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psx:substance/4-pro-dmt/claim/32cd9efc-ee1a-4eda-b054-748e65a9b248

claim2026-09-05recordsupported

derived from · upstream

feeds · downstream

Closure of psx:substance/4-pro-dmt/claim/32cd9efc-ee1a-4eda-b054-748e65a9b248: 74 upstream, 111 downstream.

psx:substance/4-pro-dmt/claim/32cd9efc-ee1a-4eda-b054-748e65a9b248
├─ used  src/doi:10.3389/fphar.2024.1391689  In vitro and in vivo metabolism of psilocybin's active metabolite psilocin
  ├─ informed_by  claim/a5319a11-7abe-49ce-826c-efbd23a17d9f  Claim in pharmacology — inconclusive  working
  ├─ informed_by  claim/e953467a-065b-4ccd-a11a-ec538d97d63a  Claim in pharmacology — supported
  ├─ informed_by  claim/538b550b-d210-4e99-8eed-5444bfc285bb  Claim in pharmacology — supported
  ├─ informed_by  claim/f533012c-1e1a-4268-a8f4-7e835817cffc  Claim in pharmacology — supported
  ├─ informed_by  claim/f4712728-0c7c-4bf8-964f-b74157b3a59d  Claim in pharmacology — supported
  ├─ informed_by  claim/31d29387-4dfb-40c6-a745-85cd0f91cd98  Claim in pharmacology — inconclusive  working
  ├─ informed_by  claim/3125c978-aa60-4cc6-990e-7191a9564f33  Claim in pharmacology — inconclusive  working
  ├─ informed_by  claim/7c65c982-69df-4bea-b3c4-f3440ea4d394  Claim in pharmacology — inconclusive  working
  ├─ informed_by  claim/9f5ac956-4442-4f1b-94bb-e9c0800d6cda  Claim in pharmacology — supported
  ├─ informed_by  claim/51dc0eb6-dfd7-43a6-aa7d-c22400f2bbec  Claim in pharmacology — inconclusive  working
  ├─ informed_by  claim/b0df49e5-b451-45ab-b777-377d90e0d1f4  Claim in pharmacology — inconclusive  working
  ├─ informed_by  claim/67175041-c2d4-46ea-9619-c51b5cef510c  Claim in pharmacology — supported
  ├─ informed_by  claim/c7d91c86-45a6-49d9-8ff9-a93183d83e4e  Claim in pharmacology — supported
  ├─ informed_by  claim/a824c108-84dc-4260-ba33-c99119456c2f  Claim in pharmacology — inconclusive  working
  ├─ informed_by  claim/fc32a2d1-f9be-4d67-b3d9-ffc003c28044  Claim in pharmacology — supported
  ├─ informed_by  claim/0ac65a70-e026-4162-ac02-33662576ff1f  Claim in pharmacology — supported
  ├─ informed_by  claim/56d4e6bf-406f-4d40-b57d-26a4e1a636d8  Claim in pharmacology — inconclusive  working
    ├─ used  search/9d29dcfe-c365-4e60-a4e9-07d212bc5e20  Searched PubChem for "CID 155907598"
    ├─ used  search/c50361c4-65a1-4e2f-af8c-4bb5c7b0d25e  Searched PubMed for "4-PrO-DMT O-propionylpsilocin"
    ├─ used  search/99d3ab27-aa1b-42ad-87cd-8c5cefaef065  Searched PubMed for "psilocin ester analogs pharmacology serotonin receptor"
    ├─ used  search/88474458-8af5-45d6-a38c-b12c2b0105c0  Searched ClinicalTrials.gov for "4-PrO-DMT psilocin analog"
    ├─ used  search/59c3440d-eabe-49f3-aec9-f846412af6c7  Searched PubMed for "psilocin 4-hydroxy-DMT serotonin 5-HT2A receptor binding pharmacology"
    ├─ used  search/ece578d6-bfaf-47e0-baf8-f03ee0ba335b  Searched PubChem for "CID 155907598 - chemical identity verification"
    ├─ used  search/573f7f46-6a4c-4a33-9631-34e3fc986091  Searched Wikipedia for "4-PrO-DMT"
    ├─ used  search/e9205d2a-4a22-4580-82d7-c92f89a843aa  Searched PsychonautWiki for "4-PrO-DMT dosage effects"
    ├─ used  search/ab4e7d42-863d-439b-ae99-7dfb60d74656  Searched Web search for "4-PrO-DMT legal status UK Misuse of Drugs Act psilocin ester"
    ├─ used  search/18e90476-fdb4-408b-bb0b-07c94521a300  Searched PubMed for "Raithatha psilocin prodrug novel psilocybin pharmacological properties 2023"
    ├─ used  search/c3e2ec13-b574-47eb-b901-48ffd0c305e7  Searched Crossref DOI verification for "DOI verification for key papers"
    ├─ used  search/8bc30985-a202-4b06-bbe5-a11880ab69d4  Searched Web search/Wikipedia for "4-PrO-DMT legal status UK Germany Australia Canada"
    ├─ used  search/2612bf92-279d-4148-b77f-becc1246b683  Searched Cayman Chemical for "4-propanoyloxy-DMT product 29951 physical properties"
    ├─ used  search/e9cf16b7-8b79-419e-94e9-c7620220fb4b  Searched PubMed for "psilocin LD50 acute toxicity psilocybin mushrooms mice"
    ├─ used  search/bb50384b-892c-48da-8af0-259f83b4f294  Searched ClinicalTrials.gov for "psilocin prodrug 4-propionyloxy tryptamine psychedelic"
    ├─ used  search/3eb2f85e-1e66-4551-b295-8facbf2bd95d  Searched OpenAlex for "psilocybin lithium seizure psychedelic contraindication interaction"
    ├─ used  search/aaebdd06-05b3-4d31-8b3a-96349cf2c0ae  Searched PubMed for "psilocin CYP2D6 CYP3A4 MAO metabolism drug interaction"
    ├─ used  search/85229063-e4c5-47a3-b443-7d1d4a735796  Searched PubMed for "psilocybin pharmacokinetics oral bioavailability systematic review"
    ├─ used  search/8119d540-cbb9-42ec-ba33-c11a7e8a5dab  Searched PMC open access for "Glatfelter 2023 4-PrO-DMT receptor binding Ki values ED50 HTR mice"
    ├─ used  search/3fbb6d68-5695-4732-8b4b-af17a960c34c  Searched PMC/PubMed for "psilocin Ki 5-HT2A 5-HT1A 5-HT2C receptor comparison"
    ├─ planned_by  plan/gen-research-extraction@3042d1d5e72e09c13e536e75edd7972e3f9232ae
    ├─ used  src/doi:10.1021/acsptsci.2c00222  Receptor Binding Profiles for Tryptamine Psychedelics and Effects of 4-Propionoxy-N,N-dimethyltryptamine in Mice
    ├─ used  src/doi:10.1124/jpet.122.001454
    ├─ used  src/doi:10.1038/s41386-019-0324-9  Psychedelic effects of psilocybin correlate with serotonin 2A receptor occupancy and plasma psilocin levels
    ├─ used  src/doi:10.1016/j.neuropharm.2018.05.012  The abuse potential of medical psilocybin according to the 8 factors of the Controlled Substances Act
    ├─ used  src/doi:10.1016/j.euroneuro.2016.05.001
    ├─ used  src/doi:10.1007/s00213-021-05876-x  Serotonin toxicity of serotonergic psychedelics
    ├─ used  src/doi:10.1007/s00204-020-02693-7
    ├─ used  src/doi:10.1093/jat/bkaf045  Development and validation of an analytical method for the determination of select 4-position ring-substituted tryptamines in plasma by LC-MS/MS
    ├─ used  src/doi:10.1021/acsomega.2c03476  Synthesis, Structural Characterization, and Pharmacological Activity of Novel Quaternary Salts of 4-Substituted Tryptamines
    ├─ used  src/doi:10.1126/science.abl8615  Structure-based discovery of nonhallucinogenic psychedelic analogs
    ├─ used  src/url:045aaa477a9fe294  4-PrO-DMT
    ├─ used  src/url:4839f9375752487e  4-PrO-DMT
    ├─ used  src/doi:10.1038/s41598-024-82216-x  Neuropsychological profiles of patients suffering from hallucinogen persisting perception disorder (HPPD): A comparative analysis with psychedelic-using and non-using controls
    ├─ used  src/doi:10.2174/1570159X13666141210222409
    ├─ used  src/doi:10.1021/acs.jmedchem.3c01225  Novel Psilocin Prodrugs with Altered Pharmacological Properties as Candidate Therapies for Treatment-Resistant Anxiety Disorders
    ├─ used  src/doi:10.1016/b978-0-12-818788-3.00014-0  Tryptamines (Chapter 18 in Novel Psychoactive Substances, 2nd edition)
    ├─ used  src/doi:10.3390/pharmaceutics17040411  Pharmacokinetics of Psilocybin: A Systematic Review
    ├─ used  src/doi:10.1055/a-1524-2794  Classic Psychedelic Coadministration with Lithium, but Not Lamotrigine, is Associated with Seizures
    ├─ used  src/doi:10.3389/fpsyt.2022.1040217  Therapeutic use of psilocybin: Practical considerations for dosing and administration
    ├─ used  src/url:8132940bdc62c43d  4-propanoyloxy DMT product page
    ├─ used  src/doi:10.1080/02791072.2024.2368617  Hypertensive Emergency Secondary to Combining Psilocybin Mushrooms, Extended Release Dextroamphetamine-Amphetamine, and Tranylcypromine
    ├─ used  src/doi:10.1371/journal.pone.0009019
    ├─ used  src/doi:10.1007/s43440-023-00539-4  Cardiovascular safety of psychedelic medicine: current status and future directions
    ├─ used  src/doi:10.3390/toxins7041018  Research on acute toxicity and the behavioral effects of methanolic extract from psilocybin mushrooms and psilocin in mice
    ├─ used  src/doi:10.1038/s41467-023-44016-1  Identification of 5-HT2A receptor signaling pathways associated with psychedelic potential
    ├─ used  src/doi:10.1124/pharmrev.120.000056  Psychedelics in Psychiatry: Neuroplastic, Immunomodulatory, and Neurotransmitter Mechanisms
    ├─ used  src/doi:10.1111/bph.16466  Pharmacological and behavioural effects of tryptamines present in psilocybin-containing mushrooms
    ├─ used  src/doi:10.1021/acschemneuro.3c00610  Psychedelic-like Activity of Norpsilocin Analogues
    ├─ used  src/doi:10.1016/j.psc.2012.04.002  Serotonergic hallucinogens and emerging targets for addiction pharmacotherapies
    ├─ used  src/url:641e6581d005d0a6
    ├─ used  src/doi:10.1016/j.pharmr.2025.100059  5-HT2A receptors: Pharmacology and functional selectivity
    ├─ used  src/doi:10.1016/j.biopha.2022.113612  Serotonin 5-HT2A, 5-HT2C and 5-HT1A receptor involvement in the acute effects of psilocybin in mice
    ├─ used  src/doi:10.1007/7854_2017_475  Chemistry and Structure-Activity Relationships of Psychedelics.
      ├─ generated_by  pub/2505f1b3-1381-4b0e-86a9-0737d2fcf858  Publication — publish
      └─ attributed_to  human/reviewer:Dev Bypass
├─ informed_by  section/pharmacology.full@2
  ├─ used  gen/6328f482-93e0-48bb-9d08-f32f951e70a2  Generation — pipeline-v5
  ├─ used  claim/4e5b4252-0805-4cf0-939d-9f7c85b91afd  Claim in pharmacology — supported
  ├─ used  claim/c4cf0785-9a6d-499a-ab6f-f3a831ea02de  Claim in pharmacology — supported
  ├─ used  claim/dfbc2f74-7257-43b7-9df4-1002bc1ca5f5  Claim in safety — inconclusive  working
  ├─ used  claim/b2d50524-79f8-4247-b969-c70c8e7be61d  Claim in safety — supported
  ├─ used  claim/6a0dc6f2-e959-4f9e-81e6-e5ddac9bbf43  Claim in pharmacokinetic-detail — supported
    ├─ generated_by  section/summary.research@2
    ├─ generated_by  section/history.research@2
    ├─ generated_by  section/chemistry.research@2
    ├─ generated_by  section/pharmacology.research@2
    ├─ generated_by  section/receptor-pharmacology.research@2
    ├─ generated_by  section/pharmacokinetic-detail.research@2
    ├─ generated_by  section/clinical-evidence.research@2
    ├─ generated_by  section/comparative-pharmacology.research@2
    ├─ generated_by  section/neuroscience.research@2
    ├─ generated_by  section/safety.research@2
    ├─ generated_by  section/legal-status.research@2
    ├─ generated_by  section/effects-overview.research@2
    ├─ generated_by  flag/6328f482-93e0-48bb-9d08-f32f951e70a2/0  safety_data_unverified  working
    ├─ generated_by  flag/6328f482-93e0-48bb-9d08-f32f951e70a2/1  sparse_evidence  working
    ├─ generated_by  flag/6328f482-93e0-48bb-9d08-f32f951e70a2/2  structural_inference  working
    ├─ generated_by  flag/6328f482-93e0-48bb-9d08-f32f951e70a2/3  caveat recorded as free text  working
    ├─ generated_by  flag/6328f482-93e0-48bb-9d08-f32f951e70a2/4  caveat recorded as free text  working
    ├─ generated_by  section/summary.full@2
    ├─ generated_by  section/history.full@2
    ├─ generated_by  section/chemistry.full@2
    ├─ generated_by  section/neuroscience.full@2
    ├─ generated_by  section/effects-overview.full@2
    ├─ generated_by  section/safety.full@2
    ├─ generated_by  section/harm-reduction.full@2
    ├─ generated_by  section/legal-status.full@2
    ├─ generated_by  section/summary.essential@2
    ├─ generated_by  section/history.essential@2
    ├─ generated_by  section/chemistry.essential@2
    ├─ generated_by  section/pharmacology.essential@2
    ├─ generated_by  section/neuroscience.essential@2
    ├─ generated_by  section/effects-overview.essential@2
    ├─ generated_by  section/safety.essential@2
    ├─ generated_by  section/harm-reduction.essential@2
    ├─ generated_by  section/legal-status.essential@2
    ├─ derived_from  version/2  Revision 2
    ├─ informed_by  section/pharmacokinetic-detail.full@2
      ├─ used  claim/8902f689-0b5e-4f62-8a31-39efb76bdd96  Claim in summary — inconclusive  working
      ├─ used  claim/f6ff166a-8b2c-42d4-bfb4-6e77c7ebb6b2  Claim in summary — inconclusive  working
      ├─ used  claim/b581dca9-290c-47e6-a653-fae308d41342  Claim in summary — inconclusive  working
      ├─ used  claim/919ed23e-afa5-4416-ae94-c1c163dc1a6f  Claim in comparative-pharmacology — inconclusive  working
      ├─ used  claim/fdced807-8d53-40f3-a51f-fc60f37ae065  Claim in safety — supported
      ├─ used  claim/905acb17-1c7f-43de-8260-5325116ca562  Claim in safety — inconclusive  working
      ├─ used  claim/bcde48a3-6518-4272-ba9f-00147fb5fd65  Claim in safety — inconclusive  working
      ├─ used  claim/d4124fbe-5e17-4b19-a949-f08fcd961ead  Claim in history — not_supported  working
      ├─ used  claim/f6f67b1c-b8a0-4557-beaf-4d7ced37dedb  Claim in history — inconclusive  working
      ├─ used  claim/b00c9635-7397-4a61-8b1e-bfbeb23e0c34  Claim in history — inconclusive  working
      ├─ used  claim/c3fefe34-c52a-45ad-9b30-45688ce15f32  Claim in chemistry — inconclusive  working
      ├─ used  claim/1e89c5f5-1d4a-4da8-9d08-330bb1c67888  Claim in receptor-pharmacology — supported
      ├─ used  claim/201d5956-3712-46ac-a8bc-9c76f7094ecc  Claim in receptor-pharmacology — inconclusive  working
      ├─ used  claim/61f2192b-7c5c-4e64-a326-3f0c96296dab  Claim in pharmacokinetic-detail — inconclusive  working
      ├─ used  claim/fcfab1cd-d7e5-46c8-b33a-e56c59c1ec9b  Claim in clinical-evidence — supported
      ├─ used  claim/cfe54b9c-5eb0-49f7-ad30-f9539168f29e  Claim in comparative-pharmacology — supported
      ├─ used  claim/79f65de4-6e2f-4eb9-a5a1-ab84c41ce147  Claim in neuroscience — supported
      ├─ used  claim/e008b979-4417-4696-98f8-b2b5d763625d  Claim in neuroscience — inconclusive  working
      ├─ used  claim/f9b2b57b-d4b7-4f72-b512-1d39e19d0cc6  Claim in safety — supported
      ├─ used  claim/41f5fb67-9f30-4381-ad42-e329578d84de  Claim in safety — supported
      ├─ used  claim/6de6fc38-2f1e-40c8-a5bc-d732dbe8c6f9  Claim in safety — supported
      ├─ used  claim/224f1206-c21c-4226-a364-4bdf7141bcf6  Claim in safety — supported
      ├─ used  claim/7d231295-dd9f-453e-b316-1527017a9e8d  Claim in receptor-pharmacology — inconclusive  working
      ├─ used  claim/ae22233d-c12a-48e8-89b4-6c0a1216615e  Claim in safety — supported
      ├─ used  claim/9127bb7a-b2d9-4746-ab7e-830f629c6a97  Claim in legal-status — supported
      ├─ used  claim/14ec6fcc-7caa-4d82-96e2-123690937608  Claim in pharmacokinetic-detail — supported
      ├─ used  claim/53596bcd-2221-43ba-bf8d-528621ce5511  Claim in pharmacokinetic-detail — supported
      ├─ used  claim/4c55628c-a031-42f5-9c73-4f1036394e3e  Claim in safety — supported
      ├─ used  claim/ae093055-e74f-42ab-9f03-cbcb2338cf62  Claim in safety — supported
      ├─ used  claim/061a1c57-59ed-494c-b053-87404a81f2a3  Claim in safety — supported
      ├─ used  claim/a67a80b1-78b6-4d2b-831f-82c6f97ac336  Claim in safety — inconclusive  working
      ├─ used  claim/e83c2a2d-bc1c-42e4-a2f8-e3ad0b137ac8  Claim in safety — supported
      ├─ used  claim/fc3cdc6c-2a45-43f4-a973-a09cf5d15c62  Claim in safety — supported
      ├─ used  claim/77e189bb-b4df-4404-a4ef-6c07b4001462  Claim in safety — supported
      ├─ used  claim/ba6bf248-aaa6-4b98-9153-9a9b3812ad33  Claim in safety — supported
      ├─ used  claim/a8ff16fb-7d56-4d8d-80b6-1df9a843d0ab  Claim in safety — inconclusive  working
      ├─ used  claim/d7927703-b1d8-475c-8756-0a3850fd397b  Claim in safety — supported
      ├─ used  claim/b1f33f0d-e358-4e96-ba46-1cdd4169d9a0  Claim in safety — supported
      ├─ used  claim/f859dd02-40ce-460d-9908-934ed013532e  Claim in safety — supported
      ├─ used  claim/f43a6697-8bd7-4929-805c-d5e45e26bba2  Claim in safety — supported
      ├─ used  claim/b2fae666-70e1-43a9-98d6-d4f180c80e0d  Claim in safety — supported
      ├─ used  claim/c2c63f7d-d111-4990-895d-552eda89a816  Claim in pharmacokinetic-detail — inconclusive  working
      ├─ used  claim/6d63c0f9-edc5-444d-b28d-b2379e61f31c  Claim in clinical-evidence — inconclusive  working
      ├─ used  claim/19ff7505-c1f3-484c-8b58-9e3e2bdc2244  Claim in safety — supported
      ├─ used  claim/ea082282-17af-4bcd-a672-1a4ba86f7588  Claim in safety — supported
      ├─ used  claim/56e008c0-47b0-4f1c-a552-914e306031eb  Claim in safety — supported
      ├─ used  claim/3ddd54e1-90d4-48b2-8606-b17bf59e7e52  Claim in safety — supported
      ├─ used  claim/b940ff91-0967-4325-99ca-bf1747da42d3  Claim in safety — supported
      ├─ used  claim/867829a8-c068-4221-9fee-3c445a76bfcf  Claim in receptor-pharmacology — supported
      ├─ used  claim/f7bb2711-0a3c-4e9f-8ef8-8df0a48c7538  Claim in summary — supported
      ├─ used  claim/1785b8a1-1cb0-4b2e-8cb2-853e7594862a  Claim in safety — supported
      ├─ used  claim/b7632c44-0c4a-4e2c-96b0-92213fadba64  Claim in safety — partially_supported
      ├─ used  claim/c313daf0-2f93-4283-8551-5dd59f41dc06  Claim in neuroscience — supported
      ├─ used  claim/d29cebde-9676-4a8f-af0a-2f7a0442012e  Claim in safety — supported
      ├─ used  claim/ad013b65-3d9a-4263-be5f-b85a69fbff15  Claim in neuroscience — supported
      ├─ used  claim/ef3d0f91-0d81-4e08-885a-51cdbec289df  Claim in neuroscience — inconclusive  working
      ├─ used  claim/8c9fdc66-266e-45c9-9328-ea92a439a7f7  Claim in chemistry — inconclusive  working
      ├─ used  claim/c50cd5a0-ed6b-4df5-8a2f-acef94f8afbc  Claim in pharmacokinetic-detail — inconclusive  working
      ├─ used  claim/1949b185-8786-42a8-bddf-785d4236908c  Claim in comparative-pharmacology — inconclusive  working
      ├─ used  claim/40df4ec6-158c-468f-b6b0-7c2bf447c5e8  Claim in effects-overview — inconclusive  working
      ├─ used  claim/ceafdfc8-7116-48dc-b6c5-b8982ae06233  Claim in pharmacokinetic-detail — inconclusive  working
      ├─ used  claim/14c1352b-23f4-43d2-9dff-e4f31257d9f7  Claim in safety — supported
      ├─ used  claim/b91a53d8-8b92-4a7a-81fc-b4d4e174bbcb  Claim in neuroscience — supported
      ├─ used  claim/92f6dcbf-eb56-48e1-a5a8-ed8b22aabc65  Claim in comparative-pharmacology — supported
      ├─ used  claim/7b540d74-8ae8-447d-a7fb-e700b3e4269d  Claim in chemistry — supported
      ├─ derived_from  issue/notice@79b8178c022c  Issued notice
      ├─ derived_from  issue/info_card@da5542754c6a  Issued info_card
      └─ derived_from  issue/emergency@777b5863d801  Issued emergency
… closure truncated at 200 nodes

indented by distance from this node, not by parentage

1Provenance card

the boundary, as counts

Sources

2926 with DOI

6 strong · 19 moderate · 4 weak

Compilations

12026-09-05T01:39:43.441Z

pipeline-v5 · prompt aa4a2f8ca809

Decisions

29last ruled 2026-09-17

1 awaiting a ruling

Issued documents

32026-09-17T22:23:25.104Z

notice · info card · emergency

Searches

203 with no results

queries and counts on the build

Claims checked

8855 supported

55 supported · 33 not

Correspondence

0received

consent field ships in Phase 4

Edges

331

derivations recorded for this entity

Complete over 29 sources, 1 compilation, and 29 decisions.Not here: the private journal (never); 1 proposal awaiting a ruling (listed as pending only).Working material — drafts, discards, unsupported claims — is listed below and readable on the working page.Cite: psychedex.org/substances/4-pro-dmt/archive

2Build

one panel per compilation run

generation run 2026-09-05

142 min completedmodel pipeline-v5plan v5@3042d1d · aa4a2f8ca809run/b52b637d…

Selection

results seen48
selected by the model31
consumed as sources29

Verification

claims checked88
supported54
partially supported1
not supported1
inconclusive32
  • record
  • seen / partial
  • working

The model's own caveats

  • safety_data_unverified
  • sparse_evidence
  • structural_inference

2 further caveats recorded as free text — readable on the working page

Reproduce

inputs
29 source keys (listed under Sources)
plan
v5@3042d1d · aa4a2f8ca809
model
pipeline-v5
streams
none — agent transcripts are persisted from 2026-09 onward
20 searches — query, source, results, what was kept and why
20 searches for this run
#sourcequeryseenkeptrationale
1PubMedpsilocin 4-hydroxy-DMT serotonin 5-HT2A receptor binding pharmacology98Background pharmacology for psilocin relevant to understanding 4-PrO-DMT as a prodrug; 5-HT2A structural biology informs binding mechanism
2ClinicalTrials.gov · absence4-PrO-DMT psilocin analog0No trials found — consistent with emerging/research chemical status
3PubMed · absencepsilocin ester analogs pharmacology serotonin receptor0Query too narrow; will reformulate
4PubChemCID 15590759811Core chemical identity verification
5PubMed4-PrO-DMT O-propionylpsilocin22Both directly relevant — 37082754 is the primary pharmacology study for 4-PrO-DMT; 40418247 provides plasma detection method and prodrug metabolic context
6PubMedRaithatha psilocin prodrug novel psilocybin pharmacological properties 202311
7Wikipedia4-PrO-DMT11
8Web search4-PrO-DMT legal status UK Misuse of Drugs Act psilocin ester52
9Crossref DOI verificationDOI verification for key papers41
10PsychonautWiki4-PrO-DMT dosage effects11
11PubChemCID 155907598 - chemical identity verification11
12Cayman Chemical4-propanoyloxy-DMT product 29951 physical properties11
13OpenAlexpsilocybin lithium seizure psychedelic contraindication interaction84
14PubMedpsilocybin pharmacokinetics oral bioavailability systematic review11
15Web search/Wikipedia4-PrO-DMT legal status UK Germany Australia Canada81
16PubMedpsilocin CYP2D6 CYP3A4 MAO metabolism drug interaction21
17ClinicalTrials.gov · absencepsilocin prodrug 4-propionyloxy tryptamine psychedelic0Confirms no human clinical trials
18PubMedpsilocin LD50 acute toxicity psilocybin mushrooms mice11
19PMC/PubMedpsilocin Ki 5-HT2A 5-HT1A 5-HT2C receptor comparison11
20PMC open accessGlatfelter 2023 4-PrO-DMT receptor binding Ki values ED50 HTR mice13
88 claims by section — every cited sentence, checked against its source
safety33 · 28 ok
  • The reference acute toxicity value for the pharmacologically active metabolite psilocin is an LD₅₀ of 293 mg/kg (intraperitoneal, mice)supported

    Psilocin LD50: 293.07 mg/kg (IP, mice). toxins7041018

  • Claim in safety — inconclusiveinconclusiveworking →

  • Dependence: Serotonergic psychedelics as a class do not produce physical or psychological dependence syndromessupported

    8-factor CSA analysis of psilocybin abuse potential. Limited reinforcing effects, low self-administration. j.neuropharm.2018.05.012

  • In mice, 4-PrO-DMT produces psychedelic-like effects (head-twitch response) at 0.3–3 mg/kg s.c., while 5-HT₁A-mediated sedation and hypothermia emerge at 3–30 mg/kg s.c. — consistent with the general safety margin observed across the psilocin class.supported

    5-HT2A-mediated HTR (0.3-3 mg/kg s.c.) and 5-HT1A-mediated hypothermia and hypolocomotion (3-30 mg/kg s.c.) acsptsci.2c00222

  • Transient physiological effects expected at psychoactive doses include dose-dependent increases in systolic blood pressure and heart rate, pupil dilation (mydriasis), and nauseasupported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

  • Claim in safety — inconclusiveinconclusiveworking →

  • Chronic 5-HT₂B agonism is the established mechanism underlying cardiac valvulopathy associated with ergotamine derivatives and the weight-loss drug fenfluraminesupported

    5-HT2A/2B/4 receptor concerns. Clinical trials show relative cardiovascular safety in healthy volunteers. s43440-023-00539-4

  • Three factors mitigate the relevance of this finding: 4-PrO-DMT is a prodrug that converts to psilocin (which has lower 5-HT₂B affinity); psychedelic use is typically intermittent rather than chronic; and clinical psychedelic studies in healthy volunteers have demonstrated relative cardiovascular safetysupported

    Clinical trials show relative cardiovascular safety in healthy volunteers. s43440-023-00539-4

  • Acute psychological distress — including anxiety, confusion, paranoia, and transient psychotic-like symptoms — can occur at high doses or in unprepared individualssupported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

  • Hallucinogen persisting perception disorder (HPPD) — characterized by enduring perceptual disturbances (visual snow, halos, trailing phenomena, geometric afterimages) persisting weeks to months after drug use — has been documented across the serotonergic hallucinogen class including psilocybinsupported

    HPPD is a rare disorder with enduring perceptual symptoms after psychedelic use. s41598-024-82216-x

  • Persons with personal or family history of schizophrenia, schizoaffective disorder, or bipolar I disorder are at elevated risk for prolonged or severe psychotic episodes and should not use 4-PrO-DMT.supported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

  • At the class level, repeated 5-HT₂A agonism causes receptor downregulation and functional desensitization, generating rapid tolerance (tachyphylaxis) within days of consecutive usepartially supported

    Beta-arrestin-biased 5-HT2A agonists block psychedelic effects and induce receptor downregulation and tachyphylaxis (tolerance). s41467-023-44016-1

  • At the class level, repeated 5-HT₂A agonism causes receptor downregulation and functional desensitization, generating rapid tolerance (tachyphylaxis) within days of consecutive usesupported

    Covers tolerance, cross-tolerance, and therapeutic mechanisms. pharmrev.120.000056

  • Dependence: Serotonergic psychedelics as a class do not produce physical or psychological dependence syndromessupported

    Serotonergic hallucinogens do not produce dependence syndromes and appear to have low risk of misuse. j.psc.2012.04.002

  • The addiction potential of the psilocin class is assessed as low based on the eight-factor Controlled Substances Act analysis.supported

    8-factor CSA analysis of psilocybin abuse potential. Limited reinforcing effects, low self-administration. Schedule IV may be appropriate if approved as medicine. j.neuropharm.2018.05.012

  • Serotonergic psychedelics without concurrent MAOI use are classified as low risk for serotonin toxicity; the addition of a proserotoninergic drug — especially an irreversible MAOI — transforms the risk profilesupported

    True serotonin toxicity requires MAOI combination. Psychedelics alone are low-risk. s00213-021-05876-x

  • A case report documented hypertensive emergency and myocardial infarction in a patient taking tranylcypromine (MAOI) and dextroamphetamine who consumed psilocybin mushroomssupported

    Case report: severe hypertension and MI following combination of psilocybin mushrooms, dextroamphetamine, and tranylcypromine (MAOI). 02791072.2024.2368617

  • Lithium: Analysis of 62 reports of classic psychedelics combined with lithium found that 47% involved seizures and 39% required medical attentionsupported

    47% of 62 lithium+psychedelic reports involved seizures; 39% required medical attention. a-1524-2794

  • By contrast, zero of 34 lamotrigine + psychedelic reports involved seizuressupported

    None of 34 lamotrigine reports involved seizures. a-1524-2794

  • Tricyclic antidepressants may enhance intensity through serotonin and norepinephrine reuptake inhibition.supported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

  • Claim in safety — inconclusiveinconclusiveworking →

  • Claim in safety — inconclusiveinconclusiveworking →

  • CYP2D6 genotype alone does not significantly influence psilocin levels, suggesting these interactions are of low-to-moderate clinical significance.supported

    CYP2D6 genotype did not influence psilocin plasma concentrations in humans. fphar.2024.1391689

  • Personal or family history of schizophrenia, psychosis, or bipolar I disorder — risk of prolonged psychotic episodes or maniasupported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

  • Current lithium use — 47% seizure rate in case reports involving classic psychedelics combined with lithium; no mechanism identifiedsupported

    47% of 62 lithium+psychedelic reports involved seizures; 39% required medical attention. Mechanism unknown. a-1524-2794

  • Current MAOI use — serotonin toxicity and hypertensive emergency; case-report-documented myocardial infarctionsupported

    True serotonin toxicity requires MAOI combination. Psychedelics alone are low-risk. s00213-021-05876-x

  • Current MAOI use — serotonin toxicity and hypertensive emergency; case-report-documented myocardial infarctionsupported

    Case report: severe hypertension and MI following combination of psilocybin mushrooms, dextroamphetamine, and tranylcypromine (MAOI). 02791072.2024.2368617

  • Pregnancy or breastfeeding — no safety data existsupported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

  • Claim in safety — inconclusiveinconclusiveworking →

  • Active cardiovascular disease — transient hypertension and tachycardia are class effects of psilocin; the unresolved 5-HT₂B affinity of 4-PrO-DMT (Ki = 17 nM) adds additional uncertainty for cardiac patientssupported

    5-HT2A/2B/4 receptor concerns. Clinical trials show relative cardiovascular safety in healthy volunteers. s43440-023-00539-4

  • Borderline personality disorder — emotional lability may be intensifiedsupported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

  • Current TCA use — potential enhancement of psychedelic intensitysupported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

  • Current SSRI use — blunted effects may lead to compensatory dose escalationsupported

    Practical guidance for psilocybin therapy including pharmacology, pharmacokinetics, dosing, contraindications, adverse events, drug interactions. fpsyt.2022.1040217

pharmacology20 · 12 ok
  • Claim in pharmacology — inconclusiveinconclusiveworking →

  • Upon administration, plasma and tissue esterases cleave the propionyl ester at the 4-position of the indole ring, releasing psilocin as the pharmacologically active metabolitesupported

    Confirms prodrug-to-psilocin metabolic pathway. bkaf045

  • Upon administration, plasma and tissue esterases cleave the propionyl ester at the 4-position of the indole ring, releasing psilocin as the pharmacologically active metabolitesupported

    Screened 28 novel psilocin prodrugs with cleavable groups at the 4-hydroxy position to modulate metabolic processing. acs.jmedchem.3c01225

  • This prodrug relationship parallels the conversion of psilocybin to psilocin via alkaline phosphatase-mediated dephosphorylation, and of psilacetin to psilocin via esterase hydrolysis.supported

    Alkaline phosphatase dephosphorylation, MAO metabolism, BBB permeability. bph.16466

  • The psychedelic effect of psilocin at the 5-HT₂A receptor is mediated by Gq/11 protein-coupled signaling rather than β-arrestin2 recruitment. 5-HT₂A-Gq efficacy — not β-arrestin2 recruitment — predicts psychedelic potential in the head-twitch response model; β-arrestin-biased agonists suppress the psychedelic response and induce tachyphylaxissupported

    5-HT2A-Gq (not beta-arrestin2) predicts psychedelic potential. Beta-arrestin-biased 5-HT2A agonists block psychedelic effects and induce receptor downregulation and tachyphylaxis (tolerance). s41467-023-44016-1

  • Claim in pharmacology — inconclusiveinconclusiveworking →

  • Claim in pharmacology — inconclusiveinconclusiveworking →

  • Claim in pharmacology — inconclusiveinconclusiveworking →

  • At higher doses (≥3 mg/kg), concurrent 5-HT₁A activation attenuates the head-twitch response — consistent with the inhibitory interplay between 5-HT₂A and 5-HT₁A observed across tryptamine psychedelics.supported

    5-HT2A-mediated HTR (0.3-3 mg/kg s.c.) and 5-HT1A-mediated hypothermia and hypolocomotion (3-30 mg/kg s.c.) acsptsci.2c00222

  • Claim in pharmacology — inconclusiveinconclusiveworking →

  • Claim in pharmacology — inconclusiveinconclusiveworking →

  • Hypothermia was blocked and reversed by the 5-HT₁A antagonist WAY100635.supported

    5-HT1A blockade reversed hypothermia. j.biopha.2022.113612

  • The following pharmacokinetic parameters are derived from psilocin (the active metabolite) and are applicable by structural analogy from published psilocybin studies.supported

    Systematic review of 14 psilocybin PK studies (112 healthy humans). Psilocin Tmax 1.8-4h, bioavailability 52.7±20%, Vd 277-1016 L, t1/2 1.5-4h. pharmaceutics17040411

  • The following pharmacokinetic parameters are derived from psilocin (the active metabolite) and are applicable by structural analogy from published psilocybin studies.supported

    In vitro and in vivo metabolism of psilocybin's active metabolite psilocin. fphar.2024.1391689

  • Claim in pharmacology — inconclusiveinconclusiveworking →

  • Prodrug activation: 4-PrO-DMT undergoes hydrolysis by plasma and tissue esterases to yield psilocinsupported

    Confirms prodrug-to-psilocin metabolic pathway. bkaf045

  • Oxidative metabolism proceeds primarily through CYP2D6, which metabolizes psilocin to norpsilocin and other oxidized products, and secondarily through CYP3A4supported

    CYP2D6 metabolized ~100% and CYP3A4 ~40% of psilocin in vitro. CYP2D6 produces norpsilocin in mice. fphar.2024.1391689

  • Oxidative deamination by MAO-A yields 4-hydroxyindole-3-acetic acid (4-HIAA) and 4-hydroxytryptophol (4-HTP)supported

    Primary metabolism CYP2D6/CYP3A4 plus MAO-A. Metabolites: 4-HIAA and 4-hydroxytryptophol. pharmaceutics17040411

  • Claim in pharmacology — inconclusiveinconclusiveworking →

  • CYP2D6 genotype did not significantly influence psilocin plasma concentrations in the studied human population, suggesting robust alternative metabolic pathways buffer genetic variation in CYP2D6 activity.supported

    CYP2D6 genotype did not influence psilocin plasma concentrations in humans. fphar.2024.1391689

pharmacokinetic-detail7 · 3 ok
  • The pharmacokinetic profile presented below is derived from the active metabolite psilocin, characterized in published psilocybin studies.supported

    Systematic review of 14 psilocybin PK studies (112 healthy humans). Psilocin Tmax 1.8-4h, bioavailability 52.7±20%, Vd 277-1016 L, t1/2 1.5-4h. pharmaceutics17040411

  • Claim in pharmacokinetic-detail — inconclusiveinconclusiveworking →

  • Claim in pharmacokinetic-detail — inconclusiveinconclusiveworking →

  • Psilocin undergoes a two-step metabolic cascade following release from the 4-PrO-DMT prodrug:supported

    Primary metabolism CYP2D6/CYP3A4 plus MAO-A. Metabolites: 4-HIAA and 4-hydroxytryptophol. pharmaceutics17040411

  • Claim in pharmacokinetic-detail — inconclusiveinconclusiveworking →

  • CYP2D6 genotype did not significantly influence psilocin plasma concentrations in the studied human population, suggesting that glucuronidation and MAO-A-mediated deamination provide sufficient alternative clearance to buffer CYP2D6 genetic polymorphism.supported

    CYP2D6 genotype did not influence psilocin plasma concentrations in humans. MAO-A involved. fphar.2024.1391689

  • Claim in pharmacokinetic-detail — inconclusiveinconclusiveworking →

neuroscience6 · 4 ok
  • Psilocin acts primarily through 5-HT₂A receptors densely expressed on layer V pyramidal neurons of the cerebral cortexsupported

    Comprehensive review of 5-HT2A receptor pharmacology including structural features, signaling pathways, and psychedelic drug interactions. j.pharmr.2025.100059

  • The 5-HT₂A-Gq signaling pathway — rather than β-arrestin2 recruitment — is the critical transduction mechanism for psychedelic effects, as demonstrated by the finding that β-arrestin-biased 5-HT₂A agonists fail to produce head-twitch responses in mice.supported

    5-HT2A-Gq (not beta-arrestin2) predicts psychedelic potential. Beta-arrestin-biased 5-HT2A agonists block psychedelic effects and induce receptor downregulation and tachyphylaxis (tolerance). s41467-023-44016-1

  • Concurrent 5-HT₁A agonism — evident in the hypothermic and hypolocomotive effects observed at higher 4-PrO-DMT doses in mice — likely contributes anxiolytic and sedative components to the psychedelic experience.supported

    5-HT1A-mediated hypothermia and hypolocomotion (3-30 mg/kg s.c.) acsptsci.2c00222

  • The result is a state in which entrenched cognitive patterns — including pathological rumination — become temporarily accessible to revision.supported

    Comprehensive review of psychedelic mechanisms including neuroplasticity, immunomodulation, and neurotransmitter systems. Covers tolerance, cross-tolerance, and therapeutic mechanisms. pharmrev.120.000056

  • Claim in neuroscience — inconclusiveinconclusiveworking →

  • Claim in neuroscience — inconclusiveinconclusiveworking →

comparative-pharmacology4 · 2 ok
  • Claim in comparative-pharmacology — inconclusiveinconclusiveworking →

  • Data for 4-PrO-DMT from Glatfelter et al.; psilocin values from Erkizia-Santamaría et al..supported

    Determined receptor binding profiles of various tryptamine-based psychedelics structurally related to psilocybin. acsptsci.2c00222

  • Data for 4-PrO-DMT from Glatfelter et al.; psilocin values from Erkizia-Santamaría et al..supported

    Psilocin Ki at 5-HT2A 120-173 nM, 5-HT2C 79-311 nM, 5-HT1A 152-146 nM. j.biopha.2022.113612

  • Claim in comparative-pharmacology — inconclusiveinconclusiveworking →

receptor-pharmacology4 · 2 ok
  • The following binding affinities for 4-PrO-DMT were determined by radioligand competition binding at a broad panel of CNS targets using standard NIMH-PDSP protocols:supported

    Determined receptor binding profiles of various tryptamine-based psychedelics structurally related to psilocybin. acsptsci.2c00222

  • Chronic 5-HT₂B agonism is the established mechanism underlying cardiac valvulopathy associated with ergotamine derivatives and fenfluraminesupported

    5-HT2A/2B/4 receptor concerns. s43440-023-00539-4

  • Claim in receptor-pharmacology — inconclusiveinconclusiveworking →

  • Claim in receptor-pharmacology — inconclusiveinconclusiveworking →

summary4 · 1 ok
  • Claim in summary — inconclusiveinconclusiveworking →

  • Claim in summary — inconclusiveinconclusiveworking →

  • The psilocin reference LD₅₀ (293 mg/kg IP, mice) indicates a wide margin between behaviorally active doses (0.3–3 mg/kg s.c. in the head-twitch response assay) and acutely lethal exposuresupported

    Psilocin LD50: 293.07 mg/kg (IP, mice). toxins7041018

  • Claim in summary — inconclusiveinconclusiveworking →

chemistry3 · 1 ok
  • Its parent scaffold is the tryptamine backbone — a bicyclic indole ring system fused to an ethylamine side chain — shared by endogenous serotonin and N,N-dimethyltryptaminesupported

    SAR review for classic serotonergic hallucinogens (tryptamines, ergolines, phenylalkylamines). Key structural features for activity identified. 7854_2017_475

  • Claim in chemistry — inconclusiveinconclusiveworking →

  • Claim in chemistry — inconclusiveinconclusiveworking →

history3 · 0 ok
  • Claim in history — not_supportednot supportedworking →

  • Claim in history — inconclusiveinconclusiveworking →

  • Claim in history — inconclusiveinconclusiveworking →

clinical-evidence2 · 1 ok
  • The preclinical evidence base consists of a single formal pharmacological study providing receptor binding profiles, crystal structure data, and mouse behavioral characterization (head-twitch response, locomotor activity, body temperature) via subcutaneous administration.supported

    Determined receptor binding profiles of various tryptamine-based psychedelics structurally related to psilocybin. 4-PrO-DMT displayed dose-related psilocybin-like effects in mice: 5-HT2A-mediated HTR (0.3-3 mg/kg s.c.) and 5-HT1A-mediated hypothermia and hypolocomotion (3-30 mg/kg s.c.). acsptsci.2c00222

  • Claim in clinical-evidence — inconclusiveinconclusiveworking →

effects-overview1 · 0 ok
  • Claim in effects-overview — inconclusiveinconclusiveworking →

legal-status1 · 1 ok
  • The compound's classification as a novel psychoactive substance in Sweden and potentially under Germany's NpSG reflects the growing trend toward blanket legislation covering structural classes rather than individual compounds.supported

    Chapter reviewing tryptamine NPS pharmacology, effects, legal status, and toxicology. Covers 4-substituted tryptamines including psilocin esters. b978-0-12-818788-3.00014-0

3Sources

29 consumed · sorted by year · feeds = sections resting on it

Sources 1 to 30
yearsourceidtierstatusfeeds
20255-HT2A receptors: Pharmacology and functional selectivityCummins BR, Billac GB, Nichols DE, Nichols CD · Pharmacological Reviewsdoi:10.1016/j.pharmr.2025.100059strongconsumed2 sections
2025Development and validation of an analytical method for the determination of select 4-position ring-substituted tryptamines in plasma by LC-MS/MSPego AMF, Schoffner M, Sammeta VR, Naeem M, Manke DR, Chadeayne A, Glatfelter GC, Baumann MH, Concheiro-Guisan M · Journal of Analytical Toxicologydoi:10.1093/jat/bkaf045moderateconsumed1 section
2025Hypertensive Emergency Secondary to Combining Psilocybin Mushrooms, Extended Release Dextroamphetamine-Amphetamine, and TranylcypromineBarnett BS, Koons CJ, Van den Eynde V, Gillman PK, Bodkin JA · Journal of psychoactive drugsdoi:10.1080/02791072.2024.2368617weakconsumed1 section
2025Pharmacokinetics of Psilocybin: A Systematic ReviewMeshkat S, Al-Shamali H, Perivolaris A, et al. · Pharmaceuticsdoi:10.3390/pharmaceutics17040411strongconsumed2 sections
20244-PrO-DMTWikipedia contributorsurl:045aaa477a9fe294weakconsumedcited only
20244-PrO-DMTPsychonautWiki contributorsurl:4839f9375752487eweakconsumedcited only
20244-propanoyloxy DMT product pageCayman Chemicalurl:8132940bdc62c43dweakconsumedcited only
2024In vitro and in vivo metabolism of psilocybin's active metabolite psilocinThomann J, Kolaczynska KE, Stoeckmann OV, Rudin D, Vizeli P, Hoener MC, Pryce CR, Vollenweider FX, Liechti ME, Duthaler U · Frontiers in Pharmacologydoi:10.3389/fphar.2024.1391689moderateconsumed3 sections
2024Neuropsychological profiles of patients suffering from hallucinogen persisting perception disorder (HPPD): A comparative analysis with psychedelic-using and non-using controlsLeistenschneider G, Majic T, Reiche S, Riemer TG · Scientific Reportsdoi:10.1038/s41598-024-82216-xmoderateconsumed1 section
2024Novel Psilocin Prodrugs with Altered Pharmacological Properties as Candidate Therapies for Treatment-Resistant Anxiety DisordersRaithatha SA, Hagel JM, Matinkhoo K, Yu L, Press D, Cook SG, et al. · Journal of Medicinal Chemistrydoi:10.1021/acs.jmedchem.3c01225moderateconsumed1 section
2024Pharmacological and behavioural effects of tryptamines present in psilocybin-containing mushroomsRakoczy RJ, Runge GN, Sen AK, et al. · British Journal of Pharmacologydoi:10.1111/bph.16466moderateconsumed5 sections
2024Psychedelic-like Activity of Norpsilocin AnaloguesSherwood AM, Burkhartzmeyer EK, Williamson SE, Baumann MH, Glatfelter GC · ACS Chemical Neurosciencedoi:10.1021/acschemneuro.3c00610moderateconsumed2 sections
2023Cardiovascular safety of psychedelic medicine: current status and future directionsWsół A · Pharmacological Reportsdoi:10.1007/s43440-023-00539-4moderateconsumed2 sections
2023Identification of 5-HT2A receptor signaling pathways associated with psychedelic potentialWallach J, Cao AB, Calkins MM, Heim AJ, Lanham JK, et al. · Nature Communicationsdoi:10.1038/s41467-023-44016-1moderateconsumed3 sections
2023Receptor Binding Profiles for Tryptamine Psychedelics and Effects of 4-Propionoxy-N,N-dimethyltryptamine in MiceGlatfelter GC, Naeem M, Pham DNK, Golen JA, Chadeayne AR, Manke DR, Baumann MH · ACS Pharmacology & Translational Sciencedoi:10.1021/acsptsci.2c00222strongconsumed10 sections
2022Serotonin 5-HT2A, 5-HT2C and 5-HT1A receptor involvement in the acute effects of psilocybin in miceErkizia-Santamaria I, Alles-Pascual R, Horrillo I, Meana JJ, Ortega JE · Biomedicine & Pharmacotherapydoi:10.1016/j.biopha.2022.113612moderateconsumed2 sections
2022Serotonin toxicity of serotonergic psychedelicsMalcolm B, Thomas K · Psychopharmacologydoi:10.1007/s00213-021-05876-xmoderateconsumed1 section
2022Structure-based discovery of nonhallucinogenic psychedelic analogsCao D et al. · Sciencedoi:10.1126/science.abl8615moderateconsumed2 sections
2022Synthesis, Structural Characterization, and Pharmacological Activity of Novel Quaternary Salts of 4-Substituted TryptaminesGlatfelter GC, Pham DNK, Walther D, Golen JA, Chadeayne AR, Baumann MH, Manke DR · ACS Omegadoi:10.1021/acsomega.2c03476moderateconsumedcited only
2022Therapeutic use of psilocybin: Practical considerations for dosing and administrationMacCallum CA, Lo LA, Pistawka CA, Deol JK · Frontiers in Psychiatrydoi:10.3389/fpsyt.2022.1040217moderateconsumed3 sections
2022Tryptamines (Chapter 18 in Novel Psychoactive Substances, 2nd edition)Greene SL · Novel Psychoactive Substances (Dargan P, Wood D, eds.)doi:10.1016/b978-0-12-818788-3.00014-0moderateconsumed1 section
2021Classic Psychedelic Coadministration with Lithium, but Not Lamotrigine, is Associated with SeizuresNayak SM, Gukasyan N, Barrett FS, Erowid E, Erowid F, Griffiths RR · Pharmacopsychiatrydoi:10.1055/a-1524-2794moderateconsumed1 section
2021Psychedelics in Psychiatry: Neuroplastic, Immunomodulatory, and Neurotransmitter MechanismsInserra A, De Gregorio D, Gobbi G · Pharmacological Reviewsdoi:10.1124/pharmrev.120.000056strongconsumed2 sections
2019Psychedelic effects of psilocybin correlate with serotonin 2A receptor occupancy and plasma psilocin levelsMadsen MK, Fisher PM, Burmester D, et al. · Neuropsychopharmacologydoi:10.1038/s41386-019-0324-9moderateconsumedcited only
2018Chemistry and Structure-Activity Relationships of Psychedelics.Nichols DE · Current Topics in Behavioral Neurosciencesdoi:10.1007/7854_2017_475strongconsumed1 section
2018The abuse potential of medical psilocybin according to the 8 factors of the Controlled Substances ActJohnson MW, Griffiths RR, Hendricks PS, Henningfield JE · Neuropharmacologydoi:10.1016/j.neuropharm.2018.05.012strongconsumed1 section
2015Recreational use, analysis and toxicity of tryptamines.Tittarelli R, Mannocchi G, Pantano F, Romolo FS · Current neuropharmacologydoi:10.2174/1570159x13666141210222409moderateconsumedcited only
2015Research on acute toxicity and the behavioral effects of methanolic extract from psilocybin mushrooms and psilocin in miceZhuk O, Jasicka-Misiak I, Poliwoda A, Kazakova A, Godovan VV, Halama M, Wieczorek PP · Toxinsdoi:10.3390/toxins7041018moderateconsumed2 sections
2012Serotonergic hallucinogens and emerging targets for addiction pharmacotherapiesRoss S · Psychiatric Clinics of North Americadoi:10.1016/j.psc.2012.04.002moderateconsumed1 section
Searched ClinicalTrials.gov for "4-PrO-DMT psilocin analog" — no resultsabsenceno results
Show all 32 sources — 2 more
Sources 31 to 32
yearsourceidtierstatusfeeds
Searched ClinicalTrials.gov for "psilocin prodrug 4-propionyloxy tryptamine psychedelic" — no resultsabsenceno results
Searched PubMed for "psilocin ester analogs pharmacology serotonin receptor" — no resultsabsenceno results

4Docket

one filing per activity — decisions, correspondence, reports

awaiting ruling — 1

  • timeline · oral · peakreported2026-09-05
  1. 0012026-09-05importImported from Curiosity v1

    imported 2026-03; original sourcing not recoverable

    psx:substance/4-pro-dmt/import/curiosity-v1
  2. 0022026-09-05revisionRevision 1

    no edit summary recorded

    psx:substance/4-pro-dmt/version/1
  3. 0032026-09-05revisionRevision 2

    Initial LLM generation (v5 pipeline, wiki, prose phase)

    psx:substance/4-pro-dmt/version/2
  4. 0042026-09-05proposaldose_tier · threshold
  5. 0052026-09-05proposaldose_tier · light
  6. 0062026-09-05proposaldose_tier · common
  7. 0072026-09-05proposaldose_tier · strong
  8. 0082026-09-05proposaldose_tier · heavy
  9. 0092026-09-05proposaltimeline · oral · onset
  10. 0102026-09-05proposaltimeline · oral · come_up
  11. 0112026-09-05proposaltimeline · oral · resolution
  12. 0122026-09-05proposaltimeline · oral · afterglow
  13. 0132026-09-05proposaltoxicity
  14. 0142026-09-05proposaltolerance
  15. 0152026-09-05proposaldosage · oral
  16. 0162026-09-05proposalduration · oral · onset
  17. 0172026-09-05proposalduration · oral · total
  18. 0182026-09-05proposalcontraindication · psychiatric
  19. 0192026-09-05proposalcontraindication · neurological
  20. 0202026-09-05proposalcontraindication · other
  21. 0212026-09-05proposalcontraindication · pregnancy_breastfeeding
  22. 0222026-09-05proposalcontraindication · cardiovascular
  23. 0232026-09-05proposalcontraindication · psychiatric
  24. 0242026-09-05proposalcontraindication · other
  25. 0252026-09-05proposalcontraindication · other
  26. 0262026-09-05proposal2 value proposals approved together

    one review action inferred from a shared reviewer and instant — the graph records one activity per proposal

    2 items in this filing

    • withdrawal
    psx:substance/4-pro-dmt/proposal/dependence/c10d42b0-fcdf-4741-9b2b-1ffcf13d06f2
  27. 0272026-09-17publicationPublication — publishDev Bypass

5Issued documents

what the notice, info card and emergency page said, by hash

Issued documents
documentcontent hashissuedfrom versionsuperseded
emergency777b5863d801327b008f5610…2026-09-17 22:23Revision 2current
info_cardda5542754c6a00fc16ec4477…2026-09-17 22:23Revision 2current
notice79b8178c022c72447ff56c0b…2026-09-17 22:23Revision 2current