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Metabolomic Profiling of Serum Retinol in the Alpha-Tocopherol Beta-Carotene Cancer Prevention (ATBC) Study

机译:血清视黄醇在α-生育酚β-胡萝卜素癌症预防(ATBC)研究中的代谢组学分析

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摘要

The role of retinol in the prevention of multifactorial chronic diseases remains uncertain, and there is sparse evidence regarding biological actions and pathways implicated in its effects on various outcomes. The aim is to investigate whether serum retinol in an un-supplemented state is associated with low molecular weight circulating metabolites. We performed a metabolomic analysis of 1,282 male smoker participants based on pre-supplementation fasting serum in the Alpha-Tocopherol, Beta-Carotene Cancer Prevention (ATBC) Study. We examined the association between 947 metabolites measured by ultra-high performance LC-MS/GC-MS and retinol concentration (from HPLC) using linear regression that estimated the difference in metabolite concentrations per unit difference in retinol concentration as standardized β-coefficients and standard errors (SE). We identified 63 metabolites associated with serum retinol below the Bonferroni-corrected P-value (p < 5.3 × 10–5). The strongest signals were for N-acetyltryptophan (β = 0.27; SE = 0.032; p = 9.8 × 10−17), myo-inositol (β = 0.23; SE = 0.032; p = 9.8 × 10−13), and 1-palmitoylglycerophosphoethanolamine (β = 0.22; SE = 0.032; p = 3.2 × 10−12). Several chemical class pathways were strongly associated with retinol, including amino acids (p = 1.6 × 10−10), lipids (p = 3.3 × 10–7), and cofactor/vitamin metabolites (3.3 × 10−7). The strongest sub-pathway association was for inositol metabolism (p = 2.0 × 10–14). Serum retinol concentration is associated with circulating metabolites in various metabolic pathways, particularly lipids, amino acids, and cofactors/vitamins. These interrelationships may have relevance to the biological actions of retinol, including its role in carcinogenesis.
机译:视黄醇在预防多因素慢性疾病中的作用仍不确定,关于其对各种结局的影响所涉及的生物学作用和途径的证据稀少。目的是研究处于未补充状态的血清视黄醇是否与低分子量循环代谢物相关。我们在Alpha-生育酚,β-胡萝卜素癌症预防(ATBC)研究中根据补充前的禁食血清对1,282名男性吸烟者进行了代谢组学分析。我们使用线性回归分析了超高性能LC-MS / GC-MS测定的947种代谢物与视黄醇浓度之间的关联(来自HPLC),线性回归估计了视黄醇浓度的单位差异中代谢物浓度的差异作为标准化的β系数和标准错误(SE)。我们确定了63种与血清视黄醇相关的代谢物,其含量低于Bonferroni校正的P值(p <5.3×10 -5 )。最强的信号是N-乙酰色氨酸(β= 0.27; SE = 0.032; p = 9.8×10 −17 ),肌醇(β= 0.23; SE = 0.032; p = 9.8×10 −13 )和1-棕榈酰甘油磷酸磷酸乙醇胺(β= 0.22; SE = 0.032; p = 3.2×10 −12 )。视黄醇与多种化学类途径密切相关,包括氨基酸(p = 1.6×10 -10 ),脂质(p = 3.3×10 -7 )和辅因子/维生素代谢产物(3.3××10 −7 )。最强的子途径关联是肌醇代谢(p = 2.0×10 –14 )。血清视黄醇浓度与各种代谢途径中的循环代谢物有关,尤其是脂质,氨基酸和辅因子/维生素。这些相互关系可能与视黄醇的生物学作用有关,包括其在致癌作用中的作用。

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