Relative bioavailability of lutein and zeaxanthin in the presence of Omega-3- supplements and oxidative stress levels in humans

IF 7.6 2区 医学 Q1 NUTRITION & DIETETICS Proceedings of the Nutrition Society Pub Date : 2024-05-07 DOI:10.1017/s0029665124000715
K. Kalu, S. Lin, C. McMonnies, J. Arcot
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Abstract

Lutein and zeaxanthin (LZ) are the major constituents of macular pigment (MP), helping to protect the human retina from blue light and oxidative damage(1). Many studies have suggested that higher concentrations of retina LZ may reduce the risk of age-related macular degeneration (AMD) and improve retinal health(1–3). MP and serum L have shown positive linear response with L dose(4) but the combined effect (LZ + omega-3 suppl) has not been fully explored in healthy Australian adults. Understanding their bioavailability in relation to the effect of omega-3 fatty acid intakes along with LZ supplements could provide a useful indication of the potential to reduce the risk of AMD, preserve vision, and improve retinal health. LZ uptake and the associated oxidative stress levels were evaluated in two groups fed with commercially sourced supplements. The control group was given only LZ, while the intervention group was given LZ combined with omega-3 supplements containing Eicosapentaenoic acid (EPA) and Docosahexaenoic acid (DHA). 10 men and 6 women with an average age of 31.4 ± 1.3yrs participated in this randomised, non-blinded controlled study for a total of 19-d. The control group (9) consumed the LZ supplement (12mg/d) only, while the intervention group (7) consumed the LZ supplement along with 900mg/d of an omega-3 supplement (540mg EPA + DHA 360mg). Each group adhered to a comprehensive low-carotenoid and omega-3 diet list for the 12-d intervention period and the 7-d washout period. Participants reported daily foods consumed in their diet logbooks, and Automated Self-Administered 24 diet assessment log over the study period. The body composition of each subject from the two groups was assessed before and after the study using a SECA body composition analyser and blood samples (2-time point) collected over a 12-d test period. Mean ± SEM for serum LZ ranged from 2.23 ± 0.24 – 2.98 ± 0.24µg/ml for the control group and 1.10 ± 0.21–3.02 ± 0.73µg/ml for the intervention group. Percentage change in serum LZ concentration from (T0-T312h) and (T312h-T456h) were 26% and 34% (control) and 139% and 175% for (intervention), respectively. The Area Under the Curve (AUC0-456h) differed significantly (P<0.0469) during the entire study period (between groups) and related to the cumulative effect of intakes at various times of blood draw. LZ from the intervention group was 68% more bioavailable than the control group. The highest peak relative response in subjects in the control group was ≈33% (a 9.1-fold increase from baseline) at AUC (168-312h) and ≈46% (a 6.6-fold increase from baseline) at AUC (312-456h) for the intervention group. No significant (p>0.05) effect of omega-3-supplement addition on oxidative stress levels was observed. Omega-3- addition to intakes of supplement LZ was responsible for the increased absorption (intervention) observed but did not affect oxidative stress levels and the Red Blood Cell omega-3-status.

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叶黄素和玉米黄质的相对生物利用率与人体中的 Omega-3 补充剂和氧化应激水平有关
叶黄素和玉米黄质(LZ)是黄斑色素(MP)的主要成分,有助于保护人类视网膜免受蓝光和氧化损伤(1)。许多研究表明,较高浓度的视网膜 LZ 可降低老年性黄斑变性(AMD)的风险,改善视网膜健康(1-3)。MP和血清L与L剂量呈正线性反应(4),但在健康的澳大利亚成年人中,LZ+ω-3补充剂的综合效应尚未得到充分探讨。了解 LZ 的生物利用率与欧米伽-3 脂肪酸摄入量以及 LZ 补充剂的效果之间的关系,可以为降低 AMD 风险、保护视力和改善视网膜健康的潜力提供有用的指示。研究人员对两组摄入市售补充剂的人群进行了 LZ 摄入量和相关氧化应激水平的评估。对照组只摄入 LZ,而干预组则摄入 LZ 和含有二十碳五烯酸 (EPA) 和二十二碳六烯酸 (DHA) 的欧米伽-3 补充剂。10 名男性和 6 名女性(平均年龄为 31.4±1.3 岁)参加了这项随机、非盲法对照研究,研究时间共计 19 天。对照组(9 人)仅摄入 LZ 补充剂(12 毫克/天),而干预组(7 人)则在摄入 LZ 补充剂的同时,每天摄入 900 毫克的欧米伽-3 补充剂(540 毫克 EPA + 360 毫克 DHA)。在 12 天的干预期和 7 天的冲淡期中,每组都坚持低类胡萝卜素和欧米伽-3 综合饮食清单。在研究期间,受试者在饮食日志和自动自控24饮食评估日志中报告了每天摄入的食物。在研究前后,使用 SECA 身体成分分析仪和 12 天测试期间采集的血液样本(2 个时间点)对两组每位受试者的身体成分进行了评估。对照组血清 LZ 的平均值(±SEM)为 2.23 ± 0.24 - 2.98 ± 0.24 微克/毫升,干预组为 1.10 ± 0.21 - 3.02 ± 0.73 微克/毫升。从(T0-T312h)和(T312h-T456h)血清LZ浓度的变化百分比分别为(对照组)26%和34%,(干预组)139%和175%。在整个研究期间(组间),曲线下面积(AUC0-456h)差异显著(P<0.0469),这与不同抽血时间摄入量的累积效应有关。干预组的 LZ 生物利用率比对照组高 68%。对照组受试者在AUC(168-312小时)时的最高相对反应峰值≈33%(比基线增加9.1倍),而干预组在AUC(312-456小时)时的最高相对反应峰值≈46%(比基线增加6.6倍)。未观察到添加欧米伽-3补充剂对氧化应激水平有明显影响(p>0.05)。在 LZ 补充剂中添加欧米伽-3 是增加吸收(干预)的原因,但不会影响氧化应激水平和红细胞欧米伽-3 状态。
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来源期刊
CiteScore
15.50
自引率
0.00%
发文量
190
审稿时长
6-12 weeks
期刊介绍: Proceedings of the Nutrition Society publishes papers and abstracts presented by members and invited speakers at the scientific meetings of The Nutrition Society. The journal provides an invaluable record of the scientific research currently being undertaken, contributing to ''the scientific study of nutrition and its application to the maintenance of human and animal health.'' The journal is of interest to academics, researchers and clinical practice workers in both human and animal nutrition and related fields.
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