Welter-Luedeke, J; Maurer, HH. New psychoactive substances: chemistry, pharmacology, metabolism, and detectability of amphetamine derivatives with modified ring systems. Ther. Drug Monit., 1 Feb 2016, 38 (1), 4–11. 216 kB. https://doi.org/10.1097/FTD.0000000000000240
EMCDDA. New drugs in Europe, 2013, European Monitoring Centre for Drugs and Drug Addiction, Lisbon, 1 Jul 2014. 311 kB.
King, LA. New phenethylamines in Europe. Drug Test. Anal., 1 Jul 2014, 6 (7-8), 808-818. 472 kB. https://doi.org/10.1002/dta.1570
Grumann, C; Auwärter, V. Separation of positional isomers of nine 2-phenethylamine-derived designer drugs by liquid chromatography-tandem mass spectrometry. Drug Test. Anal., 1 Jul 2018, 10 (7), 1184–1191. 861 kB. https://doi.org/10.1002/dta.2371 #6-MAPB LC,MS
Shevyrin, V; Shafran, Y. Distinguishing of 2-MAPB and 6-MAPB: Solution of the problem. J. Mass Spectrom., 1 Oct 2017, 52 (10), 633–637. 474 kB. https://doi.org/10.1002/jms.3970 #6-MAPB MS
Nawyn, J; Kollar, J; Simmon, S; Nguyen, KT; Martin, M. Characterization of isomers of MAPB. Forensic Drug Rev., 21 Mar 2016, 70. 3.7 MB.
Shimshoni, JA; Winkler, I; Golan, E; Nutt, D. Neurochemical binding profiles of novel indole and benzofuran MDMA analogues. N-S. Arch. Pharmacol., 1 Jan 2017, 390 (1), 15–24. 619 kB. https://doi.org/10.1007/s00210-016-1297-4 #4, 6-MAPB
Brandt, SD; Walters, HM; Partilla, JS; Blough, BE; Kavanagh, PV; Baumann, MH. The psychoactive aminoalkylbenzofuran derivatives, 5-APB and 6-APB, mimic the effects of 3,4-methylenedioxyamphetamine (MDA) on monoamine transmission in male rats. Psychopharmacology, 1 Sep 2020, 237 (12), 3703-3714. 1.3 MB. https://doi.org/10.1007/s00213-020-05648-z #6-MAPB