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Collated from PsychonautWiki, TripSit, Pharmacology. Where sources differ (e.g. dosing), Compare shows them side by side.

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Also known as U-47700PW

Fatal overdose may occur when opiates are combined with other depressants such as benzodiazepines, barbiturates, gabapentinoids, thienodiazepines, alcohol or other GABAergic substances.[1] It is strongly discouraged to combine these substances, particularly in common to heavy doses.PW

Addiction potentialPW
moderately addictive with a high potential for abuse
ToxicityPW
high toxicity relative to its dose due to its extreme potency; potentially lethal when mixed with depressants like alcohol or benzodiazepines
TolerancePW
full tolerance develops with prolonged and repeated use; half after 3 - 7 days; baseline after 1 - 2 weeks
Cross-tolerancePW
opioids

Insufflated

Route dataPsychonautWiki

ThresholdLightCommonStrongHeavy
1 mg4–6 mg6–8 mg8–10 mg10 mg+
012.5 mg
LightCommonStrongHeavy
Onset5–10 minutes
Come-up15–20 minutes
Peak1–2 hours
Total2–3 hours
After-effects2–4 hours
OnsetCome-upPeakOffset

Oral

Route dataTripSit

ThresholdLightCommonStrongHeavy
5–7.5 mg7.5–15 mg15–25 mg25 mg+
031.25 mg
LightCommonStrongHeavy
After-effects1–4 hours

Caution / uncertainPW

Mechanism of actionPH

/ALTERNATIVE and IN VITRO TESTS/ U-47700 /was evaluated/ for its in vitro binding activity using guinea pig brain at the mu opioid receptor (MOR) and the kappa opioid receptor (KOR). U-47700 had high affinity at the MOR and bound with a KD of 5.3 nM and weakly at the KOR with a KD of 910 nM resulting in a >171x preference for the MOR relative to the KOR. (14) Subsequently these researchers reported U-47700 receptor affinities (IC50s) of 9 and 300 nM, respectively, for the MOR and KORs.

Pharmacokinetics

AbsorptionPH

In this case report, we present an evaluation of the distribution of postmortem concentrations of 3,4-dichloro-N-[2-(dimethylamino)cyclohexyl]-N-methylbenzamide (U-47700) in a fatality attributed principally to the drug. ... Toxicology screening tests in peripheral blood initially identified U-47700 using an alkaline drug screen with gas chromatography-mass spectrometry (GC-MS) following solid-phase extraction. It was subsequently confirmed and quantitated by GC-MS-specific ion monitoring analysis following liquid-liquid extraction. The U-47700 peripheral blood concentration was quantitated at 190 ng/mL compared to the central blood concentration of 340 ng/mL. The liver concentration was 1,700 ng/g, the vitreous was 170 ng/mL, the urine was 360 ng/mL and the gastric contained only a trace amount (<1 mg). ...

MetabolismPH

Recently, the number of adverse events, including death, involving novel opioids has continued to increase, providing additional and sustained challenges for forensic and medical communities. Identification of emerging novel opioids can be challenging, compounded by detection windows and unknown metabolic profiles. In this study, human liver microsomes were used for the generation of in vitro metabolic profiles of U-47700 and U-49900. Generated metabolites were analyzed via a SCIEX TripleTOF 5600+ quadrupole time-of-flight mass spectrometer and resulting data files were processing using MetabolitePilot. Characterized metabolites were verified in vivo by analysis of authentic human urine specimens collected after analytically confirmed cases of overdose involving U-47700 or U-49900. In total, four metabolites were identified and present in urine specimens for U-47700, and five metabolites for U-49900. N-Desmethyl-U-47700 was determined to be the primary metabolite of U-47700. Parent U-47700 was identified in all urine specimens. N-Desmethyl-U-47700 and N,N-didesmethyl-U-47700 were structurally confirmed for the first time during this study following acquisition of standard reference material. N-Desethyl-U-49900 was determined to be the primary metabolite of U-49900 following microsomal incubations, while N,N-didesethyl-N-desmethyl-U-49900 was the most abundant in a urine specimen. Similarities in metabolic transformation were identified between U-47700 and U-49900, resulting in a common metabolite and isomeric species. These phenomena should be considered in cases involving U-47700 or U-49900. This study is the first to map the metabolic profiles of U-47700 and U-49900 using human liver microsomes, as well as the first to report any literature involving U-49900 and analysis of case specimens.
A 23-year-old female presented after using "U4" by nasal insufflation and injection. ... Urine and serum samples were analyzed using mass spectrometry, confirming 3,4-dichloro-N-[(1R,2R)-2-(dimethylamino)cyclohexyl]-N-methylbenzamide or U-47700. The sample was further analyzed elucidating metabolism specifics. Drug and metabolite concentrations were subsequently measured in both serum and urine. The parent compound of U-47700 was detected at 394 ng/mL and 228 ng/mL in serum and urine, respectively. Metabolites detected in appreciable amounts included the desmethyl (1964 ng/mL in urine), bisdesmethyl (618 ng/mL), desmethyl hydroxy (447 ng/mL), and bisdesmethyl hydroxy forms (247 ng/mL) of U-47700. ...

Plan when to take U-47700 — see where onset, peak and comedown land on the clock

Fact-sheets from PsychonautWiki. Harm-reduction reference only — not medical advice.