- •#3 Aleph; dot; para-dot; 2,5-dimethoxy-4-methylthioamphetamine
- •#4 Aleph-2; 2,5-dimethoxy-4-ethylthioamphetamine
- •#5 Aleph-4; 2,5-dimethoxy-4-(I)-propylthioamphetamine
- •#6 Aleph-6 2,5-dimethoxy-4-phenylthioamphetamine
- •#7 Aleph-7; 2,5-dimethoxy-4-(n)-propylthioamphetamine
- •#8 Ariadne; 4c-dom; bl-3912; dimoxamine; 1-(2,5-dimethoxy-4-methylphenyl)-2-aminobutane; 2,5-dimethoxy-a-ethyl-4-methylphenethylamine
- •#9 Asb; asymbescaline; 3,4-diethoxy-5-methoxyphenethylamine
- •#10 B; buscaline; 4-(n)-butoxy-3,5-dimethoxyphenethylamine
- •#11 Beatrice; n-methyl-dom; 2,5-dimethoxy-4,n-dimethylamphetamine
- •#13 Bob; beta-methoxy-2c-b; 4-bromo-2,5-beta-trimethoxyphenethylamine
- •#14 Bod; beta-methoxy-2c-d; 4-methyl-2,5,beta-trimethoxyphenethylamine
- •#15 Boh; beta-methoxy-3,4-methylenedioxyphenethylamine
- •#16 Bohd; 2,5-dimethoxy-beta-hydroxy-4-methylphenethylamine
- •#17 Bom; beta-methoxymescaline; 3,4,5,beta-tetramethoxyphenethylamine
- •#37 Cpm; cyclopropylmescaline;
- •#42 Gamma-2c-t-4; 2,6-dimethoxy-4-(I)-propylthiophenethylamine)
- •#51 Beta-d; 3,4,5-trimethoxy-beta,beta-dideuterophenethylamine
- •#52 Desoxy; 3,5-dimethoxy-4-methylphenethylamine
- •#56 Dmcpa; 2-(2,5-dimethoxy-4-methylphenyl)cyclopropylamine
- •#58 Dmmda; 2,5-dimethoxy-3,4-methylenedioxyamphetamine
- •#59 Dmmda-2; 2,3-dimethoxy-4,5-methylenedioxyamphetamine
- •#60 Dmpea; 3,4-dimethoxyphenethylamine
- •#61 Doam; 2,5-dimethoxy-4-(n)-amylamphetamine
- •#63 Dobu; 2,5-dimethoxy-4-(n)-butylamphetamine
- •#65 Doef; 2,5-dimethoxy-4-(2-fluoroethyl)-
- •#66 Doet; hecate; 2,5-dimethoxy-4-ethylamphetamine
- •#68 Dom; stp; 2,5-dimethoxy-4-methylamphetamine
- •#69 Gamma-dom; z-7; 2,6-dimethoxy-4-methylamphetamine
- •#71 Dopr; 2,5-dimethoxy-4-(n)-propylamphetamine
- •#72 E; escaline; 3,5-dimethoxy-4-ethoxyphenethylamine
- •#73 Eee; 2,4,5-triethoxyamphetamine
- •#77 Ethyl-j; 2-ethylamino-1-(3,4-methylenedioxyphenyl)butane; n-ethyl-1-(1,3-benzodioxol-5-yl)-2-butanamine
- •#81 Flea; n-hydroxy-n-methyl-3,4-methylenedioxyamphetamine
- •#85 Ganesha; g; 2,5-dimethoxy-3,4-dimethylamphetamine
- •#90 Idnna; 2,5-dimethoxy-n,n-dimethyl-4-iodoamphetamine
- •#91 Im; isomescaline; 2,3,4-trimethoxyphenethylamine
- •#92 Ip; isoproscaline; 3,5-dimethoxy-4-(I)-propoxyphenethylamine
- •#93 Iris; 5-ethoxy-2-methoxy-4-methylamphetamine
- •#94 J; bdb; 2-amino-1-(3,4-methylenedioxyphenyl)butane;
- •#95 Lophophine; 3-methoxy-4,5-methylenedioxyphenethylamine
- •#96 M; mescaline; 3,4,5-trimethoxyphenethylamine
- •#98 Madam-6; 2,n-dimethyl-4,5-methylenedioxyamphetamine
- •#99 Mal; methallylescaline;
- •#100 Mda; 3,4-methylenedioxyamphetamine
- •#101 Mdal; n-allyl-mda; 3,4-methylenedioxy-n- allylamphetamine
- •#102 Mdbu; n-butyl-mda; 3,4-methylenedioxy-n-butylamphetamine
- •#103 Mdbz; n-benzyl-mda; 3,4-methylenedioxy-n-benzylamphetamine
- •#104 Mdcpm; cyclopropylmethyl-mda;
- •#105 Mddm; n,n-dimethyl-mda;
- •#106 Mde; mdea; eve; n-ethyl-mda;
- •#107 Mdhoet; hydroxyethyl-mda;
- •#109 Mdma; mdm; adam; ecstasy; 3,4-methylenedioxy-n-methylamphetamine
- •#110 Mdmc; edma; 3,4-ethylenedioxy-n-methylamphetamine
- •#111 Mdmeo; n-methoxy-mda; 3,4-methylenedioxy-n-methyoxyamphetamine
- •#112 Mdmeoet; n-methoxyethyl-mda;
- •#114 Mdoh; n-hydroxy-mda; 3,4-methylenedioxy-n-hydroxyamphetamine
- •I would put my money on the likelihood of mda going to mdoh if it
- •#115 Mdpea; 3,4-methylenedioxyphenethylamine; homopiperonylamine
- •#116 Mdph; a,a-dimethyl-3,4-methylenedioxy-
- •In symbolic form this is:
- •#117 Mdpl; n-propargyl-mda; n-propynyl-mda;
- •#118 Mdpr; n-propyl-mda; 3,4-methylenedioxy-n-propylamphetamine
- •#119 Me; metaescaline; 3,4-dimethoxy-5-ethoxyphenethylamine
- •#120 Meda; 3-methoxy-4,5-ethylenedioxyamphetamine
- •#121 Mee; 4,5-diethoxy-2-methoxyamphetamine
- •#122 Mem; 2,5-dimethoxy-4-ethoxyamphetamine
- •#123 Mepea; 3-methoxy-4-ethoxyphenethylamine
- •#124 Meta-dob; 5-bromo-2,4-dimethoxyamphetamine
- •#125 Meta-dot; 2,4-dimethoxy-5-methylthioamphetamine
- •#126 Methyl-dma; dmma; 2,5-dimethoxy-n-methylamphetamine
- •#127 Methyl-dob; 4-bromo-2,5-dimethoxy-n-methylamphetamine
- •#130 Methyl-ma; pmma; doone; 4-mma; 4-methoxy-n-methylamphetamine
- •#131 Methyl-mmda-2; 2-methoxy-n-methyl-4,5-methylenedioxyamphetamine
- •#132 Mmda; 3-methoxy-4,5-methylenedioxyamphetamine
- •#133 Mmda-2; 2-methoxy-4,5-methylenedioxyamphetamine
- •#134 Mmda-3a; 2-methoxy-3,4-methylenedioxyamphetamine
- •#135 Mmda-3b; 4-methoxy-2,3-methylenedioxyamphetamine
- •#136 Mme; 2,4-dimethoxy-5-ethoxyamphetamine
- •#137 Mp; metaproscaline; 3,4-dimethoxy-5-(n)-propoxyphenethylamine
- •#138 Mpm; 2,5-dimethoxy-4-(n)-propoxyamphetamine
- •#139 Ortho-dot; 4,5-dimethoxy-2-methylthioamphetamine
- •#140 P; proscaline; 3,5-dimethoxy-4-(n)-propoxyphenethylamine
- •#141 Pe; phenescaline; 3,5-dimethoxy-4-phenethyloxyphenethylamine
- •#142 Pea; phenethylamine
- •#143 Propynyl; 3,5-dimethoxy-4-(2-propynyloxy)phenethylamine
- •#144 Sb; symbescaline; 3,5-diethoxy-4-methoxyphenethylamine
- •#145 Ta; 2,3,4,5-tetramethoxyamphetamine
- •#146 3-Tasb; 3-thioasymbescaline;
- •#147 4-Tasb; 4-thioasymbescaline;
- •#148 5-Tasb; 5-thioasymbescaline;
- •#149 Tb; 4-thiobuscaline; 3,5-dimethoxy-4-(n)-butylthiophenethylamine
- •#150 3-Te; 3-thioescaline;
- •#151 Te; 4-te; 4-thioescaline; 3,5-dimethoxy-4-ethylthiophenethylamine
- •#153 3-Tim; 3-thiomescaline; 2,4-dimethoxy-3-methylthiophenethylamine
- •#154 4-Tim; 4-thioisomescaline;
- •#155 3-Tm; 3-thiomescaline; 3,4-dimethoxy-5-methylthiophenethylamine
- •#156 Tm; 4-tm; 4-thiomescaline;
- •#157 Tma; 3,4,5-trimethoxyamphetamine
- •#158 Tma-2; 2,4,5-trimethoxyamphetamine
- •#159 Tma-3; 2,3,4-trimethoxyamphetamine
- •#160 Tma-4; 2,3,5-trimethoxyamphetamine
- •#161 Tma-5; 2,3,6-trimethoxyamphetamine
- •#162 Tma-6; 2,4,6-trimethoxyamphetamine
- •#163 3-Tme; 3-thiometaescaline;
- •#164 4-Tme; 4-thiometaescaline;
- •#165 5-Tme; 5-thiometaescaline;
- •#166 2T-mmda-3a; 3,4-methylenedioxy-2-methylthioamphetamine
- •#167 4T-mmda-2; 6-(2-aminopropyl)-5-methoxy-1,3-benzoxathiol;
- •#168 Tmpea; 2,4,5-trimethoxyphenethylamine
- •#169 2-Toet; 4-ethyl-5-methoxy-2-methylthioamphetamine
- •#170 5-Toet; 4-ethyl-2-methoxy-5-methylthioamphetamine
- •#171 2-Tom; 5-methoxy-4-methyl-2-methylthioamphetamine
- •#172 5-Tom; 2-methoxy-4-methyl-5-methylthioamphetamine
- •#173 Tomso; 2-methoxy-4-methyl-5-methylsulfinylamphetamine
- •#174 Tp; thioproscaline; 3,5-dimethoxy-4-(n)-propylthiophenethylamine
- •#175 Tris; trescaline; trisescaline; 3,4,5-triethoxyphenethylamine
- •#176 3-Tsb; 3-thiosymbescaline;
- •#177 4-Tsb; 4-thiosymbescaline;
- •#178 3-T-tris; 3-thiotrescaline; 3-thiotrisescaline;
- •#179 4-T-tris; 4-thiotrescaline; 4-thiotrisescaline;
#141 Pe; phenescaline; 3,5-dimethoxy-4-phenethyloxyphenethylamine
SYNTHESIS: To a solution of 5.8 g homosyringonitrile (see under E for its preparation) in 50 mL of acetone containing 100 mg decyltriethylammonium iodide, there was added 14.8 g beta-phenethylbromide and 6.9 g of finely powdered anhydrous K2CO3. The greenish mixture was refluxed for 3 days, with two additional 4 g batches of anhydrous K2CO3 being added at 24 h intervals. After addition to aqueous base, the product was extracted with CH2Cl2, the pooled extracts were washed with dilute base (the organic phase remained a deep purple color) and then finally with dilute HCl (the organic phase became a pale yellow). The solvent was removed giving 15.6 g crude 3,5-dimethoxy-4-phenethyloxyphenylacetonitrile which distilled at 165-185 deg C at 0.3 mm/Hg to yield 3,5-dimethoxy-4-phenethyloxyphenylacetonitrile as a reddish viscous oil weighing 8.1 g. Anal. (C18H19NO3) C,H.
A solution of 7.9 g of distilled 3,5-dimethoxy-4-phenethyloxyphenylacetonitrile in 15 mL dry THF was added to a 0 deg C solution of AH prepared from a vigorously stirred solution of 4.6 g LAH in 160 ml THF which had been treated, at 0 deg C with 3.6 mL 100% H2SO4 under an atmosphere of He. The gelatinaceous reaction mixture was brought to a brief reflux on the steam bath, then cooled again. It was treated with 5 mL IPA which destroyed the unreacted hydride, followed by sufficient 15% NaOH to give loose, white filterable solids. These were removed by filtration and washed with THF. The filtrate and the washes were combined and, after removal of the solvent under vacuum, there remained 7.8 g of the product as a crude base which crystallized spontaneously. Distillation of this product at 170-180 deg C at 0.35 mm/Hg gave 5.1 g white solids, with a mp of 85-86 deg C from hexane. This base was dissolved in 20 mL warm IPA and treated with 1.6 mL concentrated HCl. To the resulting clear solution, there was added 75 mL anhydrous Et2O which gave, after a few moments of stirring, a spontaneous crystallization of 3,5-di-methoxy-4-phenethyloxyphenethylamine hydrochloride (PE) as beautiful white crystals. The weight was 5.4 g after air drying, and the mp was 151-152 deg C. Anal. (C18H24ClNO3) C,H.
DOSAGE: greater than 150 mg.
DURATION: unknown.
QUALITATIVE COMMENTS: (with 150 mg) At most, there was a bare threshold over the course of the afternoon. A vague unreal feeling, as if I had not had quite enough sleep last night. By late afternoon, even this had disappeared and I was left with an uncertainty that anything at all had occurred.
EXTENSIONS AND COMMENTARY: There is not much there, so there is not much to make commentary on. This response is called a "threshhold" effect, and cannot be used to predict with any confidence just what level (if any) would produce psychological effects.
A similar chain on the 4-position, but with one less carbon atom, deserves special comment. Rather than a phenethyloxy group, this would be benzyloxy group (which in this day and age of Chemical Abstracts purity should probably be called a phenylmethoxy group). If one were to follow the naming philosophy of Rproscaline equals P and buscaline equals BS convention, one would call it 4-benzescaline, and give it the code name BZ. The nomenclature purist would probably call the compound PM (for phenylmescaline or, more likely phenylmethoxydimethoxyphenethylamine), since the term BZ is awkward and misleading. It is a code name that has been given to a potent CNS agent known as quinuclidin-3-yl benzilate, which is a chemical and biological warfare (CBW) incapacitating agent currently being stored by the military to the extent of 20,000 pounds. And, BZ has also recently become the jargon name given to benzodiazepine receptors. They have been called the BZ-receptors.
However, let's be awkward and misleading, and call this benzyloxy-base BZ. For one thing, the three-carbon analogue 3C-BZ has already been described in its own recipe using this code. And the 4-fluoroanalogue of it, 3C-FBZ, is also mentioned there. And BZ has already been described synthetically, having been made in exactly the procedure given for escaline, except that the reduction of the nitrile was not done by catalytic hydrogenation but rather by sodium borohydride in the presence of cobalt chloride. It has been shown to be a effective serotonin agonist, and may warrant human experimentation. The serotonin activity suggests that it might be active at the same levels found for proscaline.
All of this says very little about PE. But then, there is very little to say about PE except that it may be active at very high levels, and I am not sure just how to get there safely.