首页> 外文期刊>Journal of Agricultural and Food Chemistry >Carbon-14 biolabeling of (+)-catechin and proanthocyanidin oligomers in willow tree cuttings.
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Carbon-14 biolabeling of (+)-catechin and proanthocyanidin oligomers in willow tree cuttings.

机译:柳树插条中(+)-儿茶素和原花青素低聚物的碳14生物标记。

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摘要

Proanthocyanidin polymers, oligomers, and the structurally related monomer (+)-catechin were labeled by incorporation of radioactive precursors in shoots of willow tree (Salix caprea L.). [1-(14)C]-Acetate and [U-(14)C]-phenylalanine precursors were fed through the cut stems or petioles of leaves. Optimization of several parameters such as the nature and origin of the plant material, leaf maturity, nature, and quantity of radioactive precursor applied and the duration of metabolism led to incorporation yields of 3.2% and to specific activities of 500 microCi/g. Detailed characterization of the products (polymerization degree, procyanidin/prodelphinidin ratio, specific activities) and purification by chromatography are reported. Some sugars bound to radiolabeled proanthocyanidin polymers were removed by enzymic treatment with a mixture of glycosidases. A radioactive purity close to 100% and specific activities suitable for bioavailability studies were obtained.
机译:原花青素聚合物,低聚物和与结构相关的单体(+)-儿茶素通过在柳树(Salix caprea L.)的芽中掺入放射性前体来标记。将[1-(14)C]-乙酸酯和[U-(14)C]-苯丙氨酸前体通过切下的茎或叶柄喂食。几个参数的优化,例如植物材料的性质和来源,叶片成熟度,所应用的放射性前体的性质和数量以及新陈代谢的持续时间,导致掺入率为3.2%,比活为500 microCi / g。报道了产物的详细表征(聚合度,原花青素/原卟啉比,比活性)和通过色谱法纯化。通过用糖苷酶的混合物进行酶处理,除去了一些与放射性标记的原花青素聚合物结合的糖。获得了接近100%的放射性纯度和适合生物利用度研究的比活。

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