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L-Citrulline in Maternal-Fetal and Neonatal Health: Metabolic Mechanisms and Emerging Therapeutic Applications.

母体-胎児および新生児の健康におけるL-シトルリン:代謝メカニズムと新興治療応用 (機械翻訳の邦題)

Nutrients2026Collins-Smith A, Jain S, Jain S
研究デザインレビュー
対象ヒト

記録の確認項目

研究デザイン
レビュー
対象
ヒト
出版年
2026
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
2026/08/13
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)

本論文は、母体-胎児および新生児の健康におけるL-シトルリンの代謝メカニズムと新興治療応用を扱った論文である。

この論文には公開抄録がないため、タイトルから機械的に生成した説明のみを表示しています。

抄録

L-citrulline is a non-protein amino acid with critical roles in perinatal and neonatal physiology through the intestinal-renal arginine-citrulline axis and nitric oxide (NO) production. During pregnancy, L-citrulline supports placental angiogenesis, vascular adaptation, and fetal growth through augmentation of arginine availability and endothelial NO production. In neonates, particularly preterm infants, developmental immaturity of citrulline and arginine synthesis contributes to hypoargininemia and may increase susceptibility to necrotizing enterocolitis, bronchopulmonary dysplasia with pulmonary hypertension, sepsis, and impaired intestinal function. Although L-citrulline has emerged as a promising modulator of NO bioavailability, prior reviews have largely focused on either adult cardiovascular disease or isolated neonatal applications, with limited integration of its mechanistic and translational relevance across the perinatal and neonatal continuum. Collectively, current evidence supports L-citrulline as a promising translational target in maternal-fetal and neonatal medicine because of its central role in vascular, inflammatory, and metabolic regulation. However, adequately powered clinical trials are needed to define optimal dosing, timing, patient selection, and long-term outcomes before routine clinical implementation can be recommended. This review provides a comprehensive evaluation of L-citrulline metabolism and its therapeutic potential from pregnancy through neonatal life, with emphasis on the intestinal-renal arginine-citrulline axis, endothelial function, and NO-mediated vascular regulation. We specifically examine the role of citrulline in key pathophysiologic mechanisms underlying maternal and neonatal disease, including endothelial dysfunction, impaired NO bioavailability, inflammation, oxidative stress, and abnormal placental vascular remodeling.

MeSH

ArginineCitrullineFemaleFetal DevelopmentHumansInfant HealthInfant, NewbornNitric OxidePregnancy

DOI 10.3390/nu18121923

PMID 42356310

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