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首页> 外文期刊>Antioxidants and redox signalling >Can Genetic Variability in alpha-Tocopherol Bioavailability Explain the Heterogeneous Response to alpha-Tocopherol Supplements?
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Can Genetic Variability in alpha-Tocopherol Bioavailability Explain the Heterogeneous Response to alpha-Tocopherol Supplements?

机译:α-生育酚生物利用度的遗传变异性能否解释对α-生育酚补充剂的异质反应?

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Both vitamin E (VE) consumption and blood VE status have been negatively associated with the incidence of degenerative diseases and some cancers. However, the response to VE supplementation is very variable among individuals. This could be due to interindividual variability in VE bioavailability, due, at least partly, to genetic variations in genes involved in VE metabolism. Thus, the main objective was to identify single nucleotide polymorphisms (SNPs) that may be involved in the interindividual variability in alpha-tocopherol (TOL) bioavailability. The postprandial chylomicron (CM) TOL response (area under the curve of the postprandial CM TOL concentration) to a TOL-rich meal was highly variable (coefficient of variation=81%; n=38). This response was positively correlated with the fasting plasma TOL concentration (r=0.5, p=0.004). A significant (p=1.8x10(-8)) partial least-squares regression model, which included 28 SNPs in 11 genes, explained 82% of this response. First evidence that the interindividual variability in TOL bioavailability is, at least partly, modulated by a combination of SNPs. TOL bioavailability is, at least partly, modulated by genetic variations that can affect long-term TOL status. This allows us to propose a new hypothesis that links the biological response to VE supplementation with one's individual genetic characteristics. Antioxid. Redox Signal. 22, 669-678.
机译:维生素E(VE)的消耗和血液VE的状态与退化性疾病和某些癌症的发生率负相关。然而,个体之间对VE补充的反应是非常不同的。这可能是由于VE生物利用度的个体差异,至少部分是由于参与VE代谢的基因的遗传变异。因此,主要目的是鉴定可能与α-生育酚(TOL)生物利用度的个体间差异有关的单核苷酸多态性(SNP)。餐后乳糜微粒(CM)TOL响应(餐后CM TOL浓度曲线下的面积)对富含TOL的膳食的变化很大(变异系数= 81%; n = 38)。该反应与空腹血浆TOL浓度呈正相关(r = 0.5,p = 0.004)。一个重要的(p = 1.8x10(-8))偏最小二乘回归模型(其中包括11个基因的28个SNP)解释了此响应的82%。第一个证据表明,TOL生物利用度的个体差异至少部分受SNP的组合调节。 TOL的生物利用度至少部分地受到可能影响长期TOL状态的遗传变异的调节。这使我们可以提出一个新的假设,将对补充VE的生物学反应与一个人的个体遗传特征联系起来。抗氧化。氧化还原信号。 22,669-678。

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