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首页> 外文期刊>Journal of Medicinal Chemistry >Central metal determines pharmacokinetics of chlorophyll-derived xenobioties
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Central metal determines pharmacokinetics of chlorophyll-derived xenobioties

机译:中央金属决定叶绿素衍生的异种生物的药代动力学

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Chlorophyll derivatives are potentially dangerous xenobiotics of dietary origin. The interactions of water- soluble derivatives of chlorophyll a with the animal organism were investigated using chlorophyllide a and its Zn-substituted analogue as model xenobiotics. The chlorophyllides were administered to tumor-bearing mice and their uptake, distribution, and clearance were compared. The centrally bound metal determines important aspects of the in vivo behavior of metal lochlorophyllides as xenobiotics. The uptake and clearance of chlorophyllide a were significantly faster than those of [Zn]-chlorophyllide a. Chlorophyllide a showed some tissue selectivity, while [Zn]-chlorophyllide a was uniformly distributed among tissues. Interestingly, T the tissue levels of the latter compound were ten times higher than those of the Mg-derivative. These differences indicate that [Zn]-chlorophyllide a, in contrast to chlorophyllide a, is only weakly recognized by the system of active transport of xenobiotics and by enzymes involved in chlorophyll metabolism. The dependence of chlorophyllide pharmacokinetics on the central metal is of great relevance to chlorophyllbased phototherapy.
机译:叶绿素衍生物是饮食来源中潜在的危险外源生物。使用叶绿素a及其锌取代类似物作为模型异质生物,研究了叶绿素a水溶性衍生物与动物有机体的相互作用。叶绿素被施用于荷瘤小鼠,并对其摄取,分布和清除率进行了比较。中心结合的金属决定金属叶绿素作为异生物的体内行为的重要方面。叶绿素a的吸收和清除明显快于[Zn]叶绿素a。叶绿素a显示出一定的组织选择性,而[Zn]-叶绿素a在组织之间均匀分布。有趣的是,后一种化合物的组织水平是Mg衍生物的组织水平的十倍。这些差异表明,与叶绿素a相反,[Zn]-叶绿素a仅被异种生物的主动转运系统和参与叶绿素代谢的酶弱识别。叶绿素的药代动力学对中心金属的依赖性与基于叶绿素的光疗有很大的关系。

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