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Cole MD, Lea C, Oxley N (2002). "4-Bromo-2,5-dimethoxyphenethylamine (2C-B): a review of the public domain literature". Sci Justice. 42 (4): 223–224. doi:10.1016/S1355-0306(02)71832-7. PMID12632938.
Caudevilla-Gálligo F, Riba J, Ventura M, González D, Farré M, Barbanoj MJ, et al. (July 2012). "4-Bromo-2,5-dimethoxyphenethylamine (2C-B): presence in the recreational drug market in Spain, pattern of use and subjective effects". Journal of Psychopharmacology. 26 (7): 1026–1035. doi:10.1177/0269881111431752. PMID22234927. S2CID35535891.
Caudevilla-Gálligo F, Riba J, Ventura M, González D, Farré M, Barbanoj MJ, et al. (July 2012). "4-Bromo-2,5-dimethoxyphenethylamine (2C-B): presence in the recreational drug market in Spain, pattern of use and subjective effects". Journal of Psychopharmacology. 26 (7): 1026–35. doi:10.1177/0269881111431752. PMID22234927. S2CID35535891.
Marcher-Rørsted E, Halberstadt AL, Klein AK, Chatha M, Jademyr S, Jensen AA, et al. (May 2020). "Investigation of the 2,5-Dimethoxy Motif in Phenethylamine Serotonin 2A Receptor Agonists". ACS Chem Neurosci. 11 (9): 1238–1244. doi:10.1021/acschemneuro.0c00129. PMID32212672.
Pottie E, Cannaert A, Stove CP (October 2020). "In vitro structure-activity relationship determination of 30 psychedelic new psychoactive substances by means of β-arrestin 2 recruitment to the serotonin 2A receptor". Arch Toxicol. 94 (10): 3449–3460. Bibcode:2020ArTox..94.3449P. doi:10.1007/s00204-020-02836-w. hdl:1854/LU-8687071. PMID32627074.
Wagmann L, Brandt SD, Stratford A, Maurer HH, Meyer MR (February 2019). "Interactions of phenethylamine-derived psychoactive substances of the 2C-series with human monoamine oxidases". Drug Test Anal. 11 (2): 318–324. doi:10.1002/dta.2494. PMID30188017.
Simmler LD, Buchy D, Chaboz S, Hoener MC, Liechti ME (April 2016). "In Vitro Characterization of Psychoactive Substances at Rat, Mouse, and Human Trace Amine-Associated Receptor 1". J Pharmacol Exp Ther. 357 (1): 134–144. doi:10.1124/jpet.115.229765. PMID26791601.
Moya PR, Berg KA, Gutiérrez-Hernandez MA, Sáez-Briones P, Reyes-Parada M, Cassels BK, et al. (June 2007). "Functional selectivity of hallucinogenic phenethylamine and phenylisopropylamine derivatives at human 5-hydroxytryptamine (5-HT)2A and 5-HT2C receptors". The Journal of Pharmacology and Experimental Therapeutics. 321 (3): 1054–61. CiteSeerX10.1.1.690.3752. doi:10.1124/jpet.106.117507. PMID17337633. S2CID11651502.
Nagai F, Nonaka R, Satoh Hisashi Kamimura K (March 2007). "The effects of non-medically used psychoactive drugs on monoamine neurotransmission in rat brain". Eur J Pharmacol. 559 (2–3): 132–137. doi:10.1016/j.ejphar.2006.11.075. PMID17223101.
Glennon RA, Bondarev ML, Khorana N, Young R, May JA, Hellberg MR, et al. (November 2004). "β-Oxygenated Analogues of the 5-HT2ASerotonin Receptor Agonist 1-(4-Bromo-2,5-dimethoxyphenyl)-2-aminopropane". Journal of Medicinal Chemistry. 47 (24): 6034–6041. doi:10.1021/jm040082s. ISSN0022-2623. PMID15537358.
Glennon RA, Dukat M, el-Bermawy M, Law H, De los Angeles J, Teitler M, et al. (June 1994). "Influence of amine substituents on 5-HT2A versus 5-HT2C binding of phenylalkyl- and indolylalkylamines". Journal of Medicinal Chemistry. 37 (13): 1929–35. doi:10.1021/jm00039a004. PMID8027974.
Pottie E, Cannaert A, Stove CP (October 2020). "In vitro structure-activity relationship determination of 30 psychedelic new psychoactive substances by means of β-arrestin 2 recruitment to the serotonin 2A receptor". Arch Toxicol. 94 (10): 3449–3460. Bibcode:2020ArTox..94.3449P. doi:10.1007/s00204-020-02836-w. hdl:1854/LU-8687071. PMID32627074.
Pottie E, Cannaert A, Stove CP (October 2020). "In vitro structure-activity relationship determination of 30 psychedelic new psychoactive substances by means of β-arrestin 2 recruitment to the serotonin 2A receptor". Arch Toxicol. 94 (10): 3449–3460. Bibcode:2020ArTox..94.3449P. doi:10.1007/s00204-020-02836-w. hdl:1854/LU-8687071. PMID32627074.
Nugteren-van Lonkhuyzen JJ, van Riel AJ, Brunt TM, Hondebrink L (December 2015). "Pharmacokinetics, pharmacodynamics and toxicology of new psychoactive substances (NPS): 2C-B, 4-fluoroamphetamine and benzofurans". Drug Alcohol Depend. 157: 18–27. doi:10.1016/j.drugalcdep.2015.10.011. PMID26530501.
Cole MD, Lea C, Oxley N (2002). "4-Bromo-2,5-dimethoxyphenethylamine (2C-B): a review of the public domain literature". Sci Justice. 42 (4): 223–224. doi:10.1016/S1355-0306(02)71832-7. PMID12632938.
Caudevilla-Gálligo F, Riba J, Ventura M, González D, Farré M, Barbanoj MJ, et al. (July 2012). "4-Bromo-2,5-dimethoxyphenethylamine (2C-B): presence in the recreational drug market in Spain, pattern of use and subjective effects". Journal of Psychopharmacology. 26 (7): 1026–1035. doi:10.1177/0269881111431752. PMID22234927. S2CID35535891.
Caudevilla-Gálligo F, Riba J, Ventura M, González D, Farré M, Barbanoj MJ, et al. (July 2012). "4-Bromo-2,5-dimethoxyphenethylamine (2C-B): presence in the recreational drug market in Spain, pattern of use and subjective effects". Journal of Psychopharmacology. 26 (7): 1026–35. doi:10.1177/0269881111431752. PMID22234927. S2CID35535891.
Marcher-Rørsted E, Halberstadt AL, Klein AK, Chatha M, Jademyr S, Jensen AA, et al. (May 2020). "Investigation of the 2,5-Dimethoxy Motif in Phenethylamine Serotonin 2A Receptor Agonists". ACS Chem Neurosci. 11 (9): 1238–1244. doi:10.1021/acschemneuro.0c00129. PMID32212672.
Pottie E, Cannaert A, Stove CP (October 2020). "In vitro structure-activity relationship determination of 30 psychedelic new psychoactive substances by means of β-arrestin 2 recruitment to the serotonin 2A receptor". Arch Toxicol. 94 (10): 3449–3460. Bibcode:2020ArTox..94.3449P. doi:10.1007/s00204-020-02836-w. hdl:1854/LU-8687071. PMID32627074.
Wagmann L, Brandt SD, Stratford A, Maurer HH, Meyer MR (February 2019). "Interactions of phenethylamine-derived psychoactive substances of the 2C-series with human monoamine oxidases". Drug Test Anal. 11 (2): 318–324. doi:10.1002/dta.2494. PMID30188017.
Simmler LD, Buchy D, Chaboz S, Hoener MC, Liechti ME (April 2016). "In Vitro Characterization of Psychoactive Substances at Rat, Mouse, and Human Trace Amine-Associated Receptor 1". J Pharmacol Exp Ther. 357 (1): 134–144. doi:10.1124/jpet.115.229765. PMID26791601.
Moya PR, Berg KA, Gutiérrez-Hernandez MA, Sáez-Briones P, Reyes-Parada M, Cassels BK, et al. (June 2007). "Functional selectivity of hallucinogenic phenethylamine and phenylisopropylamine derivatives at human 5-hydroxytryptamine (5-HT)2A and 5-HT2C receptors". The Journal of Pharmacology and Experimental Therapeutics. 321 (3): 1054–61. CiteSeerX10.1.1.690.3752. doi:10.1124/jpet.106.117507. PMID17337633. S2CID11651502.
Nagai F, Nonaka R, Satoh Hisashi Kamimura K (March 2007). "The effects of non-medically used psychoactive drugs on monoamine neurotransmission in rat brain". Eur J Pharmacol. 559 (2–3): 132–137. doi:10.1016/j.ejphar.2006.11.075. PMID17223101.
Glennon RA, Bondarev ML, Khorana N, Young R, May JA, Hellberg MR, et al. (November 2004). "β-Oxygenated Analogues of the 5-HT2ASerotonin Receptor Agonist 1-(4-Bromo-2,5-dimethoxyphenyl)-2-aminopropane". Journal of Medicinal Chemistry. 47 (24): 6034–6041. doi:10.1021/jm040082s. ISSN0022-2623. PMID15537358.
Glennon RA, Dukat M, el-Bermawy M, Law H, De los Angeles J, Teitler M, et al. (June 1994). "Influence of amine substituents on 5-HT2A versus 5-HT2C binding of phenylalkyl- and indolylalkylamines". Journal of Medicinal Chemistry. 37 (13): 1929–35. doi:10.1021/jm00039a004. PMID8027974.
Moya PR, Berg KA, Gutiérrez-Hernandez MA, Sáez-Briones P, Reyes-Parada M, Cassels BK, et al. (June 2007). "Functional selectivity of hallucinogenic phenethylamine and phenylisopropylamine derivatives at human 5-hydroxytryptamine (5-HT)2A and 5-HT2C receptors". The Journal of Pharmacology and Experimental Therapeutics. 321 (3): 1054–61. CiteSeerX10.1.1.690.3752. doi:10.1124/jpet.106.117507. PMID17337633. S2CID11651502.
Caudevilla-Gálligo F, Riba J, Ventura M, González D, Farré M, Barbanoj MJ, et al. (July 2012). "4-Bromo-2,5-dimethoxyphenethylamine (2C-B): presence in the recreational drug market in Spain, pattern of use and subjective effects". Journal of Psychopharmacology. 26 (7): 1026–1035. doi:10.1177/0269881111431752. PMID22234927. S2CID35535891.
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Caudevilla-Gálligo F, Riba J, Ventura M, González D, Farré M, Barbanoj MJ, et al. (July 2012). "4-Bromo-2,5-dimethoxyphenethylamine (2C-B): presence in the recreational drug market in Spain, pattern of use and subjective effects". Journal of Psychopharmacology. 26 (7): 1026–35. doi:10.1177/0269881111431752. PMID22234927. S2CID35535891.
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Moya PR, Berg KA, Gutiérrez-Hernandez MA, Sáez-Briones P, Reyes-Parada M, Cassels BK, et al. (June 2007). "Functional selectivity of hallucinogenic phenethylamine and phenylisopropylamine derivatives at human 5-hydroxytryptamine (5-HT)2A and 5-HT2C receptors". The Journal of Pharmacology and Experimental Therapeutics. 321 (3): 1054–61. CiteSeerX10.1.1.690.3752. doi:10.1124/jpet.106.117507. PMID17337633. S2CID11651502.
swissmedic.ch
"Verzeichnis aller betäubungsmittelhaltigen Stoffe" [Directory of all narcotics-containing substances]. Swissmedic (in German). Swiss Agency for Therapeutic Products. 2011-08-18. p. 2. Archived from the original(PDF) on 2012-03-15. Retrieved 2013-11-30.
"Verzeichnis aller betäubungsmittelhaltigen Stoffe" [Directory of all narcotics-containing substances]. Swissmedic (in German). Swiss Agency for Therapeutic Products. 2011-08-18. p. 2. Archived from the original(PDF) on 2012-03-15. Retrieved 2013-11-30.
Glennon RA, Bondarev ML, Khorana N, Young R, May JA, Hellberg MR, et al. (November 2004). "β-Oxygenated Analogues of the 5-HT2ASerotonin Receptor Agonist 1-(4-Bromo-2,5-dimethoxyphenyl)-2-aminopropane". Journal of Medicinal Chemistry. 47 (24): 6034–6041. doi:10.1021/jm040082s. ISSN0022-2623. PMID15537358.