Diliberto J J, Usha G, Birnbaum L S
Division of Toxicology and Research Testing, National Institute of Environmental Health Sciences, Research Triangle Park, NC 27709.
Drug Metab Dispos. 1988 Sep-Oct;16(5):721-7.
The disposition of citral, an essential oil occurring in many foods and fragrances, was studied in male Fischer rats after iv, po, and dermal treatments. The pattern of distribution and elimination was the same after iv or oral exposure. Urine was the major route of elimination of citral-derived radioactivity, followed by feces, 14CO2, and expired volatiles. However, after dermal exposure, relatively less of the material was eliminated in the urine and more in the feces, suggesting a role for first-pass metabolism through the skin. Citral was almost completely absorbed orally; due to its extreme volatility, much of an applied dermal dose was lost. The citral remaining on the skin was fairly well absorbed. No effect of oral dose, from 5 to 500 mg/kg, was detected on disposition. Although the feces was a minor route of excretion, approximately 25% of the administered dose was eliminated via the bile within 4 hr of an iv dose. The metabolism of citral was both rapid and extensive. Within 5 min of an iv dose, no unmetabolized citral could be detected in the blood. Repeated exposure to citral resulted in an increase in biliary elimination, without any significant change in the pattern of urinary, fecal, or exhaled excretion. This suggests that citral may induce at least one pathway of its own metabolism. The rapid metabolism and excretion of this compound suggest that significant bioaccumulation of citral would not occur.
柠檬醛是一种存在于许多食品和香料中的精油,研究人员在雄性Fischer大鼠身上进行了静脉注射、口服和皮肤给药后对其处置情况的研究。静脉注射或口服暴露后,其分布和消除模式相同。尿液是柠檬醛衍生放射性物质的主要消除途径,其次是粪便、14CO2和呼出的挥发物。然而,皮肤暴露后,尿液中消除的物质相对较少,粪便中消除的较多,这表明皮肤首过代谢发挥了作用。柠檬醛口服几乎完全吸收;由于其挥发性极强,经皮肤给药的大部分剂量损失了。残留在皮肤上的柠檬醛吸收情况相当良好。未检测到5至500 mg/kg口服剂量对处置情况有影响。尽管粪便排泄是次要途径,但静脉注射剂量后4小时内约25%的给药剂量通过胆汁消除。柠檬醛的代谢迅速且广泛。静脉注射剂量后5分钟内,血液中未检测到未代谢的柠檬醛。重复暴露于柠檬醛导致胆汁消除增加,而尿液、粪便或呼出物排泄模式无任何显著变化。这表明柠檬醛可能诱导其自身至少一条代谢途径。该化合物的快速代谢和排泄表明柠檬醛不会发生显著的生物蓄积。