ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

Caffeine Therapy for Apnea of Prematurity: Role of the Circadian CLOCK Gene Polymorphism.

未熟児無呼吸に対するカフェイン療法:概日CLOCK遺伝子多型の役割 (機械翻訳の邦題)

Frontiers in pharmacology2021Guo HL, Long JY, Hu YH, et al.
研究デザインその他の原著論文
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研究デザイン
その他の原著論文
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未確定
出版年
2021
出典
doi.org
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出版状態
有効な記録
状態確認日
2026/08/17
収集日
2026/08/03
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確認段階
自動処理
記録状態
公開

日本語要約(機械生成)

未熟児無呼吸(AOP)に対する標準用量カフェインクエン酸療法の反応性には個人差があり、遺伝的要因が関与すると考えられる。本研究は、112名の未熟児(在胎週数35週未満)を無呼吸なし群(48名)とあり群(64名)に分け、カフェイン療法への反応と遺伝子多型の関連を検討した。CYP1A2、CYP3A4、CYP3A5、CYP3A7の多型では群間差は認められなかったが、AHR遺伝子の2つのSNPとCLOCK遺伝子の46候補SNP中26が反応性と関連し、FDR補正後も18が有意であった。さらに、AHR、ADORA2A、CLOCK遺伝子の強い連鎖不平衡が標準用量療法への良好な反応と有意に関連した。CLOCK遺伝子多型がAOP新生児のカフェイン療法反応性を決定する役割を持つことが示唆されたが、AHRとCLOCK経路のクロストークは不明であり、今後の研究が必要である。

この要約は公開抄録のみを根拠にAIが機械的に生成したものです。正確な内容は原文を確認してください。

抄録

Standard-dose caffeine citrate has been routinely prescribed for apnea of prematurity (AOP) management; however, some preterm infants respond well to the therapy while others do not. The AOP phenotype has been attributed solely to the immature control of the respiratory system consequent to preterm birth, but there are also important genetic influences. Based on our previous report, we tested the hypothesis that the human circadian locomotor output cycles kaput (CLOCK) gene polymorphisms play a role in the response to caffeine citrate therapy in preterm infants. We also studied the interactions of the circadian clock with aryl hydrocarbon receptor (AHR) signaling pathways in preterm babies who received caffeine citrate. This single-center study collected data from 112 preterm infants (<35 weeks gestational age) between July 2017 and July 2018, including apnea-free (n = 48) and apneic (n = 64) groups. Eighty-eight candidate single nucleotide polymorphisms (SNPs) were tested using the MassARRAY system. Association analysis was performed using the PLINK Whole Genome Data Analysis Toolset and SNPStats software. Linkage disequilibrium (LD) and haplotype analyses were performed using Hapview software. No significant intergroup differences in allele distributions or genotype frequencies of CYP1A2, CYP3A4, CYP3A5, and CYP3A7 were detected in our study on preterm babies. Two more SNPs in AHR were found to be associated with determining the response to caffeine citrate therapy in our pediatric patients. Of the 46 candidate SNPs in the CLOCK gene, 26 were found to be associated with determining the response to caffeine treatment in these babies. Interestingly, a significant association was retained for 18 SNPs in the CLOCK gene after false discovery rate correction. Moreover, strong LD formed in those variants in AHR, ADORA2A, and CLOCK genes was confirmed to be significantly associated with a better response to standard-dose caffeine therapy. In summary, CLOCK gene polymorphisms play a role in determining the response to caffeine therapy in premature neonates with AOP. However, whether the AHR and CLOCK signaling pathways crosstalk with each other during caffeine treatment remains largely unclear. Future clinical studies including more immature babies and basic research are needed to explore the mechanism by which circadian rhythms affect the response to caffeine therapy.

DOI 10.3389/fphar.2021.724145

PMID 35145399

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