designed to find a clear answer to this question.

METHODS

In this retrospective cross-sectional study, data from 24-h urinalysis of the calcium stone-forming (CSF) patients were assessed. The correlation between 24-h urine (24-U) magnesium to creatinine ratio (Mg/Cr) with other 24-U metabolites to creatinine ratio was assessed, using Spearman correlation test. The association between 24-U magnesium and 24-U oxalate was also studied in a multivariate logistic regression model.

RESULTS

Among 965 patients, the level of Mg/Cr showed a direct association with all other 24-U metabolite to Cr ratio (p-value < 0.001 for all analyses). The result of multivariate regression analysis showed that the higher quartile of 24-U oxalate (> 47 mg/24 h) increased the odds of 24-U magnesium more than 75 mg/24 h (data median) (OR 1.89, 95% CI 1.14-3.13) comparing with the lower quartile of 24-U oxalate (≤ 26 mg/24 h).

CONCLUSIONS

In a routine dietary habit, since rich sources of magnesium contain a high amount of oxalate at the same time, it is not surprising that magnesium level in 24-h urinalysis showed a direct association with 24-h urine oxalate.

摘要

目的

镁在人体中发挥着多种重要作用。它通过在肠道和泌尿系统中与草酸盐结合,分别减少其吸收和结晶,从而被认为是结石形成的一种保护因素。由于不同研究中关于24小时尿镁与其他尿代谢物之间关联存在争议,本研究旨在为该问题找到明确答案。

方法

在这项回顾性横断面研究中,评估了钙结石形成(CSF)患者24小时尿液分析的数据。使用Spearman相关检验评估24小时尿(24-U)镁与肌酐比值(Mg/Cr)与其他24-U代谢物与肌酐比值之间的相关性。还在多变量逻辑回归模型中研究了24-U镁与24-U草酸盐之间的关联。

结果

在965名患者中,Mg/Cr水平与所有其他24-U代谢物与Cr比值呈直接关联(所有分析的p值均<0.001)。多变量回归分析结果显示,与24-U草酸盐较低四分位数(≤26mg/24h)相比,24-U草酸盐较高四分位数(>47mg/24h)使24-U镁超过75mg/24h(数据中位数)的几率增加(OR 1.89,95%CI 1.14 - 3.13)。

结论

在日常饮食习惯中,由于富含镁的食物同时也含有大量草酸盐,24小时尿液分析中的镁水平与24小时尿草酸盐呈直接关联也就不足为奇了。

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本文引用的文献

1
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Urology. 2012 Oct;80(4):780-3. doi: 10.1016/j.urology.2012.06.033. Epub 2012 Aug 22.
2
Magnesium therapy for nephrolithiasis.用于肾结石的镁疗法。
Magnes Res. 2005 Jun;18(2):123-6.
3
Dietary risk factors for hyperoxaluria in calcium oxalate stone formers.草酸钙结石患者高草酸尿症的饮食风险因素。
一项病例对照研究表明,健康的植物性饮食可降低患结直肠癌的风险。
J Health Popul Nutr. 2024 Jul 31;43(1):111. doi: 10.1186/s41043-024-00605-4.
4
Kidney stones and dietary intake in adults: a population-based study in southwest Iran.成人肾结石与饮食摄入:伊朗西南部的一项基于人群的研究。
BMC Public Health. 2024 Apr 4;24(1):955. doi: 10.1186/s12889-024-18393-1.
5
Protective effect of bee pollen in acute kidney injury, proteinuria, and crystalluria induced by ethylene glycol ingestion in rats.蜂花粉对乙二醇摄入诱导的大鼠急性肾损伤、蛋白尿和结晶尿的保护作用。
Sci Rep. 2022 May 19;12(1):8351. doi: 10.1038/s41598-022-12086-8.
6
Effects of COVID-19 pandemics on urinary metabolites in kidney stone patients: our kidney stone prevention clinic experience.COVID-19 大流行对肾结石患者尿代谢物的影响:我们的肾结石预防诊所经验。
Environ Health Prev Med. 2021 Dec 2;26(1):112. doi: 10.1186/s12199-021-01037-w.
7
Association between hypomagnesemia and severity of primary hyperparathyroidism: a retrospective study.低镁血症与原发性甲状旁腺功能亢进症严重程度的关系:一项回顾性研究。
BMC Endocr Disord. 2021 Aug 20;21(1):170. doi: 10.1186/s12902-021-00838-y.
8
Global Variations in the Mineral Content of Bottled Still and Sparkling Water and a Description of the Possible Impact on Nephrological and Urological Diseases.瓶装静水和气泡水矿物质含量的全球差异以及对肾脏和泌尿系统疾病可能影响的描述
J Clin Med. 2021 Jun 27;10(13):2807. doi: 10.3390/jcm10132807.
Kidney Int. 2003 Mar;63(3):1037-43. doi: 10.1046/j.1523-1755.2003.00807.x.
4
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5
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6
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Urology. 2000 Jun;55(6):816-9. doi: 10.1016/s0090-4295(00)00518-5.
9
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10
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