首页> 外文期刊>European neuropsychopharmacology: the journal of the European College of Neuropsychopharmacology >Altered brain concentrations of citalopram and escitalopram in P-glycoprotein deficient mice after acute and chronic treatment
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Altered brain concentrations of citalopram and escitalopram in P-glycoprotein deficient mice after acute and chronic treatment

机译:急慢性治疗后P-糖蛋白缺乏症小鼠西酞普兰和依他普仑的脑浓度改变

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摘要

According to both in vitro and in vivo data P-glycoprotein (P-gp) may restrict the uptake of several antidepressants into the brain, thus contributing to the poor success rate of current antidepressant therapies. The therapeutic activity of citalopram resides in the S-enantiomer, whereas the R-enantiomer is practically devoid of serotonin reuptake potency. To date, no in vivo data are available that address whether the enantiomers of citalopram and its metabolites are substrates of P-gp. P-gp knockout (abcb1ab (-/-)) and wild-type (abcb1ab (+/+)) mice underwent acute (single-dose) and chronic (two daily doses for 10 days) treatment with citalopram (10. mg/kg) or escitalopram (5. mg/kg) Serum and brain samples were collected 1-6. h after the first or last i.p. injection for subsequent drug analysis by an enantioselective HPLC method. In brain, 3-fold higher concentrations of S- and R-citalopram, and its metabolites, were found in abcb1ab (-/-) mice than in abcb1ab (+/+) mice after both acute and chronic citalopram treatments. After escitalopram treatment, the S-citalopram brain concentration was 3-5 times higher in the knockout mice than in controls. The results provide novel evidence that the enantiomers of citalopram are substrates of P-gp. Possible clinical and toxicological implications of this finding need to be further elucidated.
机译:根据体外和体内数据,P-糖蛋白(P-gp)可能会限制几种抗抑郁药进入大脑,从而导致当前抗抑郁药治疗的成功率低下。西酞普兰的治疗活性存在于S-对映异构体中,而R-对映异构体实际上缺乏5-羟色胺的重吸收能力。迄今为止,尚无关于西酞普兰对映异构体及其代谢产物是否为P-gp底物的体内数据。 P-gp基因敲除(abcb1ab(-/-))和野生型(abcb1ab(+ / +))小鼠接受西酞普兰(10. mg / s)的急性(单剂量)和慢性(每日两次,共10天)治疗。 kg / kg或艾司西酞普兰(5. mg / kg)收集血清和脑样本1-6。第一个或最后一个i.p.通过对映选择性HPLC方法进行后续药物分析。在大脑中,经过急性和慢性西酞普兰治疗后,在abcb1ab(-/-)小鼠中发现S-和R-西酞普兰及其代谢产物的浓度比abcb1ab(+ / +)小鼠高3倍。依他普仑治疗后,基因敲除小鼠的S-西酞普兰脑部浓度比对照组高3-5倍。结果提供了新的证据,证明西酞普兰的对映异构体是P-gp的底物。该发现可能的临床和毒理学含义需要进一步阐明。

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