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Metabolism of Lutein and Zeaxanthin in Rhesus Monkeys: Identification of (3R6′R)- and (3R6′S)-3′-Dehydro-lutein as Common Metabolites and Comparison to Humans

机译:叶黄素和玉米黄质在恒河猴中的代谢:(3R6R)-和(3R6S)-3-脱氢叶黄素作为常见代谢产物的鉴定及与人类的比较

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摘要

Lutein and zeaxanthin are xanthophylls that can be found highly concentrated in the macula of the retina. They are thought to protect the macula through their role as blue-light filters and because of their antioxidant and singlet oxygen quenching properties. Examination of metabolites unique to lutein and zeaxanthin such as 3′-dehydro-lutein, and of their stereochemistry may provide insight to the mechanism by which they are formed and by which they exert protection. To evaluate the formation of such metabolites, eleven monkeys were raised on a xanthophyll-free diet, and supplemented with pure lutein or pure zeaxanthin (2.2 mg/kg body weight/d). The period of supplementation ranged between 12 to 92 weeks. At study start and throughout the study, serum samples were taken and analyzed for xanthophylls using different HPLC systems. Xanthophyll metabolites were identified using UV/VIS and HR-MS detection. Lutein and zeaxanthin metabolites were found in detectable amounts with 3′-dehydro-lutein being a common metabolite of both. Using chiral-phase HPLC, two diastereomers, (3R,6′R)-3′-dehydro-lutein and (3R,6′S)-3′-dehydro-lutein, were identified and shown to be present in nearly equimolar amounts. A pathway for their formation from either lutein or zeaxanthin is proposed. These finding were comparable to results obtained with human plasma.
机译:叶黄素和玉米黄质是叶黄素,可以高度集中在视网膜的黄斑中。由于它们的抗氧化剂和单线态氧猝灭特性,它们被认为可以通过充当蓝光滤镜来保护黄斑。对叶黄素和玉米黄质特有的代谢产物(例如3'-脱氢-叶黄素)及其立体化学的检查可能会为它们形成和发挥保护作用的机理提供见解。为了评估此类代谢产物的形成,在无叶黄素饮食下饲养了11只猴子,并补充了纯叶黄素或纯玉米黄质(2.2 mg / kg体重/ d)。补充期为12至92周。在研究开始时和整个研究过程中,均采集血清样品并使用不同的HPLC系统分析叶黄素。叶黄素代谢物使用UV / VIS和HR-MS检测进行鉴定。叶黄素和玉米黄质代谢产物的含量可检测到,其中3'-脱氢叶黄素是两者的常见代谢产物。使用手性相HPLC鉴定出两种非对映异构体(3R,6'R)-3'-脱氢-叶黄素和(3R,6'S)-3'-脱氢-叶黄素,并以几乎等摩尔的量存在。提出了从叶黄素或玉米黄质形成它们的途径。这些发现与人类血浆获得的结果相当。

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