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圈养猎豹(猎豹属)对膳食异黄酮的吸收、排泄及代谢

Dietary isoflavone absorption, excretion, and metabolism in captive cheetahs (Acinonyx jubatus).

作者信息

Whitehouse-Tedd Katherine M, Cave Nicholas J, Ugarte Claudia E, Waldron Lucy A, Prasain Jeevan K, Arabshahi Alireza, Barnes Stephen, Thomas David G

机构信息

Center for Feline Nutrition, Institute of Food, Nutrition and Human Health, Massey University, Private Bag 11222, Palmerston North 4410, New Zealand.

出版信息

J Zoo Wildl Med. 2011 Dec;42(4):658-70. doi: 10.1638/2011-0060.1.

Abstract

Dietary isoflavones, capable of influencing reproductive parameters in domestic cats (Felis catus), have been detected in commercial diets fed to captive cheetahs (Acinonyx jubatus). However, the absorptive and metabolic capacity of cheetahs towards isoflavones has not yet been studied. Experiments were designed to describe the plasma concentration-time curve, metabolite profile, and urinary and fecal excretion of genistein and daidzein in cheetahs following consumption of isoflavones. Four adult cheetahs were administered a single oral bolus of genistein and daidzein, and five juvenile cheetahs consuming a milk replacer formula found to contain isoflavones were also included. Urine was collected from all animals, and blood and feces were also collected from adult cheetahs following isoflavone exposure. Samples were analyzed for isoflavone metabolite concentration by liquid chromatography-electrospray ionization-multiple reaction ion monitoring mass spectrometry and high-performance liquid chromatography. Sulfate conjugates were the primary metabolites detected of both genistein and daidzein (60-80% of total isoflavones present) in the plasma and urine of cheetahs. A smaller proportion of daidzein was detected as conjugates in the urine of juvenile cheetahs, compared to adult cheetahs. Other metabolites included unconjugated genistein and daidzein, O-desmethylangolensin, and dihydrodaidzein, but not equol. Only 33% of the ingested genistein dose, and 9% of daidzein, was detected in plasma from adult cheetahs. However, of the ingested dose, 67% of genistein and 45% of daidzein were detected in the feces of adults. This study revealed that cheetahs appear efficient in their conjugation of absorbed dietary isoflavones and only a small fraction of ingested dose is absorbed. However, the capacity of the cheetah to conjugate genistein and daidzein with sulfate moieties appears lower than reported in the domestic cat. This may confer greater opportunity for biologic activity of isoflavones in the cheetah than would be predicted from findings in the domestic cat. However, further investigation is required.

摘要

在圈养猎豹(Acinonyx jubatus)所食用的商业饲料中已检测到能够影响家猫(Felis catus)繁殖参数的膳食异黄酮。然而,猎豹对异黄酮的吸收和代谢能力尚未得到研究。本实验旨在描述猎豹摄入异黄酮后血浆浓度 - 时间曲线、代谢物谱以及染料木黄酮和大豆苷元的尿液和粪便排泄情况。给4只成年猎豹单次口服一剂染料木黄酮和大豆苷元,还纳入了5只食用发现含有异黄酮的代乳配方奶的幼年猎豹。收集了所有动物的尿液,在异黄酮暴露后还收集了成年猎豹的血液和粪便。通过液相色谱 - 电喷雾电离 - 多反应离子监测质谱法和高效液相色谱法分析样品中的异黄酮代谢物浓度。硫酸盐结合物是在猎豹血浆和尿液中检测到的染料木黄酮和大豆苷元的主要代谢物(占总异黄酮的60 - 80%)。与成年猎豹相比,在幼年猎豹尿液中检测到的大豆苷元结合物比例较小。其他代谢物包括未结合的染料木黄酮和大豆苷元、O - 去甲基安哥拉紫檀素和二氢大豆苷元,但不包括雌马酚。在成年猎豹的血浆中仅检测到摄入染料木黄酮剂量的33%和大豆苷元剂量的9%。然而,在成年猎豹的粪便中检测到摄入剂量的67%的染料木黄酮和45%的大豆苷元。本研究表明,猎豹似乎能有效地结合吸收的膳食异黄酮,且仅吸收一小部分摄入剂量。然而,猎豹将染料木黄酮和大豆苷元与硫酸基团结合的能力似乎低于家猫的报道。这可能使异黄酮在猎豹体内具有比根据家猫研究结果预测的更大的生物活性机会。然而,还需要进一步研究。

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