Urinary Caffeine Levels in Chinese Children: Insights from Diet, Gender, and Regional Variations.
中国の小児における尿中カフェイン濃度:食事、性別、地域差からの洞察 (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- ヒト
- 出版年
- 2025
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
中国の小児におけるカフェイン製品の消費が増加しているが、その変動要因に関する証拠は不足している。本研究は、広東省と広西省の小児とその親を対象に、食事、性別、地域が尿中カフェイン濃度に及ぼす影響を調査した。尿検体を液体-液体抽出で前処理し、UPLC-MS/MSでカフェインとクレアチニンを分析した。推定1日摂取量を算出し、人口統計学的・食事変数との関連を統計解析した。結果、小児の尿中カフェイン濃度は中央値2.18 ng/mL、検出率45%で、米国(30.1 ng/mL)より有意に低かった。性差は有意ではなかったが、牛乳摂取頻度が尿中カフェイン濃度と検出率に影響し、週3回の摂取で検出率が約60%と最も高かった。地域別では広東省の小児が広西省より高濃度(中央値5.20 vs 1.58 μg/gcrea)だった。推定1日摂取量は諸外国より低く、食事習慣がカフェイン摂取と有意に関連し、尿中カフェイン濃度が食事調査に有用であることが示された。
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抄録
Background/objectives: The consumption of caffeine products among children in China is on the rise, yet there remains a paucity of evidence regarding the variability of caffeine consumption and the influencing factors. Urinary caffeine levels provide a valid indicator of caffeine intake, as it directly reflects the quantitative measure of consumption within the population. This study aimed to investigate the effects of diet, gender, and region on urinary caffeine concentrations in Chinese children and their parents, specifically focusing on participants from Guangdong province and Guangxi province.Methods: Morning urine samples were pretreated using liquid-liquid extraction. Caffeine and creatinine concentrations were analyzed using ultra-performance liquid chromatography coupled with triple quadrupole mass spectrometry (UPLC-MS/MS), with quality control measures ensuring method accuracy (recovery rate: 92.8-122%, RSD < 20%). Caffeine exposure was assessed through estimated daily intake (EDI) calculations, and statistical analyses, including weighted regression and Spearman correlation, were conducted to evaluate associations with demographic and dietary variables.Results: The findings revealed that urinary caffeine levels and detection rates among Chinese children were significantly lower than those observed in the United States (30.1 ng/mL), with a median concentration of 2.18 ng/mL and a detection rate of 45%. Urinary caffeine concentrations in males were slightly higher than in females; however, these gender differences were not statistically significant. Certain dietary habits, particularly milk consumption, were found to influence urinary caffeine levels and detection rates. Using the random forest method, urine caffeine detection was highest (nearly 60%) when milk was consumed three times a week. Regionally, children in Guangdong had marginally higher urinary caffeine concentrations compared to those in Guangxi (median: 5.20 μg/gcrea vs. 1.58 μg/gcrea). The estimated daily caffeine intake suggested that children in China consume less caffeine than their counterparts in other countries.Conclusions: These results indicate that dietary habits significantly correlated with caffeine consumption in children, and urinary caffeine concentration serves as a valuable measure for dietary research.
MeSH
DOI 10.3390/nu17091594
PMID 40362903
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