Valproinsyra Testmiljö
Valproinsyra
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Ibarra M, Vázquez M, Fagiolino P, Derendorf H. Sex related differences on valproic acid pharmacokinetics after oral single dose. J Pharmacokinet Pharmacodyn. 2013;40:479-86.
Park HM, Kang SS, Lee YB, Shin DJ, Kim ON, Lee SB et al. Population pharmacokinetics of intravenous valproic acid in Korean patients. J Clin Pharm Ther. 2002;27:419-25.
Smith RL, Haslemo T, Refsum H, Molden E. Impact of age, gender and CYP2C9/2C19 genotypes on dose-adjusted steady-state serum concentrations of valproic acid-a large-scale study based on naturalistic therapeutic drug monitoring data. Eur J Clin Pharmacol. 2016;72(9):1099-104.
Absenor (valproic acid). Summary of Product Characteristics. Swedish Medical Products Agency; 2018.
Ergenyl (valproic acid). Summary of Product Characteristics. Swedish Medical Products Agency; 2018.
Tomson T, Landmark CJ, Battino D. Antiepileptic drug treatment in pregnancy: changes in drug disposition and their clinical implications. Epilepsia. 2013;54:405-14.
Verrotti A, D'Egidio C, Mohn A, Coppola G, Chiarelli F. Weight gain following treatment with valproic acid: pathogenetic mechanisms and clinical implications. Obes Rev. 2011;12:e32-43.
Noai M, Soraoka H, Kajiwara A, Tanamachi Y, Oniki K, Nakagawa K et al. Cytochrome P450 2C19 polymorphisms and valproic acid-induced weight gain. Acta Neurol Scand. 2016;133(3):216-23.
Yamamoto Y, Takahashi Y, Imai K, Mishima N, Yazawa R, Inoue K et al. Risk factors for hyperammonemia in pediatric patients with epilepsy. Epilepsia. 2013;54(6):983-9.
Yamamoto Y, Takahashi Y, Suzuki E, Mishima N, Inoue K, Itoh K et al. Risk factors for hyperammonemia associated with valproic acid therapy in adult epilepsy patients. Epilepsy Res. 2012;101(3):202-9.
Tseng YL, Huang CR, Lin CH, Lu YT, Lu CH, Chen NC et al. Risk factors of hyperammonemia in patients with epilepsy under valproic acid therapy. Medicine (Baltimore). 2014;93(11):e66.
Läkemedelsverket. Valproat: Nya användningsbegränsningar; implementering av graviditetspreventionsprogrammet. Läkemedelsverket [www]. [cited 2018-09-28].
Potential risk of neurodevelopmental disorders in children born to men treated with valproate medicines: PRAC recommends precautionary measures. European Medicines Agency (EMA) [www]. [updated 2024-01-12, cited 2024-01-19].
Verrotti A, D'Egidio C, Mohn A, Coppola G, Parisi P, Chiarelli F. Antiepileptic drugs, sex hormones, and PCOS. Epilepsia. 2011;52:199-211.
Isojärvi JI, Löfgren E, Juntunen KS, Pakarinen AJ, Päivänsalo M, Rautakorpi I et al. Effect of epilepsy and antiepileptic drugs on male reproductive health. Neurology. 2004;62:247-53.
Ocek L, Tarhan H, Uludağ FI, Sarıteke A, Köse C, Colak A et al. Evaluation of sex hormones and sperm parameters in male epileptic patients. Acta Neurol Scand. 2018;137(4):409-416.
Statistikdatabas för läkemedel. Stockholm: Socialstyrelsen. 2022 [cited 2023-03-02.]
- Ibarra M, Vázquez M, Fagiolino P, Derendorf H. Sex related differences on valproic acid pharmacokinetics after oral single dose. J Pharmacokinet Pharmacodyn. 2013;40:479-86.
- Park HM, Kang SS, Lee YB, Shin DJ, Kim ON, Lee SB et al. Population pharmacokinetics of intravenous valproic acid in Korean patients. J Clin Pharm Ther. 2002;27:419-25.
- Smith RL, Haslemo T, Refsum H, Molden E. Impact of age, gender and CYP2C9/2C19 genotypes on dose-adjusted steady-state serum concentrations of valproic acid-a large-scale study based on naturalistic therapeutic drug monitoring data. Eur J Clin Pharmacol. 2016;72(9):1099-104.
- Absenor (valproic acid). Summary of Product Characteristics. Swedish Medical Products Agency; 2018.
- Ergenyl (valproic acid). Summary of Product Characteristics. Swedish Medical Products Agency; 2018.
- Tomson T, Landmark CJ, Battino D. Antiepileptic drug treatment in pregnancy: changes in drug disposition and their clinical implications. Epilepsia. 2013;54:405-14.
- Verrotti A, D'Egidio C, Mohn A, Coppola G, Chiarelli F. Weight gain following treatment with valproic acid: pathogenetic mechanisms and clinical implications. Obes Rev. 2011;12:e32-43.
- Noai M, Soraoka H, Kajiwara A, Tanamachi Y, Oniki K, Nakagawa K et al. Cytochrome P450 2C19 polymorphisms and valproic acid-induced weight gain. Acta Neurol Scand. 2016;133(3):216-23.
- Yamamoto Y, Takahashi Y, Imai K, Mishima N, Yazawa R, Inoue K et al. Risk factors for hyperammonemia in pediatric patients with epilepsy. Epilepsia. 2013;54(6):983-9.
- Yamamoto Y, Takahashi Y, Suzuki E, Mishima N, Inoue K, Itoh K et al. Risk factors for hyperammonemia associated with valproic acid therapy in adult epilepsy patients. Epilepsy Res. 2012;101(3):202-9.
- Tseng YL, Huang CR, Lin CH, Lu YT, Lu CH, Chen NC et al. Risk factors of hyperammonemia in patients with epilepsy under valproic acid therapy. Medicine (Baltimore). 2014;93(11):e66.
- Läkemedelsverket. Valproat: Nya användningsbegränsningar; implementering av graviditetspreventionsprogrammet. Läkemedelsverket [www]. [cited 2018-09-28].
- Potential risk of neurodevelopmental disorders in children born to men treated with valproate medicines: PRAC recommends precautionary measures. European Medicines Agency (EMA) [www]. [updated 2024-01-12, cited 2024-01-19].
- Verrotti A, D'Egidio C, Mohn A, Coppola G, Parisi P, Chiarelli F. Antiepileptic drugs, sex hormones, and PCOS. Epilepsia. 2011;52:199-211.
- Isojärvi JI, Löfgren E, Juntunen KS, Pakarinen AJ, Päivänsalo M, Rautakorpi I et al. Effect of epilepsy and antiepileptic drugs on male reproductive health. Neurology. 2004;62:247-53.
- Ocek L, Tarhan H, Uludağ FI, Sarıteke A, Köse C, Colak A et al. Evaluation of sex hormones and sperm parameters in male epileptic patients. Acta Neurol Scand. 2018;137(4):409-416.
- Statistikdatabas för läkemedel. Stockholm: Socialstyrelsen. 2022 [cited 2023-03-02.]