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首页> 外文期刊>Annals of medicine >Genetic variants in BCMO1 and CD36 are associated with plasma lutein concentrations and macular pigment optical density in humans.
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Genetic variants in BCMO1 and CD36 are associated with plasma lutein concentrations and macular pigment optical density in humans.

机译:BCMO1和CD36中的遗传变异与人类血浆叶黄素浓度和黄斑色素光密度有关。

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Lutein is recovered at high concentration in the human macula lutea. Recent studies suggest that this micronutrient might be implicated in prevention of age-related macular degeneration. OBJECTIVE: to identify genes which affect blood and retina lutein concentrations among candidate genes (intestinal sterol transporters and carotenoid oxygenases). DESIGN: a comparative plus an observational study. PARTICIPANTS: twenty-nine healthy subjects for the comparative study and 622 subjects for the observational study. INTERVENTION AND METHODS: all the participants were genotyped for single nucleotide polymorphisms (SNPs) in the candidate genes. Fasting plasma lutein concentrations were measured in all the participants and after 6 months' supplementation, with either a lutein-rich supplement or a placebo, in the 29 subjects who participated in the comparative study. Macular pigment optical density (MPOD), which is a measure of macula concentration of lutein, was measured before and after the dietary intervention in the 29 subjects. Associations between SNPs and plasma lutein and MPOD were assessed by partial least square (PLS) regression followed by univariate analysis. Observed associations between SNPs and plasma lutein were verified by haplotype-based association analysis in the cohort of 622 subjects. MAIN OUTCOME MEASURES: plasma lutein levels and MPOD. RESULTS: six SNPs in four genes (ABCG8, BCMO1, CD36, and NPC1L1) explained 25% and 38% of the plasma and MPOD variance, respectively. Subjects with TT at the BCMO1 rs7501331 locus had lower (P < 0.05) plasma lutein than CT subjects. Subjects with CC at the CD36 rs13230419 locus had lower (P < 0.05) plasma lutein than subjects who carried a T allele. The association between CD36 and plasma lutein was confirmed in the cohort of 622 subjects. Subjects with TT at the BCMO1 rs7501331 locus had a higher (P < 0.05) MPOD, and subjects with GG at rs1761667 CD36 locus had a higher (P < 0.05) MPOD than those with an A allele. CONCLUSIONS: these results suggest that BCMO1 and CD36 are implicated in plasma and retina concentrations of lutein and that genetic variants in these genes can modulate blood and retina concentrations of lutein.
机译:叶黄素在人黄斑中以高浓度回收。最近的研究表明,这种微量营养素可能与预防老年性黄斑变性有关。目的:在候选基因(肠固醇转运蛋白和类胡萝卜素加氧酶)中鉴定影响血液和视网膜叶黄素浓度的基因。设计:一项比较研究和一项观察研究。参加者:29名健康受试者进行比较研究,622名受试者进行观察研究。干预和方法:对所有参与者的候选基因进行单核苷酸多态性(SNP)基因分型。在所有参加比较研究的29名受试者中,在所有参与者中以及补充了6个月的富含叶黄素的补充剂或安慰剂后,测量了空腹血浆中的叶黄素浓度。在29位受试者进行饮食干预之前和之后,测量了黄斑色素光密度(MPOD),它是叶黄素黄斑浓度的量度。 SNP与血浆叶黄素和MPOD之间的关联性通过偏最小二乘(PLS)回归,然后进行单变量分析来评估。通过基于单倍型的关联分析在622位受试者的队列中验证了SNP与血浆叶黄素之间的关联。主要观察指标:血浆叶黄素水平和MPOD。结果:四个基因(ABCG8,BCMO1,CD36和NPC1L1)中的六个SNP分别解释了血浆和MPOD变异的25%和38%。 BCMO1 rs7501331基因座处的TT受试者的血浆叶黄素水平低于CT受试者(P <0.05)。在CD36 rs13230419位点处CC的受试者比携带T等位基因的受试者的血浆叶黄素更低(P <0.05)。在622名受试者中证实了CD36与血浆叶黄素之间的关联。在BCMO1 rs7501331位点处有TT的受试者的MPOD较高(P <0.05),而在rs1761667 CD36位点处具有GG的受试者的MPOD较高(P <0.05)。结论:这些结果表明BCMO1和CD36与血浆和视网膜中的叶黄素浓度有关,这些基因的遗传变异可以调节血液和视网膜中的叶黄素浓度。

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