依西酞普兰
药物遗传学
CYP1A2
单核苷酸多态性
药理学
等位基因
抗抑郁药
医学
不利影响
内科学
生物
新陈代谢
遗传学
基因型
基因
细胞色素P450
海马体
作者
Hsiang-Wei Kuo,Shu Chih Liu,Hsiao‐Hui Tsou,Sheng-Wen Liu,Keh-Ming Lin,Shao‐Chun Lu,Mei‐Chun Hsiao,Chin‐Fu Hsiao,Chia-Yih Liu,Chia-Hui Chen,Mong‐Liang Lu,Winston W. Shen,Hwa-Sheng Tang,Shen-Ing Liu,Liang-Huey Chang,Hsiao-Yu Wu,Yao-Sheng Chang,Teng-Kuang Yeh,Andrew Ch Chen,Yu‐Li Liu
出处
期刊:Pharmacogenomics
[Future Medicine]
日期:2013-07-01
卷期号:14 (10): 1191-1201
被引量:30
摘要
The liver CYP1A2 enzyme may metabolize antidepressant escitalopram (S-CIT) to S-desmethylcitalopram (S-DCIT) and S-didesmethylcitalopram (S-DDCIT). This study tested whether genetic polymorphisms in the CYP1A2 gene are associated with the treatment responses to S-CIT.Ten SNPs in CYP1A2 were selected and genotyped in 158 patients under S-CIT treatment. The serum levels of S-CIT and its metabolites were measured by HPLC.CYP1A2 SNPs rs2069521, rs2069526, rs4646425 and rs4646427 are significantly associated with the metabolic ratios of S-DDCIT/S-DCIT (p = 0.002, 0.018, 0.008 and 0.004, respectively) at week 2 of treatment. Carriers of the allele types associated with higher S-DDCIT/S-DCIT ratios had more severe side effects.These results suggest that genetic variants in CYP1A2 may be indicators for S-CIT metabolism and that the fast metabolizers may experience more severe adverse reactions in the early stages of S-CIT treatment. Original submitted 27 December 2012; Revision submitted 15 May 2013.
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