<HashMap><database>biostudies-literature</database><scores/><additional><submitter>Glatfelter GC</submitter><funding>CaaMTech</funding><funding>National Institute on Drug Abuse</funding><pagination>24888-24894</pagination><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-EPMC9301952</full_dataset_link><repository>biostudies-literature</repository><omics_type>Unknown</omics_type><volume>7(28)</volume><pubmed_abstract>Aeruginascin (4-phosphoryloxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-trimethyltryptammonium) is an analogue of psilocybin (4-phosphoryloxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyltryptamine) that has been identified in several species of psilocybin-containing mushrooms. Our team previously reported the synthesis, structural characterization, and biological activity of the putative metabolite of aeruginascin (4-hydroxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-trimethyltryptammonium; 4-HO-TMT) and its potential prodrug (4-acetoxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-trimethyltryptammonium; 4-AcO-TMT). Here, we report the synthesis, structural characterization, and pharmacological activity of several quaternary tryptammonium analogues of 4-HO-TMT and 4-AcO-TMT, namely, 4-hydroxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-ethyltryptammonium (4-HO-DMET), 4-hydroxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-&lt;i>n&lt;/i>-propyltryptammonium (4-HO-DMPT), and 4-hydroxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-isopropyltryptammonium (4-HO-DMiPT), as well as their hypothesized prodrugs 4-acetoxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-ethyltryptammonium (4-AcO-DMET), 4-acetoxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-&lt;i>n&lt;/i>-propyltryptammonium (4-AcO-DMPT), and 4-acetoxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-isopropyltryptammonium (4-AcO-DMiPT). Compounds were synthesized using established methods, and structures were characterized by single-crystal X-ray diffraction. Test compounds were screened for in vitro pharmacological activity at a variety of receptors and transporters to determine potential targets of action. None of the compounds exhibited measurable affinity for the serotonin 2A receptor (5-HT&lt;sub>2A&lt;/sub>), but several analogues had low micromolar affinity (&lt;i>K&lt;/i> &lt;sub>i&lt;/sub>) for the serotonin 1D receptor (5-HT&lt;sub>1D&lt;/sub>) and serotonin 2B receptor (5-HT&lt;sub>2B&lt;/sub>), where they appeared to be weak partial agonists with low micromolar potencies. Importantly, 4-HO-DMET, 4-HO-DMPT, and 4-HO-DMiPT displayed sub-micromolar affinity for the serotonin transporter (SERT; 370-890 nM). The same 4-hydroxy analogues had low to sub-micromolar potencies (IC&lt;sub>50&lt;/sub>) for inhibition of 5-HT uptake at SERT in transfected cells (3.3-12.3 μM) and rat brain tissue (0.31-3.5 μM). Overall, our results show that quaternary tryptammonium analogues do not target 5-HT&lt;sub>2A&lt;/sub> sites, suggesting the compounds lack psychedelic-like subjective effects. However, certain 4-hydroxy quaternary tryptammonium analogues may provide novel templates for exploring structure-activity relationships for selective actions at SERT.</pubmed_abstract><journal>ACS omega</journal><pubmed_title>Synthesis, Structural Characterization, and Pharmacological Activity of Novel Quaternary Salts of 4-Substituted Tryptamines.</pubmed_title><pmcid>PMC9301952</pmcid><funding_grant_id>DA-000522-13</funding_grant_id><pubmed_authors>Manke DR</pubmed_authors><pubmed_authors>Chadeayne AR</pubmed_authors><pubmed_authors>Baumann MH</pubmed_authors><pubmed_authors>Walther D</pubmed_authors><pubmed_authors>Glatfelter GC</pubmed_authors><pubmed_authors>Pham DNK</pubmed_authors><pubmed_authors>Golen JA</pubmed_authors></additional><is_claimable>false</is_claimable><name>Synthesis, Structural Characterization, and Pharmacological Activity of Novel Quaternary Salts of 4-Substituted Tryptamines.</name><description>Aeruginascin (4-phosphoryloxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-trimethyltryptammonium) is an analogue of psilocybin (4-phosphoryloxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyltryptamine) that has been identified in several species of psilocybin-containing mushrooms. Our team previously reported the synthesis, structural characterization, and biological activity of the putative metabolite of aeruginascin (4-hydroxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-trimethyltryptammonium; 4-HO-TMT) and its potential prodrug (4-acetoxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-trimethyltryptammonium; 4-AcO-TMT). Here, we report the synthesis, structural characterization, and pharmacological activity of several quaternary tryptammonium analogues of 4-HO-TMT and 4-AcO-TMT, namely, 4-hydroxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-ethyltryptammonium (4-HO-DMET), 4-hydroxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-&lt;i>n&lt;/i>-propyltryptammonium (4-HO-DMPT), and 4-hydroxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-isopropyltryptammonium (4-HO-DMiPT), as well as their hypothesized prodrugs 4-acetoxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-ethyltryptammonium (4-AcO-DMET), 4-acetoxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-&lt;i>n&lt;/i>-propyltryptammonium (4-AcO-DMPT), and 4-acetoxy-&lt;i>N&lt;/i>,&lt;i>N&lt;/i>-dimethyl-&lt;i>N&lt;/i>-isopropyltryptammonium (4-AcO-DMiPT). Compounds were synthesized using established methods, and structures were characterized by single-crystal X-ray diffraction. Test compounds were screened for in vitro pharmacological activity at a variety of receptors and transporters to determine potential targets of action. None of the compounds exhibited measurable affinity for the serotonin 2A receptor (5-HT&lt;sub>2A&lt;/sub>), but several analogues had low micromolar affinity (&lt;i>K&lt;/i> &lt;sub>i&lt;/sub>) for the serotonin 1D receptor (5-HT&lt;sub>1D&lt;/sub>) and serotonin 2B receptor (5-HT&lt;sub>2B&lt;/sub>), where they appeared to be weak partial agonists with low micromolar potencies. Importantly, 4-HO-DMET, 4-HO-DMPT, and 4-HO-DMiPT displayed sub-micromolar affinity for the serotonin transporter (SERT; 370-890 nM). The same 4-hydroxy analogues had low to sub-micromolar potencies (IC&lt;sub>50&lt;/sub>) for inhibition of 5-HT uptake at SERT in transfected cells (3.3-12.3 μM) and rat brain tissue (0.31-3.5 μM). Overall, our results show that quaternary tryptammonium analogues do not target 5-HT&lt;sub>2A&lt;/sub> sites, suggesting the compounds lack psychedelic-like subjective effects. However, certain 4-hydroxy quaternary tryptammonium analogues may provide novel templates for exploring structure-activity relationships for selective actions at SERT.</description><dates><release>2022-01-01T00:00:00Z</release><publication>2022 Jul</publication><modification>2025-04-04T10:47:39.895Z</modification><creation>2025-04-04T10:47:39.895Z</creation></dates><accession>S-EPMC9301952</accession><cross_references><pubmed>35874244</pubmed><doi>10.1021/acsomega.2c03476</doi></cross_references></HashMap>