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首页> 外文期刊>Frontiers in Nutrition >The Effect of BCMO1 Gene Variants on Macular Pigment Optical Density in Young Healthy Caucasians
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The Effect of BCMO1 Gene Variants on Macular Pigment Optical Density in Young Healthy Caucasians

机译:BCMO1基因变异对年轻健康高加索人黄斑色素光密度的影响

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Background: Serum lutein (L) and zeaxanthin (Z) positively correlate with macular pigment optical density (MPOD), hence the latter is a valuable indirect tool for measuring L and Z content in the macula. L and Z have been attributed antioxidant capacity and protection from certain retinal diseases but their uptake within the eye is thought to depend on genetic, age and environmental factors. In particular gene variants within beta-carotene monooxygenase (BCMO1) are thought to modulate MPOD in the macula. Objectives: To determine the effect of BCMO1 single nucleotide polymorphisms (SNPs) rs11645428, rs6420424 and rs6464851 on macular pigment optical density (MPOD) in a cohort of young healthy participants of Caucasian origin with normal ocular health. Design: In this cohort study, MPOD was assessed in 46 healthy participants (22 male and 24 female) with a mean age of 24 ± 4.0 years (range 19-33). The three SNPs, rs11645428, rs6420424, rs6564851 that have established associations with MPOD were determined using MassEXTEND (hME) Sequenom assay. One-way analysis of variance (ANOVA) was performed on groups segregated into homozygous and heterozygous BCMO1 genotypes. Correlations between body mass index (BMI), iris colour, gender, central retinal thickness (CRT), diet and MPOD were investigated. Results: MPOD did not significantly vary with BCMO1 rs11645428 (F2,41 = 0.700, p = 0.503), rs6420424 (F2,41 = 0.210, p = 0.801) nor rs6464851 homozygous or heterozygous genotypes (F2,41 = 0,13, p = 0.88), in this young healthy cohort. The combination of these three SNPs into triple genotypes based on plasma conversion efficiency did not affect MPOD (F2,41 = 0.07, p = 0.9). There was a significant negative correlation with MPOD and central retinal thickness (r = - 0.39, p = 0.01) but no significant correlation between BMI, iris colour, gender and MPOD. Conclusion: Our results indicate that macular pigment deposition within the central retina is not dependent on BCMO1 gene variant.
机译:背景:血清叶黄素(L)和玉米黄质(Z)与黄斑色素光密度(MPOD)正相关,因此后者是测量黄斑中L和Z含量的有价值的间接工具。 L和Z被认为具有抗氧化能力和对某些视网膜疾病的保护作用,但人们认为它们在眼内的摄取取决于遗传,年龄和环境因素。特别是,β-胡萝卜素单加氧酶(BCMO1)中的基因变异被认为可调节黄斑中的MPOD。目的:确定BCMO1单核苷酸多态性(SNPs)rs11645428,rs6420424和rs6464851对一群眼健康正常的白种人白种人健康参与者的黄斑色素光密度(MPOD)的影响。设计:在这项队列研究中,对平均年龄为24±4.0岁(范围19-33)的46位健康参与者(22位男性和24位女性)进行了MPOD评估。使用MassEXTEND(hME)Sequenom分析确定了与MPOD建立了关联的三个SNP,rs11645428,rs6420424,rs6564851。对分离为纯合和杂合BCMO1基因型的组进行单向方差分析(ANOVA)。研究了体重指数(BMI),虹膜颜色,性别,视网膜中央厚度(CRT),饮食和MPOD之间的相关性。结果:MPOD随BCMO1 rs11645428(F2,41 = 0.700,p = 0.503),rs6420424(F2,41 = 0.210,p = 0.801)和rs6464851纯合或杂合基因型(F2,41 = 0,13,p = 0.88),在这个年轻健康的队列中。根据血浆转化效率将这三个SNP组合为三基因型不会影响MPOD(F2,41 = 0.07,p = 0.9)。与MPOD和视网膜中央厚度呈显着负相关(r =-0.39,p = 0.01),但BMI,虹膜颜色,性别和MPOD之间无显着相关性。结论:我们的结果表明黄斑色素沉积在视网膜中央不依赖于BCMO1基因变异。

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